Biological potentialities and chemical composition of Tarenaya aculeata roots and stems

Bianca Ferreira Duarte, Thiago Luis Aguayo De Castro, Arlene Sobrinho Ventura, Cláudio Rodrigo Nogueira, Claudia Andrea Lima Cardoso
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Abstract

Plant extracts are rich in secondary metabolites responsible for numerous biological activities. This study aimed to evaluate the antioxidant, antibacterial and photoprotective potentials, toxicity and chemical composition of extracts and fractions of stems and roots of Tarenaya aculeata. Phytochemical analyses were performed at qualitative and quantitative levels to evaluate the classes of secondary metabolites. The sun protection factor (SPF) and antioxidant potentials were determined spectrophotometrically, the antibacterial activity was tested against seven bacteria and the toxicity was evaluated using Artemia salina assay. Phytochemical screening revealed the presence of alkaloids, phenolic compounds, flavonoids, glycosides, tannins and saponins. The levels of phenolic compounds, tannins and alkaloids, SPF and antioxidant potentials showed greater results in the stem (SF) and root (RF) fractions in relation to the stem (SE) and root (RE) extracts. All samples exhibited a broad spectrum of antibacterial activity, with MIC values ​​ranging from 31.25 to 250 μg mL-1. SE, SF and RF caused mortality in A. salina larvae, with LC50 of 347.06, 34.71 and 85.39 μg mL-1, respectively, whereas RE was non-toxic. Thus, T. aculeata is rich in bioactive secondary metabolites, although further studies will be needed to characterize its chemical constituents and investigate their adverse effects.
刺梨根和茎的生物学潜力和化学成分
植物提取物含有丰富的次生代谢产物,参与多种生物活性。摘要本研究旨在评价棘球莲茎、根提取物及部位的抗氧化、抗菌和光保护活性、毒性及化学成分。在定性和定量水平上进行植物化学分析,以评估次生代谢物的类别。采用分光光度法测定其防晒系数(SPF)和抗氧化活性,对7种细菌进行抑菌活性测定,并采用盐蒿法评价其毒性。植物化学筛选结果显示其含有生物碱、酚类化合物、黄酮类、苷类、单宁类和皂苷类化合物。茎(SF)和根(RF)部位的酚类化合物、单宁和生物碱含量、SPF和抗氧化电位均高于茎(SE)和根(RE)部位。所有样品均表现出广谱抗菌活性,MIC值在31.25 ~ 250 μ mL-1之间。SE、SF和RF对盐碱拟沙蚕幼虫具有致死性,LC50分别为347.06、34.71和85.39 μg mL-1, RE无毒。因此,虽然还需要进一步的研究来表征其化学成分和研究其不良反应,但针叶草富含生物活性次生代谢物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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