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Seukep, A. J.

Publications and source records attributed to Seukep, A. J..

2 recordsLinked to original sources

Mechanistic Insights into the Inhibition of Recombinant Hepatitis E Virus Papain-like Cysteine Protease by Khaya grandifoliola Hydro-Ethanolic Extract: UHPLC-MS Profiling, Enzyme Kinetics, Computational Modeling, and Cell-Based Assays

Ethnopharmacological RelevanceHepatitis E virus (HEV), a significant cause of liver diseases, lacks specific treatments. Khaya grandifoliola C.DC (Meliaceae), used in ethnomedicine to treat infections and liver-related ailments, shows promise as an antiviral agent. While its efficacy against hepatitis C virus (HCV) is known, its effects on HEV remain underexplored. Aims of the StudyThis study evaluates K. grandifoliolas hydro-ethanolic extract (KHE) as a potential source of HEV inhibitor, focusing on the HEV papain-like cysteine protease (HEV-PLpro). Materials and MethodsPhytochemical profiling of KHE was performed using a Waters-Acquity UHPLC-MS system. The recombinant HEV-PLpro, expressed in baculovirus-infected insect cells and purified via nickel-affinity and size-exclusion chromatography, was used to screen KHEs antiviral activity. The IC50 and inhibition mechanism were determined using the fluorogenic substrate Z-RLRGG-AMC. Molecular docking and dynamics simulations predicted interactions and analyzed the stability of KHEs compounds with HEV-ORF1 (PDB ID: 6NU9). Additionally, HEV replication inhibition and cytotoxicity were evaluated in Huh7.5 cells using a Gaussia luciferase reporter system and MTT assay, respectively. ResultsEighteen compounds comprising flavonoid-O-glycosides, polyflavonoids, phenolic and terpene glycoside among other were successfully identified. KHE exhibited mixed-type inhibition of HEV-PLpro proteolytic activity, with an IC50 of 20.86 {micro}g/mL, comparable to ribavirin (19.13 {micro}g/mL), acting as competitive inhibitor. Notably, quercetin-3-[rhamnosyl-(1[->]2)--L- arabinopyranoside] and quercitrin exhibited stronger binding affinities (-7.68 and -7.43 kcal/mol) and greater structural stability, robustness, and compactness than ribavirin (-4.87 kcal/mol). In cell-based assays, KHE suppressed HEV replication more effectively than ribavirin (ICLL: 12.75 {micro}g/mL vs. 17.96 {micro}g/mL), with no cytotoxicity at [≤]100 {micro}g/mL. ConclusionOur results demonstrate that KHE exhibits potent anti-HEV activity by inhibiting both viral protease function and replication, likely attributable to its flavonoid-rich composition. Its mixed-type inhibition mechanism and favorable safety profile underscore its potential as promising source of lead candidate for HEV therapeutics. This study bridges traditional medicine and modern pharmacology, supporting further exploration of K. grandifoliola for antiviral drug development.

biochemistry↗

Antioxidant enzyme activity, lipid peroxidation, and glycemic control among patients with type 2 diabetes mellitus in Buea Regional Hospital, Cameroon: A hospital-based case-control study

BackgroundOxidative stress has been suggested to play a role in the pathogenesis of type 2 diabetes mellitus (T2DM) and development of complications by altering antioxidant levels and inducing lipid peroxidation. Although diabetes mellitus patients are reported to be under oxidative stress because of prolonged exposure to hyperglycemia, the influence of glycemic control in diabetes on enhanced free-radical activity is poorly understood. This study aimed to evaluate the levels of malondialdehyde (MDA), a marker of lipid peroxidation and catalase, an antioxidant enzyme in T2DM patients with good and poor glycemic control and compare them with apparently healthy individuals. MethodsA hospital-based case-control study was carried out at the Buea Regional Hospital from April to July, 2024 among patients with T2DM and age-matched healthy subjects. Sociodemographic, clinical and anthropometric data were recorded using a structured questionnaire. Levels of glucose, lipid profile, glycated hemoglobin (HbA1C), catalase and malondialdehyde (MDA) were determined by spectrophotometry. Data analyses were done using IBM SPSS version 25 for Windows. p [&le;] 0.05 was considered statistically significant. ResultsA total of 192 participants (96 patients with T2DM and 96 healthy controls) were recruited in this study. The mean age of participants was 60.97{+/-}11.3 years with most being females (72.9%). The prevalence of lipid peroxidation was higher among patients with T2DM (71.9%) than controls (22.9%). Diet and diabetic complications were associated with lipid peroxidation (p<0.001). MDA was significantly lower in patients with good glycemic control (p <0.001). Half, 50.6% of patients with poor glycemic control had reduced catalase activity compared to only 5.3% of those with good glycemic control. There was significant strong positive correlation between HbA1c and MDA (r=0.846, p<0.001) and a significant strong negative correlation between HbA1c and catalase (r=0.846, p<0.001). Also, there was a significant negative correlation between catalase and MDA (r=-0.568, p<0.001). ConclusionLipid peroxidation is more prevalent in T2DM patients at Buea Regional Hospital than in healthy controls and is significantly higher in patients with poor glycemic control. It is linked to diet, diabetic complications, glycemic control, and reduced catalase activity. The correlation between lipid peroxidation, antioxidant activity, and glycemic control highlights the role of oxidative stress in T2DM pathophysiology

biochemistry↗