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α-Glucosidase Inhibitory and Antimicrobial Benzoylphloroglucinols from Garcinia schomburgakiana Fruits: In Vitro and In Silico Studies

α-Glucosidase plays a role in hydrolyzing complex carbohydrates into glucose, which is easily absorbed, causing postprandial hyperglycemia. Inhibition of α-glucosidase is therefore an ideal approach to preventing this condition. A novel polyprenylated benzoylphloroglucinol, which we named schomburgk...

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Autores principales: Nguyen, Huy Truong, Nguyen, Thanh-Trung, Duong, Thuc-Huy, Tran, Nguyen-Minh-An, Nguyen, Chuong Hoang, Nguyen, Thi-Hong-Anh, Sichaem, Jirapast
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9032663/
https://www.ncbi.nlm.nih.gov/pubmed/35458771
http://dx.doi.org/10.3390/molecules27082574
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author Nguyen, Huy Truong
Nguyen, Thanh-Trung
Duong, Thuc-Huy
Tran, Nguyen-Minh-An
Nguyen, Chuong Hoang
Nguyen, Thi-Hong-Anh
Sichaem, Jirapast
author_facet Nguyen, Huy Truong
Nguyen, Thanh-Trung
Duong, Thuc-Huy
Tran, Nguyen-Minh-An
Nguyen, Chuong Hoang
Nguyen, Thi-Hong-Anh
Sichaem, Jirapast
author_sort Nguyen, Huy Truong
collection PubMed
description α-Glucosidase plays a role in hydrolyzing complex carbohydrates into glucose, which is easily absorbed, causing postprandial hyperglycemia. Inhibition of α-glucosidase is therefore an ideal approach to preventing this condition. A novel polyprenylated benzoylphloroglucinol, which we named schomburgkianone I (1), was isolated from the fruit of Garcinia schomburgkiana, along with an already-reported compound, guttiferone K (2). The structures of the two compounds were determined using NMR and HRESIMS analysis, and comparisons were made with previous studies. Compounds 1 and 2 exhibited potent α-glucosidase inhibition (IC(50s) of 21.2 and 34.8 µM, respectively), outperforming the acarbose positive control. Compound 1 produced wide zones of inhibition against Staphylococcus aureus and Enterococcus faecium (of 21 and 20 mm, respectively), compared with the 19 and 20 mm zones of compound 2, at a concentration of 50 µg/mL. The MIC value of compound 1 against S. aureus was 13.32 µM. An in silico molecular docking model suggested that both compounds are potent inhibitors of enzyme α-glucosidase and are therefore leading candidates as therapies for diabetes mellitus.
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spelling pubmed-90326632022-04-23 α-Glucosidase Inhibitory and Antimicrobial Benzoylphloroglucinols from Garcinia schomburgakiana Fruits: In Vitro and In Silico Studies Nguyen, Huy Truong Nguyen, Thanh-Trung Duong, Thuc-Huy Tran, Nguyen-Minh-An Nguyen, Chuong Hoang Nguyen, Thi-Hong-Anh Sichaem, Jirapast Molecules Article α-Glucosidase plays a role in hydrolyzing complex carbohydrates into glucose, which is easily absorbed, causing postprandial hyperglycemia. Inhibition of α-glucosidase is therefore an ideal approach to preventing this condition. A novel polyprenylated benzoylphloroglucinol, which we named schomburgkianone I (1), was isolated from the fruit of Garcinia schomburgkiana, along with an already-reported compound, guttiferone K (2). The structures of the two compounds were determined using NMR and HRESIMS analysis, and comparisons were made with previous studies. Compounds 1 and 2 exhibited potent α-glucosidase inhibition (IC(50s) of 21.2 and 34.8 µM, respectively), outperforming the acarbose positive control. Compound 1 produced wide zones of inhibition against Staphylococcus aureus and Enterococcus faecium (of 21 and 20 mm, respectively), compared with the 19 and 20 mm zones of compound 2, at a concentration of 50 µg/mL. The MIC value of compound 1 against S. aureus was 13.32 µM. An in silico molecular docking model suggested that both compounds are potent inhibitors of enzyme α-glucosidase and are therefore leading candidates as therapies for diabetes mellitus. MDPI 2022-04-15 /pmc/articles/PMC9032663/ /pubmed/35458771 http://dx.doi.org/10.3390/molecules27082574 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
Nguyen, Huy Truong
Nguyen, Thanh-Trung
Duong, Thuc-Huy
Tran, Nguyen-Minh-An
Nguyen, Chuong Hoang
Nguyen, Thi-Hong-Anh
Sichaem, Jirapast
α-Glucosidase Inhibitory and Antimicrobial Benzoylphloroglucinols from Garcinia schomburgakiana Fruits: In Vitro and In Silico Studies
title α-Glucosidase Inhibitory and Antimicrobial Benzoylphloroglucinols from Garcinia schomburgakiana Fruits: In Vitro and In Silico Studies
title_full α-Glucosidase Inhibitory and Antimicrobial Benzoylphloroglucinols from Garcinia schomburgakiana Fruits: In Vitro and In Silico Studies
title_fullStr α-Glucosidase Inhibitory and Antimicrobial Benzoylphloroglucinols from Garcinia schomburgakiana Fruits: In Vitro and In Silico Studies
title_full_unstemmed α-Glucosidase Inhibitory and Antimicrobial Benzoylphloroglucinols from Garcinia schomburgakiana Fruits: In Vitro and In Silico Studies
title_short α-Glucosidase Inhibitory and Antimicrobial Benzoylphloroglucinols from Garcinia schomburgakiana Fruits: In Vitro and In Silico Studies
title_sort α-glucosidase inhibitory and antimicrobial benzoylphloroglucinols from garcinia schomburgakiana fruits: in vitro and in silico studies
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9032663/
https://www.ncbi.nlm.nih.gov/pubmed/35458771
http://dx.doi.org/10.3390/molecules27082574
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