Xanthine oxidase inhibitory activity of natural and hemisynthetic flavonoids from Gardenia oudiepe (Rubiaceae) in vitro and molecular docking studies

2018 ◽  
Vol 143 ◽  
pp. 577-582 ◽  
Author(s):  
M.D. Santi ◽  
M. Paulino Zunini ◽  
B. Vera ◽  
C. Bouzidi ◽  
V. Dumontet ◽  
...  
Author(s):  
Kushagra Dubey ◽  
Raghvendra Dubey ◽  
Revathi Gupta ◽  
Arun Gupta

Background: Diosmin is a flavonoid obtained from the citrus fruits of the plants. Diosmin has blood lipid lowering activities, antioxidant activity, enhances venous tone and microcirculation, protects capillaries, mainly by reducing systemic oxidative stress. Objective: The present study demonstrates the potential of Diosmin against the enzymes aldose reductase, α-glucosidase, and α-amylase involved in diabetes and its complications by in vitro evaluation and reverse molecular docking studies. Method: The assay of aldose reductase was performed by using NADPH as starting material and DL-Glyceraldehyde as a substrate. DNS method was used for alpha amylase inhibition and in alpha glucosidase inhibitory activity p-nitrophenyl glucopyranoside (pNPG) was used as substrate. The reverse molecular docking studies was performed by using Molegro software (MVD) with grid resolution of 30 Å. Result: Diosmin shows potent inhibitory effect against aldose reductase (IC50:333.88±0.04 µg/mL), α-glucosidase (IC50:410.3±0.01 µg/mL) and α-amylase (IC50: 404.22±0.02 µg/mL) respectively. The standard drugs shows moderate inhibitory activity for enzymes. The MolDock Score of Diosmin was -224.127 against aldose reductase, -168.17 against α-glucosidase and -176.013 against α-amylase respectively, which was much higher than standard drugs. Conclusion: From the result it was concluded that diosmin was a potentially inhibitor of aldose reductase, alpha amylase and alpha glucosidase enzymes then the standard drugs and it will be helpful in the management of diabetes and its complications. This will also be benevolent to decrease the socio economical burden on the middle class family of the society.


2019 ◽  
Vol 28 (6) ◽  
pp. 873-883 ◽  
Author(s):  
Momin Khan ◽  
Ghulam Ahad ◽  
Abdul Manaf ◽  
Reshma Naz ◽  
Syed Roohul Hussain ◽  
...  

Molecules ◽  
2017 ◽  
Vol 22 (9) ◽  
pp. 1555 ◽  
Author(s):  
Zipeng Gong ◽  
Yaping Peng ◽  
Jie Qiu ◽  
Anbai Cao ◽  
Guangcheng Wang ◽  
...  

2018 ◽  
Vol 80 ◽  
pp. 129-144 ◽  
Author(s):  
Bilquees Bano ◽  
Kanwal ◽  
Khalid Mohammed Khan ◽  
Arif Lodhi ◽  
Uzma Salar ◽  
...  

2019 ◽  
Vol 24 (4) ◽  
pp. 1149-1164
Author(s):  
Sinem Yakarsonmez ◽  
Ozkan Danis ◽  
Ozal Mutlu ◽  
Murat Topuzogullari ◽  
Emrah Sariyer ◽  
...  

Molecules ◽  
2021 ◽  
Vol 26 (17) ◽  
pp. 5306
Author(s):  
Beiyun Shen ◽  
Xinchen Shangguan ◽  
Zhongping Yin ◽  
Shaofu Wu ◽  
Qingfeng Zhang ◽  
...  

The inhibition of α-glucosidase is a clinical strategy for the treatment of type 2 diabetes mellitus (T2DM), and many natural plant ingredients have been reported to be effective in alleviating hyperglycemia by inhibiting α-glucosidase. In this study, the α-glucosidase inhibitory activity of fisetin extracted from Cotinus coggygria Scop. was evaluated in vitro. The results showed that fisetin exhibited strong inhibitory activity with an IC50 value of 4.099 × 10−4 mM. Enzyme kinetic analysis revealed that fisetin is a non-competitive inhibitor of α-glucosidase, with an inhibition constant value of 0.01065 ± 0.003255 mM. Moreover, fluorescence spectrometric measurements indicated the presence of only one binding site between fisetin and α-glucosidase, with a binding constant (lgKa) of 5.896 L·mol−1. Further molecular docking studies were performed to evaluate the interaction of fisetin with several residues close to the inactive site of α-glucosidase. These studies showed that the structure of the complex was maintained by Pi-Sigma and Pi-Pi stacked interactions. These findings illustrate that fisetin extracted from Cotinus coggygria Scop. is a promising therapeutic agent for the treatment of T2DM.


2016 ◽  
Vol 68 ◽  
pp. 245-258 ◽  
Author(s):  
Khalid Mohammed Khan ◽  
Saira Qurban ◽  
Uzma Salar ◽  
Muhammad Taha ◽  
Shafqat Hussain ◽  
...  

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