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Evidence for bidirectional gut-spleen crosstalk in rodent models: scoping review of possible mechanisms and therapeutic implicationsTeresa Lucretia, Dewi Kartikawati Paramita, Rina SusilowatiJ Appl Biomed 24:49-62, 2026 | DOI: 10.32725/jab.2026.006 Introduction: The gut-spleen axis has been proposed to link the gut environment with splenic immune regulation and systemic homeostasis. This scoping review examines this interaction in rodent models. Methods: Following PRISMA-ScR guidelines, we analyzed literature (2015-2025) from PubMed, Scopus, and other major databases, including English-language rodent studies reporting gut and splenic outcomes. Results: Analysis of 48 studies suggests that gut dysbiosis may alter splenic architecture and immune function mainly via microbial metabolites, particularly short-chain fatty acids. Limited evidence indicates that splenic dysfunction could impair gut barrier integrity. Systemic stressors (e.g., infection or allergy) may reinforce this bidirectional inflammatory loop. Microbiota-targeted therapies have been observed primarily through gut-initiated mechanisms. Vagus nerve-mediated signaling points to a gut-brain-spleen network, though its directional hierarchy remains unresolved. Conclusion: Evidence supports a gut-spleen axis in rodents, with gut-derived microbial metabolites appearing to influence splenic immunity. Support for a reciprocal spleen-to-gut pathway remains limited and emergent, highlighting a research asymmetry. Together, these interactions suggest a partially bidirectional network linking the gut ecosystem to systemic immunity, with additional neural integration extending this framework toward a gut-brain-spleen axis. This integrative model proposes the gut-spleen axis as a potential therapeutic target warranting further investigation in inflammatory, metabolic, and neurological diseases. |
miR-500a-3p negatively regulates SOCS2 and participates in the proliferation, glycolysis, and apoptosis of HCC cells via the JAK2/STAT5 pathwayShan Li, Wei Luo, Wei LiuJ Appl Biomed 24:10-26, 2026 | DOI: 10.32725/jab.2026.002 Background: HCC is a prevalent malignant tumor globally with high mortality. MiR-500a-3p plays critical roles in tumorigenesis and tumor progression. Methods: To evaluate miR-500a-3p's role in HCC, we first analyzed its expression and prognostic value via qRT-PCR and TCGA (Kaplan-Meier analysis). We then performed extensive in vitro functional studies after cell transfection (mimics, anti-miR, SOCS2 OE), measuring proliferation, migration, invasion, glycolytic parameters (glucose consumption, lactate, ECAR, ATP), and apoptosis. A target relationship with SOCS2 was predicted bioinformatically and confirmed by dual-luciferase assay. Using the JAK2/STAT5 signaling pathway inhibitor Fedratinib, the activator Erythropoietin, and transfection with si-STAT5 and oe-STAT5, the molecular mechanism of miR-500a-3p in HCC was investigated. In vivo experiments established tumor-bearing mouse models to evaluate the effect of miR-500a-3p on tumor growth. Results: miR-500a-3p was significantly upregulated in HCC tissues and cells, and was associated with poor patient prognosis. The overexpression of miR-500a-3p promotes the malignant progression of HCC cells. Mechanistically, miR-500a-3p directly targeted and negatively regulated SOCS2 expression. SOCS2 expression was suppressed in HCC, with its expression abrogating miR-500a-3p-mediated oncogenicity. miR-500a-3p activated the JAK2/STAT5 pathway by inhibiting SOCS2, thereby regulating the malignant biological behaviors of HCC cells. Both SOCS2 overexpression and JAK2 inhibitor treatment could reverse the activation of the JAK2/STAT5 axis and downstream effects induced by miR-500a-3p. MiR-500a-3p promoted tumor growth in tumor-bearing mice, accompanied by SOCS2 downregulation and JAK2/STAT5 pathway activation. Conclusion: This study reveals that miR-500a-3p promotes proliferation and glycolysis while inhibiting apoptosis of HCC cells by negatively regulating SOCS2 and activating the JAK2/STAT5 pathway. |
The role of chemokines and interleukins in acute lymphoblastic leukemia: a systematic reviewMartin Štajer, Jan M. Horáček, Tomáš Kupsa, Pavel ŽákJ Appl Biomed 22:165-184, 2024 | DOI: 10.32725/jab.2024.024 Acute lymphoblastic leukemia (ALL) is the most common childhood hematological malignancy, but it also affects adult patients with worse prognosis and outcomes. Leukemic cells benefit from protective mechanisms, which are mediated by intercellular signaling molecules - cytokines. Through these signals, cytokines modulate the biology of leukemic cells and their surroundings, enhancing the proliferation, survival, and chemoresistance of the disease. This ultimately leads to disease progression, refractoriness, and relapse, decreasing the chances of curability and overall survival of the patients. Targeting and modulating these pathological processes without affecting the healthy physiology is desirable, offering more possibilities for the treatment of ALL patients, which still remains unsatisfactory in certain cases. In this review, we comprehensively analyze the existing literature and ongoing trials regarding the role of chemokines and interleukins in the biology of ALL. Focusing on the functional pathways, genetic background, and critical checkpoints, we constructed a summary of molecules that are promising for prognostic stratification and mainly therapeutic use. Targeted therapy, including chemokine and interleukin pathways, is a new and promising approach to the treatment of cancer. With the expansion of our knowledge, we are able to uncover a spectrum of new potential checkpoints in order to modulate the disease biology. Several cytokine-related targets are advancing toward clinical application, offering the hope of higher disease response rates to treatment. |
Influence of the antidiabetic drug metformin on the aquatic crustacean Daphnia magnaMartina Poncarová, Šárka Klementová, Michal ŠorfJ Appl Biomed 23:144-151, 2025 | DOI: 10.32725/jab.2025.011 Background: The antidiabetic drug metformin has been repeatedly detected in surface waters worldwide. This study investigates the effects of the environmentally relevant concentration of metformin on a non-target aquatic organism - a freshwater crustacean, Daphnia magna, with an emphasis on the stress response of daphnids and the long-term effects on their consecutive generations. Methods: The chronic toxicity test and the consecutive generations test were inspired by the OECD method. The total antioxidant capacity (Trolox equivalent - TEAC), superoxide dismutase (SOD) activity, and catalase (CAT) activity were related to the protein content in the tested daphnids. Results: Elevated antioxidant activities were revealed in daphnids exposed to metformin in comparison to the control group (1.9 × for TEAC, 1.7 × for SOD; 1.3 × for CAT). Furthermore, diminished body sizes and malformations in the digestive system, spine and carapace were detected in newborn juveniles in the second and third generations exposed to metformin. Conclusion: Long-term exposure to metformin in environmentally relevant concentrations led to a significant detrimental reaction in aquatic crustaceans. |
Walking the tightrope: Balancing immune checkpoints and their inhibitors in host defence against bacterial infectionsAnna Palounková, Andrea Frejlachová, Anna Kovaříková, Aleš Chrdle, Helena LanghansováJ Appl Biomed 24:1-9, 2026 | DOI: 10.32725/jab.2026.001 Immune checkpoints are one of the mechanisms that maintain the balance between immunotolerance and immunopathology. These mechanisms are often exploited by tumour cells. Thanks to extensive global testing of anticancer drugs, a revolutionary cancer therapy based on immune checkpoint inhibitors (ICIs) has been developed. Some pathogens exploit regulatory checkpoint interactions, contributing to the establishment of hidden, long-term, or persistent infections in which the host is unable to eliminate the pathogen. However, a structured overview of immune checkpoint involvement in bacterial infections remains underrepresented in the current scientific literature. We conducted a literature review focusing on the documented role of selected immune checkpoints (specifically PD-1, PD-L1, TIM-3, LAG-3, CTLA-4, and TIGIT) during infections of humans and animals with clinically relevant bacterial pathogens from the Actinobacteria, Chlamydiae, Firmicutes, Proteobacteria, and Spirochaetae phyla. The current state of knowledge suggests that applied research into immune checkpoints and the controlled use of ICIs has great potential to improve the diagnosis, treatment, and prognosis of serious human bacterial infections. |
Applying the technology ORBEYETM exoscope in transoral exoscopic laryngeal surgery: single centre prospective studyRichard Holý, Tomáš Filipovský, Eva Lukavcová, David Kalfeřt, Pavol Praženica, Petra Dytrych, Jiří Hložek, Jan Rotnágl, Daniel Kovář, Jaromír AstlJ Appl Biomed 23:138-143, 2025 | DOI: 10.32725/jab.2025.010 Introduction: ORBEYETM exoscope offers superior visualization with clearer imaging compared to standard methods and supports narrow band imaging (NBI). ORBEYETM provides better visualization of tissue structures, thus increasing the accuracy of the surgical procedure. The systematic use of ORBEYETM in transoral exoscopic laryngeal surgery (TOLES) is rarely documented. This study evaluates the sensitivity and specificity of TOLES using ORBEYETM with white light and NBI modalities. Methods: Between 8/2021 and 8/2024, 84 patients underwent TOLES using ORBEYETM with white light and NBI modes. All surgeries were performed in a specialized setting with consistent preoperative and intraoperative imaging protocols. Results: TOLES using ORBEYETM was successfully performed in all 84 patients. A statistically significant dependence (p < 0.001) was observed between preoperative/perioperative (TOLES) findings and definitive histology for both white light and NBI modalities. ORBEYETM facilitated detailed imaging of tissue structures and allowed targeted biopsies. Conclusion: TOLES with perioperative NBI/white light endoscopy achieved a high correlation between pre-histopathological diagnoses and final histopathological results. ORBEYETM exoscope provides three-dimensional 4K resolution, superior imaging, and improved ergonomics for the surgeon, reducing workload and increasing efficiency. It delivered more efficient surgical team collaboration and experience sharing. The integration of NBI into the TOLES system facilitated accurate navigation and targeting of the biopsy, helping to establish correct definitive diagnosis. TOLES showed more accurate scoring of perioperative NBI findings. |
Serum xanthine oxidoreductase and oxidative stress are associated with bladder cancer: a case-control study from JordanLina Elsalem, Abrar A. Aleikish, Nosayba Al-Azzam, Mahmoud A. Alfaqih, Haneen A. Basheer, Omar HalalshehJ Appl Biomed 23:107-116, 2025 | DOI: 10.32725/jab.2025.015 Xanthine oxidoreductase (XOR) is an oxidant enzyme that exists mainly in two distinct forms: the dehydrogenase form [xanthine dehydrogenase (XDH)] and the oxidized form [xanthine oxidase (XO)]. XO might contribute to tumorigenesis through direct metabolic activation of carcinogens and indirect generation of free radicals. Oxidative stress is one of the leading causes of bladder cancer (BC). Smoking and genetic susceptibility are also linked to oxidative stress and BC. This study investigated the association between XO serum levels and XOR genetic polymorphisms with BC. A case-control study was conducted among 109 BC patients and 109 controls matched by age, gender, body mass index, and smoking status. Serum levels of XO and 8-hydroxy-2'-deoxyguanosine (8-OhdG) were measured using ELISA, while thiobarbituric acid reactive substances (TBARS) and protein carbonyl (PC) were assessed using colorimetric assays. XOR single nucleotide polymorphisms were analyzed via tetra-primer ARMS-PCR. XO levels were significantly higher in BC patients than in controls [(5.11 ± 0.28 vs 3.83 ± 0.23) ng/ml, respectively (p < 0.0006)]. Among smokers, XO levels were also elevated in BC cases compared with controls [(5.29 ± 0.35 vs 3.41 ± 0.28) ng/ml, respectively (p < 0.0001)]. Oxidative stress biomarkers were elevated in BC patients compared with controls: 8-OHdG (19.39 ± 1.37 vs 16.32 ± 1.37 nmol/l), PC (8.88 ± 0.56 vs 4.42 ± 0.56) nmol/mg of protein, and TBARS (4.23 vs 3.15) µmol/ml, respectively (p < 0.05). Haplotype analysis showed that TGTCA, TGTA, TGA, and GTA were more frequent in BC patients and associated with increased BC status [4.17 (1.16-15.00), 1.84 (1.11-3.05), 1.62 (1.01-2.60), and 1.66 (1.02-2.71) fold increase in risk, respectively (p < 0.05)]. Elevated XO and oxidative stress markers are associated with BC, supporting their role in BC pathogenesis. Our findings suggest that they may act as potential diagnostic or therapeutic targets. However, mechanistic studies are required to clarify whether XO/oxidative stress markers contribute directly to carcinogenesis or reflects general redox imbalance in malignancy. Specific XOR haplotypes might serve as biomarkers for BC. |
Elevated plasma levels of cell-free mtDNA are associated with acute rejection following heart transplantationDana Dlouhá, Kristýna Janoušková, Šárka Chytilová, Jevgenija Vymětalová, Marianna Lukášová, Šárka Nováková, Eva Rohlová, Jaroslav A. HubáčekJ Appl Biomed 23:97-106, 2025 | DOI: 10.32725/jab.2025.014 Acute rejection (AR) following heart transplantation (HTx) is a common complication, especially in the early post-HTx period. Mitochondrial DNA (mtDNA), released into circulation from stressed mitochondria, mimics ongoing immune activation and facilitates the release of pro-inflammatory substances. Our study aimed to assess cell-free mtDNA levels to identify early indicators of acute rejection progression. The absolute concentration of cf-mtDNA (cp/μl) was measured in 77 adult patients using quantitative polymerase chain reaction. Blood samples (n = 300) were collected before their corresponding biopsy according to the timeline within the first year post-HTx. The median cf-mtDNA levels in samples with confirmed AR (n = 57) was higher compared to samples without diagnosed rejection (n = 210; Padj < 0.01). When acute cellular (ACR; n = 39) and antibody-mediated rejection (AMR; n = 18) were analyzed separately, only AMR demonstrated higher levels compared to samples without diagnosed rejection (Padj = 0.02). The highest cf-mtDNA levels were detected in samples collected during early post-HTx complications compared to samples without rejection and AR samples (for both Padj < 0.0001). Both ACR and AMR were observed throughout the one-year period, with the majority (3rd quartile) occurring during the first 200 days post-HTx. Post-HTx complications, such as graft dysfunction or acute kidney injury, were observed within the first 11 days, with the majority (71.4%) occurring within 5 days post-HTx. The presence of AR, and specifically AMR, is associated with elevated levels of cf-mtDNA. The increase in plasma cf-mtDNA levels strongly reflects the occurrence of early complications following HTx. |
Selected widely prescribed pharmaceuticals: toxicity of the drugs and the products of their photochemical degradation to aquatic organismsŠárka Klementová *, Martina PoncarováJ Appl Biomed 22:1-11, 2024 | DOI: 10.32725/jab.2024.007 Cholesterol-lowering drugs, antidiabetics, antiarrhythmics, antidepressants, and antibiotics belong to the most prescribed drugs worldwide. Because of the manufacture, excretion, and improper disposal of leftover drugs, the drugs enter waste waters and, subsequently, surface waters. They have been detected in surface waters all over the world, from concentrations of ng/l to concentrations several orders of magnitude higher. Since pharmaceuticals are designed to be both biologically and chemically stable, photochemical degradation by sun radiation represents a way of transformation in the natural environment. This review provides a survey of how selected drugs of the above-mentioned classes affect aquatic organisms of different trophic level. The emphasis is on the harmful effects of phototransformation products, an area of scientific investigation that has only attracted attention in the past few years, revealing the surprising fact that products of photochemical degradation might be even more toxic to aquatic organisms than the parent drugs. |
Distribution of human leukocyte antigen B27 (HLA-B27) in Slovak patientsAlexandra Pôbišová, Andrea Kollárová, Vladimír Langraf, František Strejček, Ramona BabosováJ Appl Biomed 23:36-44, 2025 | DOI: 10.32725/jab.2025.004 Background and objectives: HLA-B27 is a genetic marker associated with spondyloarthropathies, particularly ankylosing spondylitis and axial spondyloarthritis. While its prevalence varies across populations, no data exist for Slovak patients. This study aimed to determine HLA-B27 prevalence in Slovak patients with suspected spondyloarthropathies and assess differences by sex and age. Methods: A retrospective cohort of 1,614 patients (888 females and 726 males) was analyzed for HLA-B27 status (positive/negative) using reverse hybridisation (HLA-B27 StripAssay). Statistical analyses included Pearson's Chi-square test and non-parametric Mann-Whitney U and Kruskal-Wallis tests for sex- and age-related differences. Results: HLA-B27 positivity was 20.57%, with a higher proportion in males (23.28%) than females (18.36%, p = 0.0177). The less than 20 age group had the highest absolute number of positive cases (126 cases; 17.80%), while the 21-40 group had the highest relative positivity (119 cases; 29.38%). The lowest positivity was in the more than 61 age group (17 cases; 13.08%), though age distribution differences were not statistically significant (p = 0.7765). Positivity varies across diagnoses, peaking in musculoskeletal (M) and eye disorders (H), where it exceeds 29%. Conclusion: HLA-B27 positivity is strongly associated with rheumatologic and ophthalmologic conditions and exhibits age- and sex-related variability. These findings emphasize the diagnostic significance of HLA-B27 testing in Slovak patients, especially for early detection and management of spondyloarthropathies. Further research on HLA-B27 variability and its clinical implications is needed to optimize diagnostic strategies and patient care. |
Changes in glucose-related parameters according to LDL-cholesterol concentration ranges in non-diabetic patientsVladimír Kron, Miroslav Verner, Pavel Smetana, Radka Vrzalová, Eliška Friebergerová, Daniel Martiník, Dagmar Horáková, Ladislav Štěpánek, Lidmila Hamplová, Kvetoslava KotrbováJ Appl Biomed 23:26-35, 2025 | DOI: 10.32725/jab.2025.005 The study focused on the changes in C-peptide, glycemia, insulin concentration, and insulin resistance according to LDL-cholesterol concentration ranges. The metabolic profile of individuals in the Czech Republic (n = 1840) was classified by quartiles of LDL-cholesterol into four groups with the following ranges: 0.46-2.45 (n = 445), 2.46-3.00 (n = 474), 3.01-3.59 (n = 459), and 3.60-7.18 mmol/l (n = 462). The level of glucose, C-peptide, insulin, and area of parameters during OGTT and HOMA IR were compared with a relevant LDL-cholesterol range. The evaluation involved correlations between LDL-cholesterol and the above parameters, F-test and t-test. Generally, mean values of glucose homeostasis-related parameters were higher with increasing LDL-cholesterol levels, except for mean HOMA IR values which rapidly increased (2.7-3.4) between LDL-cholesterol ranges of 3.00-3.59 and 3.60-7.18 mmol/l. Glucose, C-peptide, insulin concentrations, and the area of parameters reached greater changes especially after glucose load during OGTT (p ≤ 0.001). Considerable changes were already observed for the above parameters between groups with LDL-cholesterol ranges of 2.46-3.00 and 3.01-3.59 mmol/l. HOMA IR increased with higher LDL-cholesterol concentrations, but the differences in mean values were not statistically significant. Most important differences appeared in glucose metabolism at LDL-cholesterol concentrations of 3.60-7.18 mmol/l in comparison to LDL-cholesterol lower ranges. In particular, the areas of C-peptide, glucose, and insulin ranges showed statistically significant differences between all groups with growing LDL-cholesterol ranges. The variances of HOMA IR statistically differed between groups created according to LDL-cholesterol concentrations ranges. |
RT-qPCR investigation of post-mortem tissues during COVID-19Zhanna Berdygulova, Elina Maltseva, Yuliya Perfilyeva, Anna Nizkorodova, Andrey Zhigailov, Dinara Naizabayeva, Yekaterina O. Ostapchuk, Saltanat Kuatbekova, Zhaniya Dosmagambet, Moldir Kuatbek, Akerke Bissenbay, Alena Cherusheva, Akzhigit Mashzhan, Nurshat Abdolla, Sanzhar Ashimbekov, Gulnara Ismagulova, Andrey Dmitrovskiy, Seidigapbar Mamadaliyev, Yuriy SkibaJ Appl Biomed 22:115-122, 2024 | DOI: 10.32725/jab.2024.013 In 2020, there were numerous cases in Kazakhstan with clinical symptoms of COVID-19 but negative PCR results in nasopharyngeal and oropharyngeal swabs. The diagnosis was confirmed clinically and by CT scans (computed tomography). The problem with such negative PCR results for SARS-CoV-2 infection confirmation still exists and indicates the need to confirm the diagnosis in the bronchoalveolar lavage in such cases. There is also a lack of information about confirmation of SARS-CoV-2 infection in deceased patients. In this study, various tissue materials, including lungs, bronchi, and trachea, were examined from eight patients who died, presumably from SARS-CoV-2 infection, between 2020 and 2022. Naso/oropharyngeal swabs taken from these patients in hospitals tested PCR negative for SARS-CoV-2. This study presents a modified RNA isolation method based on a comparison of the most used methods for RNA isolation in laboratories: QIAamp Viral RNA Mini Kit and TRIzol-based method. This modified nucleic acid extraction protocol can be used to confirm SARS-CoV-2 infection by RT-qPCR in the tissues of deceased patients in disputed cases. RT-qPCR with RNA of SARS-CoV-2 re-extracted with such method from post-mortem tissues that were stored at -80 °C for more than 32 months still demonstrated high-yielding positive results. |
Causality assessment of adverse drug reaction: A narrative review to find the most exhaustive and easy-to-use tool in post-authorization settingsPallavi Pradhan, Maude Lavallée, Samuel Akinola, Fernanda Raphael Escobar Gimenes, Anick Bérard, Julie Méthot, Marie-Eve Piché, Jennifer Midiani Gonella, Lyne Cloutier, Jacinthe LeclercJ Appl Biomed 21:59-66, 2023 | DOI: 10.32725/jab.2023.010 Background: The core motive of pharmacovigilance is the detection and prevention of adverse drug reactions (ADRs), to improve the risk-benefit balance of the drug. However, the causality assessment of ADRs remains a major challenge among clinicians, and none of the available tools of causality assessment used for assessing ADRs have been universally accepted. Objective: To provide an up-to-date overview of the different causality assessment tools. Methods: We conducted electronic searches in MEDLINE, EMBASE, and the Cochrane database. The eligibility of each tool was screened by three reviewers. Each eligible tool was then scrutinized for its domains (the reported specific set of questions/areas used for calculating the likelihood of cause-and-effect relation of an ADR) to discover the most comprehensive tool. Finally, we subjectively assessed the tool's ease-of-use in a Canadian, Indian, Hungarian, and Brazilian clinical context. Results: Twenty-one eligible causality assessment tools were retrieved. Naranjo's tool and De Boer's tool appeared the most comprehensive among all the tools, covering 10 domains each. Regarding "ease-of-use" in a clinical setting, we judged that many tools were hard to implement in a clinical context because of their complexity and/or lengthiness. Naranjo's tool, Jones's tool, Danan and Benichou's tool, and Hsu and Stoll's tool appeared to be the easiest to implement into various clinical contexts. Conclusion: Among the many tools identified, 1981 Naranjo's scale remains the most comprehensive and easy to use for performing causality assessment of ADRs. Upcoming analysis should compare the performance of each ADR tool in clinical settings. |
Sequential hybrid ablation versus surgical CryoMaze alone for treatment of atrial fibrillation (SurHyb Trial): a protocol of the multicentre randomized controlled trialAlan Bulava, Aleš Mokráček, Dan Wichterle, Petr Budera, Pavel Osmančík, Petr Kačer, Linda Vetešková, Petr Němec, Tomáš Skála, Petr Šantavý, Jan Chovančík, Piotr Branny, Vitalii Rizov, Miroslav Kolesár, Marian RybářJ Appl Biomed 21:67-72, 2023 | DOI: 10.32725/jab.2023.007 Background: Atrial fibrillation is common in patients with structural heart disease who are undergoing cardiac surgery. Surgical CryoMaze has been shown to be an effective treatment in several trials, but success rates have varied considerably, between 47-95%. The sequential hybrid approach, combining surgical CryoMaze followed by radiofrequency catheter ablation, can achieve high freedom from atrial arrhythmias. However, in patients with concomitant surgical atrial fibrillation treatment, data comparing the hybrid approach to CryoMaze alone are lacking. Methods: The SurHyb study was designed as a prospective, open-label, multicentre randomized trial. Patients with non-paroxysmal atrial fibrillation who were scheduled for coronary artery bypass grafting or valve repair/replacement were randomized to either surgical CryoMaze alone or surgical CryoMaze followed by radiofrequency catheter ablation 3 months post-surgery. The primary outcome measure was arrhythmia-free survival without class I or III antiarrhythmic drugs, which has been evaluated using implantable cardiac monitors. Conclusions: This is the first randomized study that compares concomitant surgical CryoMaze alone with the staged hybrid surgical CryoMaze followed by catheter ablation, in patients with non-paroxysmal atrial fibrillation using rigorous rhythm monitoring. The results may contribute to the optimization of the treatment in patients undergoing concomitant CryoMaze for atrial fibrillation. |
Prenatal exposure to polycyclic aromatic hydrocarbons and growth parametersRadim J. Šrám, Ivo Solanský, Anna Pastorková, Miloš Velemínský, Jr., Miloš Velemínský, Kateřina Hoňková, Hana Barošová, Jana Schmuczerová, Kateřina Urbancová, Darina Dvořáková, Jana PulkrabováJ Appl Biomed 22:12-22, 2024 | DOI: 10.32725/jab.2024.004 Background and objectives: It has long been known that airborne polycyclic aromatic hydrocarbons (PAHs) can negatively affect pregnancy and birth outcomes, such as birth weight, fetal development, and placental growth factors. However, similar studies yield divergent results. Our goal was to estimate the amount of monohydroxylated PAH (OH-PAH) metabolites in the urine of pregnant women/mothers and their newborns in relation to birth outcomes, such as placenta weight, Apgar 5', and the growth parameters of children up to the age of two. Methods: Two cohorts of children born in 2013 and 2014 during the summer and winter seasons in the Czech Republic in the cities Karviná (N = 144) and České Budějovice (N = 198), which differ significantly in the level of air pollution, were studied. PAH exposure was assessed by the concentration of benzo[a]pyrene (B[a]P) in the air and the concentration of 11 OH-PAH metabolites in the urine of newborns and mothers. Growth parameters and birth outcomes were obtained from medical questionnaires after birth and from pediatric questionnaires during the following 24 months of the child's life. Results: Concentrations of B[a]P were significantly higher in Karviná (p < 0.001). OH-PAH metabolites were significantly higher in the mothers' as well as in the newborns' urine in Karviná and during the winter season. Neonatal length was shorter in newborns in Karviná (p < 0.001), but this difference evened out during the next 3 to 24 months. Compared to České Budějovice, newborns in Karviná showed significantly lower weight gain between birth and three months after delivery. The OH-PAH metabolites in mothers' or newborns' urine did not affect birth weight. The presence of seven OH-PAH (top 25% of values of concentrations higher than the median) metabolites in the newborns' urine is associated with decreased length of newborn. Nine OH-PAH metabolites decreased placenta weight, which was the most significant, while seven OH-PAH metabolites decreased Apgar 5'. Conclusion: We have shown a possible connection between higher concentration of OH-PAH metabolites in newborns' urine and decreased length, head circumference, placenta weight, and Apgar 5', but not birth weight. |
Rapid triage and transfer system for patients with proven Covid-19 at emergency departmentMartin Jakl, Jana Berková, Tomáš Veleta, Vladimír Palička, Petra Polcarová, Jan Smetana, Petr Grenar, Martina Čermáková, Jan Vaněk, Jan M. Horáček, Jaromír KočíJ Appl Biomed 22:59-65, 2024 | DOI: 10.32725/jab.2024.006 Background: COVID-19 is a viral disease notorious for frequent worldwide outbreaks. It is difficult to control, thereby resulting in overload of the healthcare system. A possible solution to prevent overcrowding is rapid triage of patients, which makes it possible to focus care on the high-risk patients and minimize the impact of crowding on patient prognosis. Methods: The triage algorithm assessed self-sufficiency, oximetry, systolic blood pressure, and the Glasgow coma scale. Compliance with the triage protocol was defined as fulfillment of all protocol steps, including assignment of the correct level of care. Triage was considered successful if there was no change in the scope of care (e.g., unscheduled hospital admission, transfer to different level of care) or if there was unexpected death within 48 hours. Results: A total of 929 patients were enrolled in the study. Triage criteria were fulfilled in 825 (88.8%) patients. Within 48 hours, unscheduled hospital admission, transfer to different level of care, or unexpected death occurred in 56 (6.0%), 6 (0.6%), and 5 (0.5%) patients, respectively. The risk of unscheduled hospital admission or transfer to different level of care was significantly increased if triage criteria were not fulfilled [13.1% vs. 76.1%, RR 5.8 (3.8-8.3), p < 0.001; 0.5% vs. 5.2%, RR 11.4 (2.3-57.7), p = 0.036, respectively]. Conclusion: The proposed algorithm for triage of patients with proven COVID-19 is a simple, fast, and reliable tool for rapid sorting for outpatient treatment, hospitalization on a standard ward, or assignment to an intensive care unit. |
Today's cancer research and treatment - highly sophisticated and molecularly targeted, yet firmly bolstered in the classical theoriesThomas W. GruntJ Appl Biomed 22:123-128, 2024 | DOI: 10.32725/jab.2024.016 Cancer research is linked to modern life-sciences, encompassing achievements in virology, yeast-biology, molecular-biology, genetics, systems-biology, bioinformatics, and so on. With these fascinating developments, it's easy to overlook that the fundamental theories and treatment strategies were established in the early 20th century and have remained valid ever since. Therefore, tribute must be paid to the founders of the field. The main hypotheses on carcinogenesis, the genetic model and the metabolic model, and the concept of cancer-treatment with cytotoxic, targeted or metabolic drugs were proposed more than 100 years ago by great minds such as T. Boveri, O. Warburg, and P. Ehrlich. Hence nothing about these cancer concepts is really new. Through development of powerful new technologies, we have been able to decipher the mechanisms of malignant transformation, thus significantly advancing the field. Our own studies have been focused on the cross-talk between cell-growth-signaling and lipid-metabolism in ovarian cancer to find crossover-points for co-targeting in order to achieve synergistic treatment effects. Notably, a side-effect of the application of current methods of molecular-cell-biology is a deeper knowledge of the laws of normal cell-biology and cell-life. Thus we anticipate the field will advance rapidly in the near future. |
Astragaloside IV confronts amyloid-beta-induced astrocyte senescence via hsp90aa1Xia Yan, Rongxiang Zeng, Yajun CaoJ Appl Biomed 22:129-135, 2024 | DOI: 10.32725/jab.2024.015 Cell senescence is intensively related to aging and neurodegenerative diseases. This study aimed to explore the effect and targets of Astragaloside IV against amyloid-beta-induced astrocyte senescence. Oligomerized amyloid-beta was prepared to culture with human astrocytes. The effects of Astragaloside IV were assessed based on SA-β-gal staining analysis, senescence markers (p53, p16INK4, and p21WAF1), neurotrophic growth factor levels (qRT-PCR), and cell proliferation (CCK-8 kit). The targets for Astragaloside IV were predicted, and hsp90aa1 protein was verified using molecular docking. After hsp90aa1 overexpression, the effects of Astragaloside IV on amyloid-beta-induced astrocytes were assessed. Treatment of human amyloid-beta-induced astrocytes with Astragaloside IV can decrease the percentage of SA-β-gal positive cells, downregulate the p53, p16INK4, and p21WAF1 levels, and increase the levels of neurotrophic growth factors (IGF-1 and NGF mRNA) and cell proliferation. Based on target prediction, hsp90aa1 was found to be a potential target of Astragaloside IV. Moreover, cellular experiments demonstrated that exogenously enhanced expression of hsp90aa1 overexpression suppressed the protective effect of Astragaloside IV on amyloid-beta-induced human astrocytes. The results presented here demonstrate that Astragaloside IV could confront amyloid-beta-induced astrocyte senescence via hsp90aa1, possibly opening new therapeutic avenues. |
Possible relationship between respiratory diseases and urinary concentrations of polycyclic aromatic hydrocarbon metabolites - a pilot studyVeronika Gomersall, Kateřina Ciglová, Hana Barošová, Kateřina Hoňková, Ivo Solanský, Anna Pastorková, Radim J. Šrám, Jana Schmuczerová, Jana PulkrabováJ Appl Biomed 22:89-98, 2024 | DOI: 10.32725/jab.2024.012 This study investigates the potential relationship between exposure to polycyclic aromatic hydrocarbons (PAHs), specifically monohydroxylated metabolites (OH-PAHs), in urine, and the prevalence of respiratory diseases in 2-year-old children residing in two locations within the Czech Republic - České Budějovice (control location) and the historically contaminated mining district of Most. Despite current air quality and lifestyle similarities between the two cities, our research aims to uncover potential long-term health effects, building upon previous data indicating distinctive patterns in the Most population. A total of 248 urine samples were analysed for the presence of 11 OH-PAHs. Employing liquid-liquid extraction with ethyl acetate and clean-up through dispersive solid-phase extraction, instrumental analysis was conducted using ultra-high performance liquid chromatography coupled with tandem mass spectrometry. The incidence of respiratory diseases was assessed through questionnaires administered by paediatricians. The concentrations of OH-PAHs were elevated in urine samples from 2-year-olds in Most compared to those from České Budějovice. The incidence of respiratory diseases showed statistically significant higher levels of OH-PAHs in children from Most, together with a higher incidence of influenza. This association underlines the impact of environmental PAH exposure on children's respiratory health. It suggests that elevated urinary OH-PAH levels indicate an increased risk of developing respiratory diseases in the affected population. Further studies are needed to clarify the possible long-term health effects and to contribute to sound public health strategies. |
Linoleic acid inhibits lipopolysaccharide-induced inflammation by promoting TLR4 regulated autophagy in murine RAW264.7 macrophagesYin Qin, Kexin Li, Qiuhong Zhang, Jie Liu, Yu Xie, Tingting Zhang, Xiaoliang Wang, Li Zhang, Yu Jiang, Gang LiuJ Appl Biomed 22:185-196, 2024 | DOI: 10.32725/jab.2024.023 Linoleic acid (LA), an essential fatty acid, has emerged as a pivotal regulator in disorders associated with inflammation in recent years; however, the underlying mechanisms are still not completely understood. We utilized network pharmacology and experimental methodologies to elucidate the mechanisms underlying the anti-inflammatory effects of LA. Our network pharmacology analysis revealed that LA shares common targets with sepsis. These targets are enriched in various pathways comprising C-type signaling pathway, PI3K-Akt signaling pathway, toll-like receptor signaling pathway, neutrophil extracellular trap formation, AMPK signaling pathway, and autophagy-animal. These findings suggest that LA may exert regulatory effects on inflammation and autophagy during sepsis. Subsequently, we established in vivo and ex vivo models of sepsis using lipopolysaccharide (LPS) in experimental study. Treatment with LA reduced lung damage in mice with LPS-induced lung injury, and reduced tumor necrosis factor-α (TNF-α) and interleukin-6 (IL-6) in plasma, bronchoalveolar lavage fluid (BALF), and peritoneal lavage fluid (PLF). LA also decreased the production of TNF-α and IL-6 in RAW264.7 macrophages exposed to LPS. In LPS-induced RAW264.7 macrophages, LA induced an elevation in LC3-II while causing a reduction in p62, which was associated with downregulation of toll-like receptor 4 (TLR4). We utilized 3-methyladenine (3-MA) to inhibit the autophagic activity, which reversed the modulatory effects of LA on LC3-II and p62. 3-MA also prevented the decline in TLR4 expression along with reduction in pro-inflammatory cytokines secretion. Our findings suggest that the activation of autophagy by LA may lead to the downregulation of TLR4, thereby exerting its anti-inflammatory effects. |
Endoscopic luminal impedance planimetry of the lower oesophageal sphincter and pylorus in experimental pigs: a pilot studyJan Bureš, Věra Radochová, Darina Kohoutová, Miroslav Zavoral, Kristina Hugová, Štěpán Suchánek, Ondřej Soukup, Jan MartínekJ Appl Biomed 22:221-227, 2024 | DOI: 10.32725/jab.2024.026 Background/Aims: The functional lumen imaging probe (FLIP) relies on the principle of impedance planimetry that enables direct measurement of intraluminal pressure, cross-sectional areas, and wall biomechanical properties. The aim of our pilot project was to introduce this method to assess function of the lower oesophageal sphincter and pyloric muscle in experimental pigs. Methods: All measurements were accomplished in one session in six adult female pigs (mean weight 34.2 ± 3.6 kg), using the EndoFLIP 1.0 System with EndoFLIP catheters. Five major parameters were evaluated: balloon pressure (mm Hg), estimated diameter (mm), cross-sectional area (mm2), distensibility (mm2/mm Hg), and zone compliance (mm3/mm Hg). Results: In total, 180 readings were successfully accomplished. Most of the measured values were nearing lower average figures for the lower oesophageal sphincter, and upper average figures for the pylorus in healthy humans. The porcine pyloric sphincter is composed of the Torus pyloricus. It serves as a study "gatekeeper" between the stomach and D1 duodenum, thus explaining higher pyloric readings. There was a clear trend for increasing values of CSA (cross-sectional area), diameter, and balloon pressure with increased filling balloon volumes. However, the sphincter distensibility did not change with increasing filling volumes, either for the lower oesophageal sphincter or pylorus. Conclusion: Endoscopic functional luminal planimetry in experimental pigs is feasible, both for the lower oesophageal sphincter and the pylorus. This is an important starting point for future experimental endoscopic trials and pharmacology studies. |
Homospisulosine induced apoptosis in cervical carcinoma cells is associated with phosphorylation of Bcl-2 and up-regulation of p27/Kip1Martina Bago Pilátová, Natália Nosálová, Gabriela Očkajáková, Martin Kello, Klaudia Kotorová, Peter Takáč, Peter Petik, Peter Bohuš, Kvetoslava Stanková, Miroslava Martinková, Roman MezencevJ Appl Biomed 21:218-227, 2023 | DOI: 10.32725/jab.2023.019 Spisulosine (1-deoxysphinganine) is a sphingoid amino alcohol isolated from the sea clams that showed potent antiproliferative activity against a broad spectrum of solid tumors but failed in clinical trials due to neurotoxicity. However, its structural similarity to other bioactive sphingoids, interesting mode of action, and appreciable potency against cancer cells make it a suitable lead for future anticancer drug development. The present study was conducted to elucidate mechanisms of the antiproliferative/cytotoxic effects of newly synthesized spisulosine analog homospisulosine (KP7). The evaluation was performed on cervical carcinoma cells, representing an in vitro model of one of the most common cancer types and a significant worldwide cause of women's cancer mortality. Treatment with homospisulosine (2.0 μM) for 24, 48, and 72 h significantly inhibited the growth of HeLa cells in vitro and induced apoptosis detectable by DNA fragmentation, externalization of phosphatidylserine, dissipation of mitochondrial membrane potential, activation of caspase-3 and cleavage of PARP. In addition, treating HeLa cells with spisulosine increased p27 and Bcl-2 on protein levels and phosphorylation of Bcl-2 on Ser70 residue. These results support the potential for spisulosine analogs represented here by homospisulosine for future therapeutic development. |
Naringin inhibits P2X4 receptor expression on satellite glial cells in the neonatal rat dorsal root ganglionHongji Wang, Lisha Chen, Juping Xing, Xiangchao Shi, Changshui XuJ Appl Biomed 21:193-199, 2023 | DOI: 10.32725/jab.2023.021 Naringin inhibits inflammation and oxidative stress, the P2 purinoreceptor X4 receptor (P2X4R) is associated with glial cell activation and inflammation, the purpose of this study is to investigate the effects of naringin on P2X4 receptor expression on satellite glial cells (SGCs) and its possible mechanisms. ATP promoted the SGC activation and upregulated P2X4R expression; naringin inhibited SGC activation, decreased expression of P2X4R, P38 MAPK/ERK, and NF-κB, and reduced levels of Ca2+, TNF-α, and IL-1β in SGCs in an ATP-containing environment. These findings suggest that naringin attenuates the ATP-induced SGC activation and reduces P2X4R expression via the Ca2+-P38 MAPK/ERK-NF-κB pathway. |
The molecular targets of Kangai injection in gastric cancer by in silico network pharmacology approach and experiment confirmationYongjun Qiu *, Sujun Huang, Minfang ZhuJ Appl Biomed 21:150-159, 2023 | DOI: 10.32725/jab.2023.017 Introduction: This study aimed to identify the phytochemical constituents that could target gastric cancer in Kangai injection using a network pharmacology-based approach. Methods: Protein-protein interactions (PPI), Gene Ontology, and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway enrichment analysis were conducted utilizing String and OmicShare tools. In the in vitro experiments, the related mRNA and protein levels were assessed via real-time quantitative polymerase chain reaction and Western blotting, respectively. Cell proliferation was assessed using 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazoliumbromide (MTT) assay. Results: Kangai injection comprises several compounds, which target multiple substrates and pathways related to gastric cancer. The PPI and Gene Ontology analyses revealed that tumor necrosis factor (TNF) was a hub gene. KEGG pathway enrichment analysis indicated that the the TNF pathway was significantly enriched. Kangai injection decreased the mRNA levels of TNFR2, TRAF2, PI3K, AKT, and IκBα and inhibited the phosphorylation of PI3K, AKT, and IκBα phosphorylations. Kangai injection inhibited cell proliferation, while TNFR2 overexpression or treatment with the PI3K activator 740 Y-P partially restored it. Conclusion: Kangai injection operates through multiple targets and pathways in gastric cancer, with the TNFR2/PI3K/AKT/NF-κB pathway playing a crucial role in its mechanism against gastric cancer. |
Allele frequency and genotype distribution of the opioid receptor μ-1 (OPRM1) A118G polymorphism in the Western Saudi populationAmina M. Bagher *, Rawan H. HareeriJ Appl Biomed 21:160-165, 2023 | DOI: 10.32725/jab.2023.012 The single nucleotide polymorphism (SNP) A118G (rs1799971) in the Mu Opioid Receptor 1 (OPRM1) gene is associated with significant variations in analgesic doses and adverse effects of opioids. The A118G OPRM1 allele distributions vary significantly between different populations worldwide. The study aimed to assess the allele frequency and genotype distribution of OPRM1 A118G SNP in Saudis. This cross-sectional study included 124 healthy Saudis (62 males and 62 females) visiting the King Abdulaziz University Hospital in Jeddah, Saudi Arabia. The Oragene®-DISCOVER (OGR-600) kits were used to collect saliva samples from the participants. Polymerase chain reaction-restriction fragment length polymorphism was utilized to assess the SNP. Among the tested population, 79.03% (95% C.I. 70.81-85.82) were homozygous wild-type A118A, 16.13% (95% C.I. 10.14-23.80) were heterozygous A118G, and 4.84% (95% C.I. 1.80-10.23) were homozygous mutant G118G. OPRM1 A118G polymorphism allele frequencies were 87% (95% C.I. 79.89-92.44) and 13% (95% C.I. 7.56-20.11) for the 118A and 118G alleles, respectively. A higher frequency of the OPRM1 118G allele was present in females, 21% (95% C.I. 11.66-33.17) compared to males, 5% (95% C.I. 1.01-13.50). Relative to other Asian countries, the Saudi population showed a low prevalence of the OPRM1 A118G polymorphism, with a higher frequency of the 118G allele in females. Our research will contribute to the existing knowledge on the prevalence of OPRM1 A118G polymorphism, which could be considered for the personalized prescribing of opioid analgesics. |
Anticancer and antimicrobial evaluation of extract from brown algae Hormophysa cuneiformisNehal A. H. K. Osman, Omniya M. Abd-Elazeem, Rasha A. Al-Eisa, Nahla S. El-ShenawyJ Appl Biomed 21:121-136, 2023 | DOI: 10.32725/jab.2023.016 Aim: We investigated the antimicrobial and anticancer properties of an ethanol crude extract of Red Sea brown alga (Hormophysa cuneiformis) from Egypt. Methods: Extraction was achieved by mixing 100 g of sample powder with absolute ethanol, incubating at 37 °C overnight in a shaking incubator, and then collecting the extract. The extract's antimicrobial activity was tested using a well diffusion assay against the tested pathogens (Escherichia coli, Bacillus subtilis, Staphylococcus aureus, and Candida albicans) in comparison to commercial antibiotics. Anticancer activity was assessed using MTT assay on MCF-7, HepG-2, and HEP-2 cell lines. The anticancer mechanism of action against the HepG-2 cell line was investigated using cell cycle analysis, Annexin V, and antioxidant enzymes, in addition to transmission electron microscopy. Results: GC-MS phytoconstituent profile of the extract was dominant with fatty acids. A broad antimicrobial effect against all the pathogenic isolates of E. coli, S. aureus, B. subtitles, and C. albicans was demonstrated, especially at the high concentration in comparison to commercial antibiotics. The extract could inhibit the growth of the tested cell lines. We observed the most significant effect on HepG-2 cells, and the concentration of the extract played a role in the level of inhibition (IC50 of 44.6 ± 0.6 µg/ml). The extract had negligible effects on Vero normal cell lines at the lower concentration, with slight toxicity (90.8% viability) at the highest concentration (500 µg/ml). At this same concentration, the extract caused 80-92% inhibition of the cancer cell lines. The extract appears to have demonstrated promising effects on cancer cells. It induces programmed cell death (apoptosis), arrests the cell cycle, and affects the oxidative/antioxidant balance within the cells, potentially leading to the suppression or elimination of cancer cells. These findings are encouraging and may have implications for cancer treatment or further research in this area. More action of extract was seen against bacteria than fungi, with a wide antibacterial impact against all of the tested isolates, notably at the high concentration in comparison to conventional antibiotics. Conclusion: According to the findings, H. cuneiformis may be a valuable source of chemicals that are both antimicrobial and anticancer. |
The importance of preoperative and perioperative Narrow Band Imaging endoscopy in the diagnosis of pre-tumor and tumor lesions of the larynxTomáš Filipovský, David Kalfeřt, Eva Lukavcová, Šárka Zavázalová, Jiří Hložek, Daniel Kovář, Jaromír Astl, Richard HolýJ Appl Biomed 21:107-112, 2023 | DOI: 10.32725/jab.2023.015 Introduction: Narrow band imaging (NBI) is an endoscopic imaging method intended for the diagnosis of mucosal lesions of the larynx that are not visible in white-light endoscopy, but are typical of pre-tumor and tumor lesions of the larynx. The purpose of the study: To compare preoperative/perioperative white light endoscopy and NBI endoscopy with the results of histopathological examinations in pre-tumor and tumor lesions of the larynx. Methods: A prospective study, over a period of five years (5/2018-5/2023), included 87 patients with laryngeal lesions aged 24-80 years. We evaluated preoperative/ perioperative white light and NBI endoscopy, established a working prehistological diagnosis, and compared this with the definitive histopathological results of laryngeal biopsies. Results: In relation to the definitive histology score, a statistically significant correlation was found between the evaluation of the finding and the definitive histology for preoperative and perioperative white light endoscopy and NBI endoscopy (p < 0.001). Both methods showed higher precision when used perioperatively. Conclusion: NBI endoscopy is an optical method that allows us to improve the diagnosis of laryngeal lesions, perform a controlled perioperative biopsy, and refine the surgical scope. The NBI endoscopy is a suitable method for the diagnosis of early cancerous lesions of the larynx. The use of preoperative/perioperative NBI endoscopy allowed us to achieve a high level of agreement correlation (p < 0.001) between the prehistological working diagnosis and the final histopathological result. The NBI method proves its application in the diagnosis of pre-tumor and tumor lesions of the larynx. |
Amaryllidaceae alkaloids in skin cancer management: Photoprotective effect on human keratinocytes and anti-proliferative activity in melanoma cellsCarol Castañeda, Karent Bravo, Natalie Cortés, Janeth Bedoya, Warley de S. Borges, Jaume Bastida, Edison OsorioJ Appl Biomed 21:36-47, 2023 | DOI: 10.32725/jab.2023.004 Skin cancer has high rates of mortality and therapeutic failure. In this study, to develop a multi-agent strategy for skin cancer management, the selective cytotoxicity of several alkaloid fractions and pure alkaloids isolated from Amaryllidaceae species was evaluated in melanoma cells. In addition, UVB-stimulated keratinocytes (HaCaT) were exposed to seven alkaloid fractions characterized by GC-MS, and the production of intracellular reactive oxygen species (ROS) and IL-6, were measured to evaluate their photoprotection effects. The Eucharis caucana (bulb) alkaloid fraction (20 μg/ml) had a clear effect on the viability of melanoma cells, reducing it by 45.7% without affecting healthy keratinocytes. This alkaloid fraction and tazettine (both at 2.5 μg/ml) suppressed UVB-induced ROS production by 31.6% and 29.4%, respectively. The highest anti-inflammatory potential was shown by the Zephyranthes carinata (bulb) alkaloid fraction (10 μg/ml), which reduced IL-6 production by 90.8%. According to the chemometric analysis, lycoramine and tazettine had a photoprotective effect on the UVB-exposed HaCaT cells, attenuating the production of ROS and IL-6. These results suggest that Amaryllidaceae alkaloids have photoprotective and therapeutic potential in skin cancer management, especially at low concentrations. |
As a novel anticancer candidate, ether extract of Dendrobium nobile overstimulates cellular protein biosynthesis to induce cell stress and autophagyRuoxi Zhao, Shigang Zheng, Ying Li, Xueqin Zhang, Dan Rao, Ze Chun, Yadong HuJ Appl Biomed 21:23-35, 2023 | DOI: 10.32725/jab.2022.019 Increasing data has confirmed the potential anticancer properties of Dendrobium, a traditional Chinese herb. However, most anticancer compositions from the plant of Dendrobium were usually extracted by high polar solvent, while weak polar compositions with excellent anticancer activity remained largely unexplored. In this study, the differences between ether extract and ethanol extract of Dendrobium nobile Lindl. on chemical components and anticancer activities were investigated, as well as the anticancer mechanisms among different extracts. The results demonstrated that the ether extract exhibited a stronger anticancer effect than ethanol extract, and its anticancer effect was mainly due to weak polar compounds rather than polysaccharides and alkaloids. Quantitative proteomics suggested that the ether extract significantly stimulated the over-expression of immature proteins, the endoplasmic reticulum stress and unfolded protein response were subsequently induced, the intracellular reactive oxygen species level was seriously elevated, and oxidative stress occurred in the meanwhile. Eventually, autophagy and apoptosis were activated to cause cell death. Our findings demonstrate that the ether extract of D. nobile is a potential candidate for anticancer drug development, and that future research on anticancer drugs derived from medicinal plants should also concentrate on weak polar compounds. |
ADIPOQ-rs2241766 polymorphism is associated with changes in cholesterol levels of Mexican adolescentsRafael Baltazar Reyes Leon-Cachon, Mauricio Andres Salinas-Santander, Daniela Alejandra Aguilar-Tamez, Paola MarianaValdez-Ortiz, Clara Patricia Rios-Ibarra, Ana Cecilia Cepeda-Nieto, Victor de Jesus Suarez-Valencia, Jesus Antonio Morlett-ChavezJ Appl Biomed 20:146-153, 2022 | DOI: 10.32725/jab.2022.017 Background: The ADIPOQ gene encodes a fat-derived protein hormone with a preponderant role in the homeostasis of glucose and fatty acids. However, previous association studies between ADIPOQ genetic variants and metabolic disorders have shown controversial results. In this study, we evaluated the effect of the ADIPOQ-rs2241766 polymorphism on diverse biochemical parameters (i.e., insulin resistance, atherogenic index, overweight and obesity) in an adolescent population from Mexico. Methods: A cross-sectional study with convenience sampling was carried out in 356 adolescents from Northern Mexico. They were classified by sex and BMI-z score. The biochemical parameters were measured from blood samples using conventional methods. Genotyping was performed by polymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP). Results: In low and normal weight groups, GG carriers had a significantly higher cholesterol level (P ≤ 0.05) than TG and TT carriers. However, there was no association between ADIPOQ-rs2241766 polymorphism and atherogenic index, overweight, or obesity. Conclusions: Our findings suggest that the cholesterol levels are under the influence of the ADIPOQ-rs2241766 polymorphism in Mexican adolescents and may explain how ADIPOQ variants increase the risk of developing metabolic disorders. Nevertheless, further studies are required to rule out the influence of other genetic and non-genetic factors. |

