Bioactive Constituents from the Rhizomes of Sansevieria cylindrica
Hnin Thanda Aung, Mya Mu Aye, Zaw Min Thu, Yumiko Komori, Myint Myint Sein, Giovanni Vidari, Yoshiaki Takaya
Abstract
Open-access reader
Hnin Thanda Aung, Mya Mu Aye, Zaw Min Thu, Yumiko Komori, Myint Myint Sein, Giovanni Vidari, Yoshiaki Takaya
Abstract
Open-access reader
Analysis of the MeOH extract of rhizomes of Sansevieria cylindrica using repeated silica gel and reversed-phase chromatographic separations led to the isolation of ten phenolic compounds (1-10) belonging to five different classes. Their structures, including the absolute configuration, were identified by NMR and CD spectra analysis. The antiradical activity of isolated compounds was tested using the DPPH scavenging method. The cytotoxic effects were assayed against a Hela cell line. Compounds 2-10 have been isolated from a Sansevieria species from the first time and compounds 4-10 have been isolated from species of the Asparagaceae family for the first time. The structure of a homoisoflavanone isolated from S. roxburghiana has been corrected.
OpenAlex reports 10 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Analysis of the MeOH extract of rhizomes of Sansevieria cylindrica using repeated silica gel and reversed-phase chromatographic separations led to the isolation of ten phenolic compounds (1-10) belonging to five different classes. Their structures, including the absolute configuration, were identified by NMR and CD spectra analysis. The antiradical activity of isolated compounds was tested using the DPPH scavenging method. The cytotoxic effects were assayed against a Hela cell line. Compounds 2-10 have been isolated from a Sansevieria species from the first time and compounds 4-10 have been isolated from species of the Asparagaceae family for the first time. The structure of a homoisoflavanone isolated from S. roxburghiana has been corrected.
Key concepts: Rhizome, Traditional medicine, Chemistry, Chemical constituents, Botany, Biology, Chromatography, Medicine