Combined in vitro and in silico approach to define alangimarckine from Thunbergia mysorensis leaves as a potential inhibitor of α-glucosidase

被引:0
作者
Kokila, N. R. [1 ]
Mahesh, B. [1 ]
Ramu, Ramith [2 ]
Divakara, S. G. [3 ]
Mruthunjaya, K. [4 ]
Raghav, Neera [5 ]
Boreddy Shivanandappa, Thippeswamy [6 ]
机构
[1] Visvesvaraya Technol Univ, JSS Acad Tech Educ, Dept Chem, Bengaluru, India
[2] JSS Acad Higher Educ & Res, Dept Biotechnol & Bioinformat, Mysuru, India
[3] RV Coll Engn, Dept Chem, Bengaluru, India
[4] JSS Acad Higher Educ & Res, JSS Coll Pharm, Dept Pharmacognosy, Mysuru, India
[5] Kurukshetra Univ, Dept Chem, Kurukshetra, India
[6] Shaqra Univ, Coll Pharm, Dept Pharmacol, Al Dawadmi Campus, Al Dawadmi, Saudi Arabia
关键词
Thunbergia mysorensis; alangimarckine; alpha-glucosidase inhibition; acarbose; molecular docking; MD simulations; DOCKING; AMYLASE;
D O I
10.1080/07391102.2025.2472396
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The current work investigated biocomputational methodologies for alpha-glucosidase inhibition to examine the antidiabetic potential of methanolic extract of T. mysorensis leaves (MeL). MeL intensely impeded yeast-glucosidase, which is vital for treating postprandial hyperglycemia (IC50 = 5.76 +/- 0.10 mu g/mL) in comparison to an acarbose control (IC50 = 7.98 +/- 0.23 mu g/mL). The MeL is affected by phytochemical profiling employing LC-MS, GC-MS, and HPLC analysis to determine the bioactive components responsible for the antidiabetic activity. The specified phytocompounds were employed in silico research following the bioactive profiling, where they were docked into the inhibitor binding site of alpha-glucosidase. Molecular docking simulations, molecular dynamics simulations, and binding free energy inquiries were utilized in silico research to clarify the mechanism by which T. mysorensis phytocompounds block alpha-glucosidase. Alangimarckine is a glucocorticoid that is used to treat nasal symptoms. Alangimarckine inhibited the target enzyme with greater binding efficiency (-9.7 kcal/mol) than the acarbose control (-8.6 kcal/mol) during molecular docking. Concerning molecular dynamics simulation studies, Alangimarckine-alpha-glucosidase complex was found to be stable inside the inhibitor binding site of the protein, compared to the acarbose -alpha-glucosidase complex. Additionally, alangimarckine inhibited alpha-glucosidase at IC50 = 5.32 +/- 0.19 mu g/mL during in vitro inhibition of alpha-glucosidase, which was efficient in comparison to both MeL and acarbose. Therefore, our research suggests that alangimarckine and MeL from T. mysorensis may function as potent antidiabetic medications. Alangimarckine could be used in in vivo and clinical investigations to specify its antidiabetic properties that target alpha-glucosidase inhibition.
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页数:20
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