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In vitro biological evaluation and in silico studies of linear diarylheptanoids from Curcuma aromatica Salisb. as urease inhibitors.
Le, Tho Huu; Ho, Dung Ngoc Phuong; Nguyen, Hai Xuan; Van Do, Truong Nhat; Nguyen, Mai Thanh Thi; Huynh, Lam K; Nguyen, Nhan Trung.
Afiliação
  • Le TH; Faculty of Chemistry, University of Science Ho Chi Minh City Vietnam ntnhan@hcmus.edu.vn.
  • Ho DNP; Research Lab for Drug Discovery and Development, University of Science Ho Chi Minh City Vietnam.
  • Nguyen HX; Vietnam National University of Ho Chi Minh City Ho Chi Minh City Vietnam.
  • Van Do TN; School of Chemical and Environmental Engineering, International University Ho Chi Minh City Vietnam.
  • Nguyen MTT; Vietnam National University of Ho Chi Minh City Ho Chi Minh City Vietnam.
  • Huynh LK; Faculty of Chemistry, University of Science Ho Chi Minh City Vietnam ntnhan@hcmus.edu.vn.
  • Nguyen NT; Research Lab for Drug Discovery and Development, University of Science Ho Chi Minh City Vietnam.
RSC Med Chem ; 15(3): 1046-1054, 2024 Mar 20.
Article em En | MEDLINE | ID: mdl-38516598
ABSTRACT
Plants of the Zingiberaceae family, specifically those belonging to the Curcuma species, are commonly under consideration as potential therapeutic agents for the management of gastrointestinal diseases. In this study, we carried out a phytochemical study on Curcuma aromatica Salisb. (or so-called "Nghe trang" in Vietnamese) grown in Vietnam, which yields three newly discovered 3,5-diacetoxy diarylheptanoids (1-3) and six known 3,5-dihydroxyl diarylheptanoids (4-9). The bioactivity assessment shows that all isolated compounds, except compounds 3, 7, and 8, could inhibit urease. Compounds 4 and 9 significantly inhibit urease, with an IC50 value of 9.6 and 21.4 µM, respectively, more substantial than the positive control, hydroxyurea (IC50 = 77.4 µM). The structure-activity relationship (SAR) of linear diarylheptanoids was also established, suggesting that the hydroxyl groups at any position of skeleton diarylheptanoids are essential for exerting anti-urease action. Through a comparative analysis of the binding sites of hydroxyurea and diarylheptanoid compounds via our constructed in silico model, the mechanism of action of diarylheptanoid compounds is predicted to bind to the dynamic region close to the dinickel active center, resulting in a loss of catalytic activity. Such insights certainly help design and/or find diarylheptanoid-based compounds for treating gastric ulcers through inhibiting urease.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article