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Amelioration of obesity induction by a high-fat diet and related inflammation by Phasa fish (Setipinna phasa) oil in BALB/c miceTitli Panchali, Ananya Dutta, Pipika Das, Amina Khatun, Riya Kar, Subhadeep Mondal, Keshab Chandra Mondal, Sudipta Chakrabarti, Kuntal Ghosh, Shrabani PradhanJ Appl Biomed 22:49-58, 2024 | DOI: 10.32725/jab.2024.003 We have extracted and characterized Phasa fish (Setipinna phasa) oil for the first time to evaluate the anti-obesity and related anti-inflammatory effects on obese mice. Inbred male albino BALB/c mice were segregated into three categories: control (C), Obese control group (OC), and Phasa fish oil treated group (TX). To establish the potentiality of Setipinna phasa oil for its anti-obesity and anti-inflammatory properties, it was extracted and characterized using GC-MS method. To evaluate the anti-obesity effect, different parameters were considered, such as body weight, lipid composition, obesity, and obesity associated inflammation. The physicochemical characteristics of Phasa fish oil revealed that the oil quality was good because acid value, peroxide value, p-anisidine value, Totox value, refractive index, and saponification value were within the standard value range. The GC-MS study explored the presence of fatty acids beneficial to health such as Hexadec-9-enoic acid; Octadec-11-enoic acid; EPA, DHA, Methyl Linolenate, etc. The application of Setipinna phasa oil on the treated mice group acutely lowered body weight and serum lipid profile compared to the obese group. In connection with this, leptin, FAS, and pro-inflammatory cytokines TNF-α genes expression were downregulated in the treated group compared to the obese group. The Phasa oil treated group had an elevated expression of PPAR-α, adiponectin, LPL gene, and anti-inflammatory markers IL-10 and IL-1Ra compared to the obese group. This study suggests that Phasa fish oil, enriched with essential fatty acid, might be used as an anti-obesity and anti-inflammatory supplement. |
Rapid triage and transfer system for patients with proven Covid-19 at emergency departmentMartin Jakl, Jana Berkov, Tom Veleta, Vladimr Palika, Petra Polcarov, Jan Smetana, Petr Grenar, Martina ermkov, Jan Vank, Jan M. Horek, Jaromr KoJ 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. |
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. |
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. |
Anti-NMDAR1 antibody impairs dendritic branching in immature cultured neuronsPascal Jorratt, Aneta PetrukovJ Appl Biomed 22:136-140, 2024 | DOI: 10.32725/jab.2024.019 Anti-N-methyl D-aspartate receptor (anti-NMDAR) encephalitis is an autoimmune disorder characterized by IgG antibodies targeting NMDAR. The prevalence is remarkably higher in women and some develop the condition during pregnancy. While immunotherapies have shown good outcomes for pregnant mothers and their infants, the impact on early neurodevelopment remains elusive. This study investigates the effects of anti-NMDAR antibody on the development of primary cortical cultures. Anti-NMDAR antibody was administered to the cultures at day in vitro 5 for the following 5 days to assess dendritic branching and arbor complexity, and at day in vitro 14 for measuring the expression of brain-derived neurotrophic factor (BDNF) and synaptic proteins. Immature cultured neurons treated with anti-NMDAR antibody exhibited impaired dendritic branching and arbor complexity. Interestingly, BDNF expression was unaffected in mature neurons. Additionally, GluN1 expression, a mandatory NMDAR subunit, was significantly reduced, while no significant alterations were observed in PSD-95, gephyrin and synaptophysin expression. These findings shed light on the structural and synaptic impacts of anti-NMDAR antibody on immature neurons, providing evidence for their consequences in early neuronal development. |
Salivary glands - a new site of Helicobacter pylori occurrenceJan Rotngl, Ji Hloek, Richard Hol, Emil Pavlk, David Kalfet, Jaromr AstlJ Appl Biomed 22:141-148, 2024 | DOI: 10.32725/jab.2024.018 Objective: The role of Helicobacter pylori (Hp) in the pathological processes of the gastric mucosa is well understood. Decreasing trend in successful eradication of HP from the stomach was observed in last years. This lack of succes is mainly caused by increasing ATB resistance. Nevertheless other possible causes of this phenomenon are being explored. Thus, many studies have focused on the search for extragastric reservoirs as potential sources of persistence or reinfection after successful Hp eradication. The pathological potential of Hp at these localities has also been studied. Methods: Our study aimed to determine the presence of Hp inside the salivary glands ductal system through its detection from sialolites. Subsequently, we tried to prove the possible ability of Hp to penetrate the salivary gland parenchyma by detecting Hp from the tissue of salivary tumors. Concrements and salivary tumor tissue samples were collected using sialendoscopy or standard surgery, and Hp detection and genotyping were performed through PCR. Results: Hp was detected in 68.3% of the sialopathy samples. VacA S1AM1 was the most common genotype. CagA-positive genotype represented only 34% of the total number of positive samples. Conclusion: Our findings of Hp positivity in concrements provide compelling evidence of Hp presence in the ductal system of salivary glands. Confirmation of Hp presence in tumor tissue suggests its potential ability to infiltrate the gland's parenchyma. Further research is needed to confirm Hp's ability to cause local infection, as well as the possible causal association between Hp presence in the studied region, sialolithiasis, and salivary gland tumors. |
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. |
Syringin protects high glucose-induced BMSC injury, cell senescence, and osteoporosis by inhibiting JAK2/STAT3 signalingYu-Cong Zou, Kai Gao, Bao-Tao Cao, Xiao-Li He, Wei Zheng, Xiao-Fei Wang, Yu-Fu Li, Feng Li, Hua-Jun WangJ Appl Biomed 22:197-207, 2024 | DOI: 10.32725/jab.2024.021 Background: Acanthopanax senticosus (Rupr. et Maxim.) is commonly used in Traditional Chinese Medicine. Syringin is a major ingredient of phenolic glycoside in Acanthopanax senticosus. Objective: This study was performed to investigate whether Syringin could protect high glucose-induced bone marrow mesenchymal stem cells (BMSCs) injury, cell senescence, and osteoporosis by inhibiting JAK2/STAT3 signaling. Methods: BMSCs isolated from both the tibia and femur of mice were induced for osteogenesis. The cell senescence was induced using the high glucose medium. The cells were treated with 10 and 100 μmol/l Syringin. Immunohistochemistry staining was performed to determine the β-galactosidase (SA-β-gal) levels in differentially treated BMSCs. MTT assay and flow cytometry analysis were also performed to assess cell viability and cell cycle. The level of ROS in cells with different treatment was measured by using flow cytometry with DCF-DA staining. Calcium deposition and mineralized matrices were detected with alizarin red and ALP staining, respectively. Osteogenesis related genes OCN, ALP, Runx2, and BMP-2 were detected by RT-PCR. Levels of senescence-related proteins including p53 and p21, as well as JAK2, p-JAK2, STAT3, and p-STAT3 were detected by Western blot analysis. Results: Syringin treatment reversed the phenotypes of senescence caused by high glucose in BMSCs, including the arrest of G0/G1 cell cycle, enhanced SA-β-gal activity, and impaired cell growth. Syringin also decreased the elevated ROS production and the levels of p53, p21, and JAK2/STAT3 signaling activation. In addition, Syringin also enhanced the osteogenic potential determined by ARS and ALP staining, as well as increasing OCN, ALP, Runx2, and BMP-2 expressions. Conclusion: Syringin protects high glucose-induced BMSC injury, cell senescence, and osteoporosis by inhibiting JAK2/STAT3 signaling. |
Association between mean platelet volume and adiponectin in patients with metabolic syndromeMilos Marinkovic, Jelena Nesic, Ivica Petrovic, Ivan P Jovanovic, Marija Sekulic, Svetlana Djukic, Aleksandar DjukicJ Appl Biomed 22:208-213, 2024 | DOI: 10.32725/jab.2024.022 Background: Metabolic syndrome is a significant pro-inflammatory and pro-coagulant condition. The clinical association of adiponectin, a mainly antidiabetogenic molecule, and its interaction with platelets and platelet indices remains insufficiently investigated. Objective: The aim of our study was to investigate the association of adiponectin with platelets and platelet indices in patients with metabolic syndrome. Methods: The investigation was conducted as a cross-sectional study involving 113 subjects: 63 patients with the diagnosis of metabolic syndrome, and 50 healthy controls - with clear inclusion and exclusion criteria. The group of patients with metabolic syndrome was divided into two subgroups according to the platelet/high-density lipoprotein (HDL) ratio. Results: The subgroup with a higher platelet/HDL ratio was prediabetic. In the same subgroup of patients, a positive correlation between the adiponectin and mean platelet volume (MPV) was seen, while linear regression (95% CI) confirmed the association. Conclusion: Considering that MPV is the index that indicates average platelet volume and activity, we believe this association with adiponectin can represent a protective compensatory response in patients with metabolic syndrome and prediabetes. Our results provide a basis for a more precise selection of patients in whom the future therapeutic application of recombinant adiponectin would be most effective. |
BRAF V600E positive papillary thyroid carcinoma (TERT and TP53 mutation coexistence excluded): Correlation of clinicopathological features and the extent of surgical treatment and its complicationsJi Hloek, Jan Rotngl, Richard Hol, Tereza Hlokov, Barbora Pekov Bulanov, Vlasta Kuklkov, Bla Bendlov, Ji Soukup, Petr Hrabal, Jaromr AstlJ Appl Biomed 22:214-220, 2024 | DOI: 10.32725/jab.2024.025 Introduction: Papillary thyroid carcinoma (PTC) frequently harbors the BRAF V600E mutation. Recent research suggests that aggressive behavior in BRAF V600E+ PTC may be due to an undetected mutation in the TERT gene. This study aims to observe the clinicopathological features of BRAF V600+ PTC and correlate them with surgical treatment complications. Methods: A retrospective analysis was conducted on the BRAF V600E+ PTC cohort from July 2019 to January 2023. The histopathological features and surgical treatment (total thyroidectomy - group A, total thyroidectomy + central block neck dissection - group B) complications were correlated. Patients with TERT and TP53 mutation were excluded. Next-generation sequencing and real-time PCR were used for genetic analysis. Results: Out of 121 PTCs, 65 cases showed BRAF V600E mutation with the following features: intracapsular spread (13.8%), extracapsular spread (27.7%), extrathyroidal spread (15.4%), multifocality (26.2%), angioinvasion (12.3%), and local metastasis (27.7%). The incidence of surgical complications in group A/B was: reversible recurrent laryngeal nerve (RLN) paresis 3.7/7.1%, RLN paresis permanent 0/2.4%, paresthesia 6.8/23.8%, hypocalcemia 36.4/61.9% on day 1 and 27.3/33.3% on day 3, and bleeding 2.3/9.5%. There was no significant difference in clinicopathological features between the BRAF V600E+ and BRAF V600E- PTC groups. Group B had a significantly higher incidence of hypoacalcaemia on postoperative day 1 (p = 0.047). Conclusion: The BRAF V600E mutation will certainly remain important in the preoperative diagnosis of PTC. The more radical surgical procedures currently recommended may be abandoned in the future, particularly elective CLND, which has a higher risk of postoperative complications. |
Endoscopic luminal impedance planimetry of the lower oesophageal sphincter and pylorus in experimental pigs: a pilot studyJan Bure, Vra Radochov, Darina Kohoutov, Miroslav Zavoral, Kristina Hugov, tpn Suchnek, Ondej Soukup, Jan MartnekJ 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. |
Genetic variation in the ADIPOQ gene and serum adiponectin increase the risk of bladder cancerLina Elsalem, Mahmoud A. Alfaqih, Samir Al Bashir, Omar Halalsheh, Haneen A. Basheer, Khawla Mhedat, Yousef Khader, Klaus PorsJ Appl Biomed 20:106-113, 2022 | DOI: 10.32725/jab.2022.012 Bladder cancer (BC) is the 10th most common cancer worldwide. Genetic studies estimated 30% heritability in BC risk. Adiponectin is an adipocytokine that has important roles in the regulation of energy metabolism. Recent evidence suggests dysregulation of adiponectin levels in BC tissues. Serum level of adiponectin is influenced by single nucleotide polymorphisms (SNPs) in the ADIPOQ gene. However, limited evidence is available regarding the association between adiponectin serum levels or SNPs in ADIPOQ and BC risk. This study aimed to assess whether adiponectin serum levels or SNPs in ADIPOQ may modify BC risk. In this case-control study, 114 BC patients were recruited along with 114 controls. Study subjects were genotyped for variations in ADIPOQ SNPs, namely rs17300539, rs266729, rs2241766, and rs1501299. Adiponectin levels were measured from the serum of study subjects. Our analysis showed that the G allele and the GG genotype of rs1501299 were significantly more frequent in BC patients compared to those in the control group (p-value < 0.05). Moreover, two ADIPOQ haplotypes containing the above G allele were associated with increased BC risk (p-value < 0.05). Multivariate analysis showed that increased serum adiponectin, smoking or age were all significant predictors of BC (p-value < 0.05). The data supports use of serum adiponectin and the G allele of rs1501299 SNP in ADIPOQ as potential biomarkers and/or targets in BC. To further validate findings in this study, larger populations of various ethnicities and/or genetic backgrounds are required. More investigations on the functional role of adiponectin in BC will also provide better understanding of potential targeting adiponectin for BC treatment. |
Amaryllidaceae alkaloids in skin cancer management: Photoprotective effect on human keratinocytes and anti-proliferative activity in melanoma cellsCarol Castañeda, Karent Bravo, Natalie Corts, 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. |
Guanxinning tablets improve myocardial hypertrophy by inhibiting the activation of MEK-ERK1/2 signaling pathwayYan Zhang, Yu Huang, Quan-xin Ma, Song-tao Xu, Liye Shen, Yan-yun Xu, Hai-ye Tu, Min-li Chen, Yi-li RongJ Appl Biomed 21:137-149, 2023 | DOI: 10.32725/jab.2023.014 Myocardial hypertrophy may lead to heart failure and sudden death. As traditional Chinese medicine, Guanxinning tablets (GXN) have significant pharmacological effects in the prevention and treatment of cardiovascular diseases. However, the anti-cardiac hypertrophy efficacy of GXN and its mechanism of action are still unclear. Therefore, we established a heart failure rat model and isolated primary cardiomyocytes of neonatal rat to observe the protective effect of GXN on heart failure rat model and the intervention effect on myocardial cell hypertrophy, and to explore the possible mechanism of GXN preventing and treating myocardial hypertrophy. The results of in vivo experiments showed that GXN could significantly reduce the degree of cardiac hypertrophy, reduce the size of cardiomyocytes, inhibit the degree of myocardial remodeling and fibrosis, and improve cardiac function in rats with early heart failure. The results of in vitro experiments showed that GXN was safe for primary cardiomyocytes and could improve cardiomyocyte hypertrophy and reduce the apoptosis of cardiomyocytes in pathological state, which may be related to the inhibition of the over-activation of MEK-ERK1/2 signaling pathway. In conclusion, GXN may inhibit cardiac hypertrophy and improve early heart failure by inhibiting the over-activation of MEK-ERK1/2 signaling 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. |
False aneurysms of the thoracic aorta: anastomosis investigation using the inflation-extension testSandra Reirov, Hynek Chlup, Michael Jonk, Ivan NetukaJ Appl Biomed 21:174-179, 2023 | DOI: 10.32725/jab.2023.023 Introduction: False aneurysms in the thoracic aorta are dangerous complications that can occur after cardiac surgery. They often result in high mortality rates. These aneurysms are caused by damage to all layers of the aortic wall. This study aimed to pinpoint the area of the experimental specimen (native vessel, anastomosis, or prosthetic graft) with the greatest deformation, to determine whether a false aneurysm is likely to develop in the anastomotic portion. Methods: We conducted the inflation-extension test by performing eight cycles ranging from 0 to 20. The pressure sampling frequency was 100 Hz, and each cycle lasted approximately 34 seconds, resulting in a loading frequency of 0.03 Hz. During the experiment, each camera captured 3,000 frames. Based on the data collected, we evaluated and compared the loading stages of cycle 1 and cycle 8. Results and discussion: During loading, the native vessel experienced a dominant deformation of approximately 7% in the circumferential direction. The prosthetic graft, which had a longitudinal construction, deformed by approximately 8% in the axial direction. The prosthetic graft, on the other hand, only experienced a deformation of up to 1.5% in the circumferential direction, which was about 5 times smaller than the deformation of the native vessel. The anastomosis area was very stiff and showed minimal deformation. Additionally, there was little difference in the mechanical response between the first C1 and the eighth C8 cycle. Conclusion: Based on the available evidence, it can be inferred that aortic false aneurysms are more likely to form just behind the suture lines in the native aorta, which is more elastic compared to stiff sections of anastomosis and prosthetic graft. Numerous pulsations of the native vessel will likely cause the impairment of the aorta at the margin of the anastomosis. This will lead to disruption of the aortic wall and false aneurysm formation in the native vessel near the area of anastomosis. |
Ginsenoside Rb2 improves heart failure by down-regulating miR-216a-5p to promote autophagy and inhibit apoptosis and oxidative stressYou Peng, Bin Liao, Yan Zhou, Wei ZengJ Appl Biomed 21:180-192, 2023 | DOI: 10.32725/jab.2023.024 Background: Ginsenoside Rb2 is beneficial in cardiovascular disease treatment, yet its role in heart failure (HF) is obscure. This study aimed to investigate the effect and mechanism of ginsenoside Rb2 on HF. Methods: The left anterior descending branch-ligated HF rat model and oxygen-glucose deprivation/reoxygenation (OGD/R) H9c2 cell model were constructed. Ginsenoside Rb2 were applied for intervention. Heart function indexes, miR-216a-5p expression, autophagy, oxidative stress, apoptosis, cell morphology, and proliferation were detected to explore the effect of ginsenoside Rb2 on HF. Overexpression of miR-216a-5p was employed to explore the specific mechanism of ginsenoside Rb2 on HF. Results: Ginsenoside Rb2 improved the heart function of HF rats, including the reduction of heart rate, LVEDP, and heart weight/body weight ratio, and the increase of LVSP, +dP/dtmax, -dP/dtmax, LVEF, and LVFS. It also down-regulated miR-216a-5p expression and enhanced OGD/R-induced cardiomyocyte viability. Ginsenoside Rb2 up-regulated Bcl2, LC3B II/I, and Beclin1, and down-regulated Bax, Caspase-3, and p62 in the myocardium of HF rats and OGD/R-induced H9c2 cells. Moreover, ginsenoside Rb2 increased the levels of SOD and CAT, but decreased the levels of MDA and ROS in the myocardium of HF rats and OGD/R-induced H9c2 cells. However, overexpression of miR-216a-5p promoted the apoptosis and oxidative stress of cardiomyocytes and inhibited autophagy, thus reversing the therapeutic effect of ginsenoside Rb2 on HF in vivo and in vitro. Conclusion: Ginsenoside Rb2 demonstrated potential as a therapeutic intervention for HF by enhancing autophagy and reducing apoptosis and oxidative stress through miR-216a-5p downregulation. Further research could explore its application in clinical trials and investigate the complex mechanism networks underlying its effects. |
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. |
Shenhuang plaster enhances intestinal anastomotic healing in rabbits through activation of the TGF-β and Hippo/YAP signaling pathwaysFengchun Xiao, Chenchen Zhu, Xing Wei, Guiping Chen *, Xiaohong Xu *J Appl Biomed 21:208-217, 2023 | DOI: 10.32725/jab.2023.018 Although many efforts have been made to improve management strategies and diagnostic methods in the past several decades, the prevention of anastomotic complications, such as anastomotic leaks and strictures, remain a major clinical challenge. Therefore, new molecular pathways need to be identified that regulate anastomotic healing, and to design new treatments for patients after anastomosis to reduce the occurrence of complications. Rabbits were treated with a MST1/2 inhibitor XMU-XP-1, a Chinese medicine formula Shenhuang plaster (SHP) or a control vehicle immediately after surgery. The anastomotic burst pressure, collagen deposition, and hydroxyproline concentration were evaluated at 3 and 7 days after the surgery, and qRT-PCR and western-blot analyses were used to characterize mRNA and protein expression levels. Both XMU-XP-1 and SHP significantly increased anastomotic burst pressure, collagen deposition, and the concentration of hydroxyproline in intestinal anastomotic tissue at postoperative day 7 (POD 7). Importantly, SHP could induce TGF-β1 expression, which activated its downstream target Smad-2 to activate the TGF-β1 signaling pathway. Moreover, SHP reduced the phosphorylation level of YAP and increased its active form, and treatment with verteporfin, a YAP-TEAD complex inhibitor, significantly suppressed the effects induced by SHP during anastomotic tissue healing. This study demonstrated that activation of the Hippo-YAP pathway enhances anastomotic healing, and that SHP enhances both the TGF-β1/Smad and YAP signaling pathways to promote rabbit anastomotic healing after surgery. These results suggest that SHP could be used to treat patients who underwent anastomosis to prevent the occurrence of anastomotic complications. |
Neuroprotection and cognitive enhancement by treatment with γ-oryzanol in sporadic Alzheimer's diseaseAbhishek B. Jha, Shital S. PanchalJ Appl Biomed 15:265-281, 2017 | DOI: 10.1016/j.jab.2017.05.001 Sporadic Alzheimer's disease is characterised by cognitive impairments and associated with cerebrometabolic anomaly and dementia which are burdensome for the old age population and their caregivers worldwide. A safe and effective treatment is essentially required for its prevention and cure. γ-Oryzanol (OZ) is reported for anti-oxidative, anti-inflammatory, anticancer, anti-hyperlipidemic, and anti-diabetic effects in various preclinical studies. In silico studies showed similar binding interactions with acetylcholinisterase like Donepezil (DONO). In vitro DPPH assay, AchE activity inhibition assay and cell viability assay on SH-SY5Y cell line confirmed that OZ has good free radical scavenging and cholinesterase inhibitory activity as well as safety profile. OZ was evaluated in vivo for its effect in streptozotocin (STZ) induced sporadic Alzheimer's disease in rats. Maze tests reflected improvement in spatial cognitive behavior indicated by reduction in working memory and reference memory error. OZ showed anti-AchE, anti-inflammatory and antioxidative effects. OZ showed effective anti-proinflammatory effects in cerebral milieu as indicated by significant reduction in active glial cells and found to improve synaptic connectivity. Thereby OZ reflected protection of the cerebral architecture against STZ induced damage. Thus, OZ exhibits its candidature as a therapeutic moiety to improve cognitive behavior in neurodegenerative disorders. |
Overexpression of the miR-143/145 and reduced expression of the let-7 and miR-126 for early lung cancer diagnosisLubomr Tulinsk, Anton Dzian, Tatiana Matakov, Peter IhntJ Appl Biomed 20:1-6, 2022 | DOI: 10.32725/jab.2022.004 Introduction: Lung cancer is the leading cause of cancer-related deaths worldwide. For this reason, huge efforts are being invested in discovering suitable blood biomarkers that would allow early diagnosis and treatment. One of the possible promising candidates for this role are microRNA molecules (miRNAs). The aim of the study was to identify individual blood miRNAs that could be used as potential biomarkers for early diagnosis of lung cancer. Methods: This prospective study analyzed blood samples of 60 patients with early-stage lung cancer, and blood samples of 60 healthy individuals. All study patients with lung cancer had undergone radical pulmonary resection at the University Hospital Ostrava within the study period (2015-2017). Definitive diagnosis of lung cancer was confirmed by histopathology examination of the resected pulmonary specimen. We investigated relative expressions in selected 13 blood miRNAs; the examined miRNAs were miR-126, miR-155, miR-221, miR-21, miR-143, miR-145, miR-133a, let-7a, miR-146a, miR-31, miR-182, let-7g and miR-19b. Results: The outcome of this study showed that the levels of the majority of the tested circulating miRNA in lung cancer patients are significantly altered. The most significant serum miRNA biomarkers for the early detection of lung cancer are as follows: miR-143, let-7g, miR-126, let-7a, and miR-145 (miR-143 and miR-145 have oncogene functions, while miR-126, let-7g and let-7a have suppressor functions). Conclusions: We have demonstrated the excellent diagnostic value of several miRNAs (miR-126, miR-143, miR-145, let-7a and let7g). These have an estimated sensitivity and specificity of 75-85% and 0.90-0.93 AUC. However, these individual miRNA biomarkers require further validation in larger prospective cohorts. |
Insulin degludec and glutamine dipeptide modify glucose homeostasis and liver metabolism in diabetic mice undergoing insulin-induced hypoglycemiaCamila Bataglini, Isabela Ramos Mariano, Slvia Carla Ferreira Azevedo, Valder Nogueira Freire, Maria Raquel Maral Natali, Maria Montserrat Dias Pedrosa, Rosane Marina Peralta, Anacharis B. S-Nakanishi, Lvia Bracht, Vilma A. Ferreira Godoy, Adelar Bracht, Jurandir Fernando ComarJ Appl Biomed 19:210-219, 2021 | DOI: 10.32725/jab.2021.025 This study investigated whether a 30-day co-treatment with 1 g/kg glutamine dipeptide (GdiP) and 1 U/kg regular (rapid acting) or 5 U/kg degludec (long acting) insulins modifies glucose homeostasis and liver metabolism of alloxan-induced type 1 diabetic (T1D) male Swiss mice undergoing insulin-induced hypoglycemia (IIH). Glycemic curves were measured in fasted mice after IIH with 1 U/kg regular insulin. One hour after IIH, the lipid profile and AST and ALT activities were assayed in the serum. Morphometric analysis was assessed in the liver sections stained with hematoxylin-eosin and glycolysis, glycogenolysis, gluconeogenesis and ureagenesis were evaluated in perfused livers. T1D mice receiving GdiP or the insulins had a smaller blood glucose drop at 60 minutes after IIH, which was not sustained during the subsequent period up to 300 minutes. The 30-day treatment of T1D mice with insulin degludec, but not with regular insulin, improved fasting glycemia, body weight gain and serum activity of AST and ALT. Treatments with insulin degludec, GdiP and insulin degludec + GdiP decreased the liver capacity in synthesizing glucose from alanine. GdiP, in combination with both insulins, was associated with increases in the serum triglycerides and, in addition, regular insulin and GdiP increased AST and ALT activities, which could be the consequence of hepatic glycogen overload. GdiP and the insulins improved the IIH, although to a small extent. Caution is recommended, however, with respect to the use of GdiP because of its increasing effects on serum triglycerides and AST plus ALT activities. |
Evaluation of anti-biofilm, anti-quorum, anti-dysenteric potential of designed polyherbal formulation: in vitro and in vivo studyDevendra Singh, Virendra Singh, Shanti Bhushan Mishra, Deepmala Sharma, Vishnu AgarwalJ Appl Biomed 20:7-14, 2022 | DOI: 10.32725/jab.2022.005 Bacillary dysentery (shigellosis) continues to cause havoc worldwide, with a high infectivity rate. It causes bloody diarrhea, and around 99% of bacillary dysentery cases occur in developing countries. The objective of this study is to develop a polyherbal formulation with the scientific rationale in treating infectious bacillary dysentery disease. The anti-bacterial activity, the minimum inhibitory concentration of the formulation against bacillary dysentery, causing microbes like Shigella flexneri (MTCC 1457), Escherichia coli (MTCC 1687), and Salmonella enterica (MTCC 98), was analysed by well-diffusion method and broth dilution method, respectively. The biofilm inhibition activity was determined on 96 well polystyrene plates and anti-quorum sensing activity by Chromobacterium violaceum CV026. The cytotoxicity was examined by acute oral toxicity. Excreta and organ bacterial load were analyzed by serial dilution method. The formulation efficacy was determined by analyzing the blood sample of rats. The antimicrobial efficacy of the developed formulation was calculated by measuring the zone of inhibition which was found to be 24 mm, 25 mm, and 25 mm, and the MIC values of 1.5 mg/ml, 1.5 mg/ml, and 2.0 mg/ml against S. flexneri, S. enterica, E. coli, respectively. The results show that the polyherbal formulation significantly reduced biofilm formation and has anti-quorum sensing activity. The formulation also effectively decreases the bacterial load and increases the K+, Na+, and Ca++ ions in animals treated with the formulation. The developed formulation was found to be non-toxic and effective against bacillary dysentery; thus, it can be used for treating bacillary dysentery and related complications. |
Evaluation of anti-methicillin-resistant Staphylococcus aureus property of zerumboneShaymaa Fadhel Abbas Albaayit, Rukesh Maharjan, Rasedee Abdullah, Mohd Hezmee Mohd NoorJ Appl Biomed 20:15-21, 2022 | DOI: 10.32725/jab.2022.002 Context and objective: Zerumbone has been reported to exert anti-microbial effects, but the mechanism by which the compound exerts its action is not known. Thus, this study aimed to investigate the mechanism of action of zerumbone against methicillin-resistance Staphylococcus aureus (MRSA), using the atomic force microscopy (AFM), scanning electron microscopy (SEM), and flow cytometry techniques. Methods: MRSA (NCTC 13277) cell viability was determined using the microplate AlamarBlue assay. AFM and SEM were used to determine the morphology of zerumbone-treated MRSA cells. Flow cytometric analysis was used to determine the effect of zerumbone on bacterial membrane permeability and membrane potential, using the propidium iodide (PI) staining method, membrane potential-sensitive fluorescence probe, and DiBAC4(3) dye. DCFDA dye was used to determine the generation of reactive oxygen species (ROS) by MRSA. Results: Zerumbone significantly inhibited MRSA growth with a minimum inhibitory concentration (MIC) of 125 µg/ml. The AFM analysis showed that zerumbone caused leakage of cytoplasmic content from the bacterial cells. Ultrastructure analysis showed small colonies of the bacteria with pores on the membrane surface. There were increases in zerumbone-treated MRSA PI and DiBAC4(3) fluorescence, indicating an increase in cell membrane permeability and a decrease in membrane potential that culminated in the loss of membrane structural integrity and bacterial death. Based on DCFDA dye analysis, zerumbone also reduced ROS production by MRSA. Conclusions: Zerumbone exerts anti-MRSA effects by causing membrane depolarization, increasing membrane permeability, and finally disrupting cell membrane and bacterial killing. |
Kilohertz alternating current neuromodulation of the pudendal nerves: effects on the anal canal and anal sphincter in ratsRosa L. Coolen, Koen M. Emmer, Panagiota I. Spantidea, Els van Asselt, Jeroen R. Scheepe, Wouter A. Serdijn, Bertil F. M. BlokJ Appl Biomed 20:56-69, 2022 | DOI: 10.32725/jab.2022.009 The first two objectives were to establish which stimulation parameters of kilohertz frequency alternating current (KHFAC) neuromodulation influence the effectiveness of pudendal nerve block and its safety. The third aim was to determine whether KHFAC neuromodulation of the pudendal nerve can relax the pelvic musculature, including the anal sphincter. Simulation experiments were conducted to establish which parameters can be adjusted to improve the effectiveness and safety of the nerve block. The outcome measures were block threshold (measure of effectiveness) and block threshold charge per phase (measure of safety). In vivo, the pudendal nerves in 11 male and 2 female anesthetized Sprague Dawley rats were stimulated in the range of 10 Hz to 40 kHz, and the effect on anal pressure was measured. The simulations showed that block threshold and block threshold charge per phase depend on waveform, interphase delay, electrode-to-axon distance, interpolar distance, and electrode array orientation. In vivo, the average anal pressure during unilateral KHFAC stimulation was significantly lower than the average peak anal pressure during low-frequency stimulation (p < 0.001). Stimulation with 20 kHz and 40 kHz (square wave, 10 V amplitude, 50% duty cycle, no interphase delay) induced the largest anal pressure decrease during both unilateral and bilateral stimulation. However, no statistically significant differences were detected between the different frequencies. This study showed that waveform, interphase delay and the alignment of the electrode along the nerve affect the effectiveness and safety of KHFAC stimulation. Additionally, we showed that KHFAC neuromodulation of the pudendal nerves with an electrode array effectively reduces anal pressure in rats. |
Effects of 17-β-estradiol released from shape-memory terpolymer rods on sciatic nerve regeneration after injury and repair with chitosan nerve conduit in female ratsEdyta Olakowska, Adam Waszczuk, Artur Turek, Aleksandra Borecka, Arkadiusz Likiewicz, Dariusz Wawro, Janusz Kasperczyk, Halina Jdrzejowska-SzypukaJ Appl Biomed 20:87-97, 2022 | DOI: 10.32725/jab.2022.010 The aim of this study was to assess 17-β-estradiol (E2) influence on sciatic nerve regeneration after injury followed by a repair with chitosan conduit in ovariectomized female rats. The study was performed in 2 groups (n = 16) of rats: OVChit - after excision of a fragment of the sciatic nerve, a chitosan conduit was implanted; OVChitE10 group - additionally to chitosan conduit, shape-memory terpolymer rods based on poly(L-lactide-co-glycolide- co-trimethylene carbonate) releasing 17-β-estradiol for 20 weeks were implanted. The mean number of regenerating axons and mean fiber area were significantly greater in 17-β-estradiol-treated animals. In this group, the infiltrate of leukocytes was diminished. The presence of 17-β-estradiol receptors alpha and beta in motoneurons in the spinal cord were discovered. This may indicate the location where 17-β-estradiol affects the regeneration of the injured nerve. Estradiol released from the terpolymer rods for 20 weeks could enhance, to some extent, sciatic nerve regeneration after injury, and diminish the inflammatory reaction. In the future, 17-β-estradiol entrapped in terpolymer rods could be used in the repair of injured peripheral nerves, but there is a need for further studies. |
Photodynamic therapy in breast cancer treatmentJoanna Gustalik, David Aebisher, Dorota Bartusik-AebisherJ Appl Biomed 20:98-105, 2022 | DOI: 10.32725/jab.2022.013 Breast cancer is a serious public problem in modern society. Photodynamic therapy (PDT) is increasingly used in modern medicine. Currently, PDT is an innovative method of treating breast cancer. Irreversible damage to neoplastic tissues is associated with the use of physicochemical processes. Generating cytotoxic reactive oxygen species [singlet oxygen (1O2)] is leading to tumor cell death. At the same time, valuable information can be extracted from breast cancer cells. Photogenerated 1O2 is the major factor responsible for cell necrosis during PDT. 1O2 can react rapidly intracellularly with all organic substances. The use of photodynamic therapy on tissues in vitro creates conditions for testing various types of solutions and implementing them in in vivo treatment. This article is a review of recent advances in PDT for treatment of breast cancer. PDT is a novel cancer diagnostic and cancer treatment therapy. Therefore, an understanding of the possibility to generate a toxic form of 1O2 is necessary. The knowledge gained from the basics of PDT in vitro can be useful in biomedical applications in vivo. The current literature mentions PDT in the treatment of cancers located very deep within the human body. Therefore, the development of agents used to deliver 1O2 to the deep cancerous tissue is a new challenge which can have an efficient impact on this discipline. This review covers the literature between 2000-2022. |
Exenatide prevents statin-related LDL receptor increase and improves insulin secretion in pancreatic beta cells (1.1E7) in a protein kinase A-dependent mannerukasz Budak, Grzegorz Machnik, Estera Skudrzyk, Aleksandra Bodys, Mateusz Maligwka, Micha Kosowski, Marcin Basiak, Rafa Jakub Budak, Bogusaw OkopieJ Appl Biomed 20:130-140, 2022 | DOI: 10.32725/jab.2022.015 Statins are primary drugs in the treatment of hyperlipidemias. This group of drugs is known for its beneficial pleiotropic effects (e.g., reduction of inflammatory state). However, a growing body of evidence suggests its diabetogenic properties. The culpable mechanism is not completely understood and might be related to the damage to pancreatic beta cells. Therefore, we conceived an in vitro study to explore the impact of atorvastatin on pancreatic islet beta cells line (1.1.E7). We evaluated the influence on viability, insulin, low-density lipoprotein (LDL) receptor, and proprotein convertase subtilisin/kexin type 9 (PCSK9) expression. A significant drop in mRNA for proinsulin and insulin expression was noted. Concurrently, a rise in LDL receptor at the protein level in cells exposed to atorvastatin was noted. Further experiments have shown that exenatide - belonging to glucagon-like peptide 1 (GLP-1) analogs that are used in a treatment of diabetes and known for its weight reducing properties - can alleviate the observed alterations. In this case, the mechanism of action of exenatide was dependent on a protein kinase A pathway. In conclusion, our results support the hypothesis that statin may have diabetogenic properties, which according to our study is related to reduced insulin expression. The concomitant use of GLP-1 receptor agonist seemed to successfully revert insulin expression. |
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. |
Modulation of HMG-CoA reductase and glutathione-linked enzymes and protection against pro-oxidant induced oxidative damage in colon (Caco-2) cells and rat colon homogenates by phenolic extracts from Shaddock (Citrus maxima) peelsAyokunle O. Ademosun, Ganiyu Oboh, Sabina Passamonti, Federica Tramer, Lovro Ziberna, Aline Augusti BoligonJ Appl Biomed 15:1-8, 2017 | DOI: 10.1016/j.jab.2016.09.001 This study sought to characterize the soluble free and bound phenolic compounds from shaddock (Citrus maxima) peels and investigate their effect on 3-hydroxy-methyl-3-glutaryl coenzyme A reductase (HMG-CoA reductase) and glutathione-linked enzymes in colon (Caco-2) cells. The radicals scavenging ability and the protective ability of the phenolic extracts against pro-oxidant induced oxidative damage in Caco-2 cells and rat colon homogenates were also investigated. The free phenolics were extracted with 80% acetone (v/v), while bound phenolics were extracted from the alkaline (NaOH) and acid (HCl) hydrolyzed residue with ethyl acetate. HPLC fingerprinting revealed the presence of gallic acid, catechin, chlorogenic acid, caffeic acid, ellagic acid, epicatechin, rutin, quercitrin and quercetin in the extracts. The results revealed that the extracts inhibited HMG-CoA reductase activity and increased the activities of glutathione reductase and glutathione peroxidase in Caco-2 cells. The extracts inhibited peroxyl radical induced oxidation of membrane lipids in Caco-2 cells and malondialdehyde production in rat colon homogenates. Furthermore, the phenolic extracts scavenged radicals [2,2-diphenyl-1-picrylhydrazyl (DPPH) and hydroxyl (OH)] and chelated Fe2+ in a concentration-dependent manner. This study showed that shaddock peels could serve as a dietary means or nutraceutical source for protecting the colon from degeneration. |

