Academic Journal

First metabolic profile of Aspidosperma multiflorum leaves using UPLC-ESI-QToF-MS/MS: evaluation of the cytotoxicity and antimicrobial activity.

Bibliographic Details
Title: First metabolic profile of Aspidosperma multiflorum leaves using UPLC-ESI-QToF-MS/MS: evaluation of the cytotoxicity and antimicrobial activity.
Authors: Gomes, João Paulo S.1 (AUTHOR), Santos, Maria Clara M.1 (AUTHOR), Santiago, Rodrigo F.1 (AUTHOR), Farias, Ruth Raquel S.2 (AUTHOR), Silva Furtado, Pedro V. O.1 (AUTHOR), Feitosa, Chistiane M.1 (AUTHOR), Souza Leal, Paulline P. M.3 (AUTHOR), Amorim Carvalho, Fernando A.3 (AUTHOR), Silva, Stéphanie A. N. M.4 (AUTHOR), Marinho Filho, José D. B.5 (AUTHOR), Araujo, Ana J.5 (AUTHOR), Campos, Carmem D. L.6 (AUTHOR), Monteiro, Cristina A.7 (AUTHOR), Rai, Mahendra1,8 (AUTHOR), Vieira Junior, Gerardo M.1 (AUTHOR), Chaves, Mariana Helena1 (AUTHOR) mariana@ufpi.edu.br
Source: Journal of Toxicology & Environmental Health: Part A. 2026, Vol. 89 Issue 14, p641-665. 25p.
Subject Terms: *Flavonoid glycosides, *Cytotoxins, *Metabolic profile tests, *Breast tumors, *Analytical chemistry techniques, *Staphylococcus aureus, *Anti-infective agents
Geographic Terms: Brazil
Abstract: Aspidosperma multiflorum A.DC. (Apocynaceae), popularly known as "pequiá da casca grossa" or "pequiá cascudo," is widely distributed in Brazil; however, studied chemically and biologically to a limited extent. Therefore, the present study aimed to determine the metabolic profile and assess biological activities of ethanolic extract (EEF), ethyl acetate fraction (FAcF), and aqueous fraction (FAqF) of leaves derived from A. multiflorum. Samples were subjected to analysis by ultra-performance liquid chromatography coupled with electrospray ionization/quadrupole-time-of-flight-mass spectrometry (UPLC-ESI-QToF-MS/MS) in negative and positive ionization modes, enabling annotation of 40 compounds in comparison with published data and MS/MS fragmentation, predominantly glycosylated flavonoids. EEF and FAcF demonstrated significant activity against breast adenocarcinoma tumor cell line (MBA-MD-231), with inhibition of 96% (IC50 of 34.56 μg/ml) and 93% (IC50 of 13.58 μg/ml), respectively. FAcF exhibited inhibition of 94% (IC50 of 16.64 μg/ml) against colorectal adenocarcinoma (HCT-116) and 91% (IC50 of 10.30 μg/ml) against non-tumor murine fibroblast (L929). However, for EEF inhibition was only 19% against L929. EEF and FAqF were active against Staphylococcus aureus (MIC of 93 and 51 µg/ml, respectively), while FAcF and FAqF displayed activity against Candida krusei, currently known a Pichia kudriavzevii, (MIC of 23 and 31 µg/ml, respectively). Samples, at concentrations tested, demonstrated low antileishmanial, antioxidant, and anticholinesterase activities. Our results enhance chemical and biological knowledge regarding A. multiflorum which may be considered for utilization as a cytotoxic and antimicrobial agent following further in vivo investigations. Data generated may aid in preserving Brazilian biodiversity, as A. multiflorum is a threatened plant species. [ABSTRACT FROM AUTHOR]
Database: Academic Search Index
Description
ISSN:15287394
DOI:10.1080/15287394.2025.2612334