Identification of Bioactive Compounds from the Roots of Rehmannia glutinosa and Their In Silico and In Vitro AMPK Activation Potential


Here are the Identification of Bioactive Compounds from the Roots of Rehmannia glutinosa and Their In Silico and In Vitro AMPK Activation Potential journals presenting the latest research across various disciplines. From social sciences to technology, each article is expected to provide valuable insights to our readers.

Identification of diseases crossword clue, identification of a woman, identification of bioactive compounds, how to identify optically active compounds, what are natural bioactive compounds.

Identification of Bioactive Compounds from the Roots of Rehmannia glutinosa and Their In Silico and In Vitro AMPK Activation Potential

Rehmannia glutinosa Libosch., which belongs to the Orobanchaceae family, is a perennial herb found in China, Japan, and Korea. In traditional medicine, it is used to cool the body, improve water metabolism in the kidney, and provide protection from metabolic diseases such as type 2 diabetes mellitus (T2DM) and obesity. In this study, three new compounds were isolated from the roots of R. glutinosa, along with eighteen known compounds. Structure elucidation was performed with spectroscopic analyses including nuclear magnetic resonance (NMR) and circular dichroism (CD) spectroscopy. As the AMP-activated protein kinase (AMPK) signaling pathway is reportedly related to metabolic diseases, AMPK activation studies were conducted using in silico simulations and in vitro assays. Among the isolated compounds, 1 showed a potential as an AMPK activator in both in silico simulations and in vitro experiments. Our findings expand the chemical profiles of the plant R. glutinosa and suggest that one newly found compound (1) activates AMPK. © 2024 by the authors.

Authors : Lee H.; Youn I.; Noh S.G.; Kim H.W.; Song E.; Nam S.-J.; Chung H.Y.; Seo E.K.

Source : Multidisciplinary Digital Publishing Institute (MDPI)

Article Information

Year 2024
Type Article
DOI 10.3390/molecules29246009
ISSN 14203049
Volume 29

You can download the article here


If You have any problem, contact us here


Support Us:

Download Now Buy me a coffee Request Paper Here