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Biology subjects

Nimbalkar, M. S.

Publications and source records attributed to Nimbalkar, M. S..

2 recordsLinked to original sources

Chemo-Profiling by UPLC-QTOF-MS, GC-MS/MS analysis and In Vitro Bioactivity Assessment of Desmodium gangeticum DC.

Desmodium gangeticum DC., commonly known as Shalparni, and a member of the Fabaceae family, is a small shrub native to tropical and subtropical regions. The active principles of this plant are primarily concentrated in its roots, which are traditionally used in various medicinal formulations. This study aimed to identify alternative sources of raw material by evaluating the biochemical analysis and bioactivity profiling of both fresh and dried plant parts--roots, leaves, and stems. Extracts were prepared using methanol, ethanol, and distilled water and subjected to phytochemical, antioxidant, anti-inflammatory (HRBC membrane stabilization), and antibacterial assays. Additionally, chemical profiling was performed using FTIR, GC-MS/MS, and UPLC-Q-TOF-MS. This is the first report on D. gangeticum as one of the Dashmoola plants for its biochemical analysis, bioactivity, and chemoprofiling of the entire plant. Results indicated that the GC-MS/MS analysis identified 25 volatile compounds in leaves, whereas the roots contained 21. These compounds included fatty acids, ketones, hydrocarbons, alcohols, and esters. UPLC-Q-TOF-MS analysis revealed a diverse array of bioactive compounds: 287 in aqueous leaf extracts and 192 in aqueous root extracts, many of which were identified as bioactive agents. Notably, the leaf extracts exhibited a higher number of bioactive compounds compared to the roots, highlighting the plants diverse bioactive compounds in different tissues. The study demonstrates that both the leaves and roots of D. gangeticum contain significant therapeutic compounds. Therefore, the leaves could serve as a sustainable alternative to roots as raw material for medicinal preparations, contributing to the conservation of this plant in its natural habitat.

plant biology↗

Biosynthesis of Silver nanoparticles using Drimia indica and exploring its antibacterial profiling

Biological synthesis reflects as an eco-friendly, nontoxic and easy method of nanoparticle preparation. Present investigation deals with biosynthesis of silver nanoparticles using Drimia indica leaf extract. Initially the synthesized silver nanoparticles were characterized and confirmed by UV-Vis spectroscopy, X-ray diffraction (XRD) and SEM. The synthesized nanoparticles when used for determination of antibacterial activity, by Microtitre Broth Dilution method exhibited remarkable activity against Pseudomonas aeruginosa, Klebsiella pneumoniae and Escherichia coli.

plant biology↗