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Hepatoprotective Effect of Millettia dielsiana: In Vitro and In Silico Study

In silico docking studies of 50 selected compounds from Millettia dielsiana Harms ex Diels (family Leguminosae) were docked into the binding pocket of the PI3K/mTOR protein. In there, compounds trans−3−O-p-hydroxycinnamoyl ursolic acid (1) and 5,7,4′−trihydroxyisoflavone 7−O−β−D−apiofuranosyl−(1→6)−...

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Autores principales: Le, Vu Thi Thu, Hung, Dao Viet, Quy, Bui Minh, Minh, Pham Thi Hong, Lam, Do Tien
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9787921/
https://www.ncbi.nlm.nih.gov/pubmed/36558112
http://dx.doi.org/10.3390/molecules27248978
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author Le, Vu Thi Thu
Hung, Dao Viet
Quy, Bui Minh
Minh, Pham Thi Hong
Lam, Do Tien
author_facet Le, Vu Thi Thu
Hung, Dao Viet
Quy, Bui Minh
Minh, Pham Thi Hong
Lam, Do Tien
author_sort Le, Vu Thi Thu
collection PubMed
description In silico docking studies of 50 selected compounds from Millettia dielsiana Harms ex Diels (family Leguminosae) were docked into the binding pocket of the PI3K/mTOR protein. In there, compounds trans−3−O-p-hydroxycinnamoyl ursolic acid (1) and 5,7,4′−trihydroxyisoflavone 7−O−β−D−apiofuranosyl−(1→6)−β−D−glucopyranoside (2) are predicted to be very promising inhibitors against PI3K/mTOR. They direct their cytotoxic activity against Hepatocellular carcinoma with binding affinity (BA) values, the pulling work spent to the co-crystallized ligand from the binding site of PI3K/mTOR (W and F(max)), and the non-equilibrium binding free energy (∆G(neq)(Jar)) as BA values = −9.237 and −9.083 kcal/mol, W = 83.5 ± 10.6 kcal/mol with F(max) = 336.2 ± 45.3 pN and 126.6 ± 21.7 kcal/mol with F(max) = 430.3 ± 84.0 pN, and ∆G(neq)(Jar) = −69.86074 and −101.2317 kcal/mol, respectively. In molecular dynamic simulation, the RMSD value of the PI3K/mTOR complex with compounds (1 and 2) was in the range of 0.3 nm to the end of the simulation. Therefore, the compounds (1 and 2) are predicted to be very promising inhibitors against PI3K/mTOR. The crude extract, ethyl acetate fraction and compounds (1 and 2) from Millettia dielsiana exhibited moderate to potent in vitro cytotoxicity on Hepatocellular carcinoma cell line with IC(50) values of 81.2 µg/mL, 60.4 µg/mL, 23.1 μM, and 16.3 μM, respectively, and showed relatively potent to potent in vitro antioxidant activity on mouse hepatocytes with ED(50) values of 24.4 µg/mL, 19.3 µg/mL, 30.7 μM, and 20.5 μM, respectively. In conclusion, Millettia dielsiana and compounds (1 and 2) are predicted to have very promising cytotoxic activity against Hepatocellular carcinoma and have a hepatoprotective effect.
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spelling pubmed-97879212022-12-24 Hepatoprotective Effect of Millettia dielsiana: In Vitro and In Silico Study Le, Vu Thi Thu Hung, Dao Viet Quy, Bui Minh Minh, Pham Thi Hong Lam, Do Tien Molecules Article In silico docking studies of 50 selected compounds from Millettia dielsiana Harms ex Diels (family Leguminosae) were docked into the binding pocket of the PI3K/mTOR protein. In there, compounds trans−3−O-p-hydroxycinnamoyl ursolic acid (1) and 5,7,4′−trihydroxyisoflavone 7−O−β−D−apiofuranosyl−(1→6)−β−D−glucopyranoside (2) are predicted to be very promising inhibitors against PI3K/mTOR. They direct their cytotoxic activity against Hepatocellular carcinoma with binding affinity (BA) values, the pulling work spent to the co-crystallized ligand from the binding site of PI3K/mTOR (W and F(max)), and the non-equilibrium binding free energy (∆G(neq)(Jar)) as BA values = −9.237 and −9.083 kcal/mol, W = 83.5 ± 10.6 kcal/mol with F(max) = 336.2 ± 45.3 pN and 126.6 ± 21.7 kcal/mol with F(max) = 430.3 ± 84.0 pN, and ∆G(neq)(Jar) = −69.86074 and −101.2317 kcal/mol, respectively. In molecular dynamic simulation, the RMSD value of the PI3K/mTOR complex with compounds (1 and 2) was in the range of 0.3 nm to the end of the simulation. Therefore, the compounds (1 and 2) are predicted to be very promising inhibitors against PI3K/mTOR. The crude extract, ethyl acetate fraction and compounds (1 and 2) from Millettia dielsiana exhibited moderate to potent in vitro cytotoxicity on Hepatocellular carcinoma cell line with IC(50) values of 81.2 µg/mL, 60.4 µg/mL, 23.1 μM, and 16.3 μM, respectively, and showed relatively potent to potent in vitro antioxidant activity on mouse hepatocytes with ED(50) values of 24.4 µg/mL, 19.3 µg/mL, 30.7 μM, and 20.5 μM, respectively. In conclusion, Millettia dielsiana and compounds (1 and 2) are predicted to have very promising cytotoxic activity against Hepatocellular carcinoma and have a hepatoprotective effect. MDPI 2022-12-16 /pmc/articles/PMC9787921/ /pubmed/36558112 http://dx.doi.org/10.3390/molecules27248978 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Le, Vu Thi Thu
Hung, Dao Viet
Quy, Bui Minh
Minh, Pham Thi Hong
Lam, Do Tien
Hepatoprotective Effect of Millettia dielsiana: In Vitro and In Silico Study
title Hepatoprotective Effect of Millettia dielsiana: In Vitro and In Silico Study
title_full Hepatoprotective Effect of Millettia dielsiana: In Vitro and In Silico Study
title_fullStr Hepatoprotective Effect of Millettia dielsiana: In Vitro and In Silico Study
title_full_unstemmed Hepatoprotective Effect of Millettia dielsiana: In Vitro and In Silico Study
title_short Hepatoprotective Effect of Millettia dielsiana: In Vitro and In Silico Study
title_sort hepatoprotective effect of millettia dielsiana: in vitro and in silico study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9787921/
https://www.ncbi.nlm.nih.gov/pubmed/36558112
http://dx.doi.org/10.3390/molecules27248978
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