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海洋藻类的生物学特性及其强大的体外抗氧化、抗菌和杀幼虫活性:以1753年林奈记载为例:第1163页。

Biological characterization of marine algae and its potent in vitro antioxidant, antimicrobial and larvicidal activity: a focus on Linnaeus 1753: 1163.

作者信息

Kumaravelu Jayanthi, Paramasivam Deepak, Shaik Mohammed Rafi, Guru Ajay, Thiyagarajulu Nathiya, Vellingiri Manon Mani, Hussain Shaik Althaf

机构信息

Department of Biotechnology, Valliammal College for Women, Chennai, India.

Department of Life Sciences, Kristu Jayanti College (Autonomous) K. Narayanapura, Kothanur (PO), Bengaluru, 560077 India.

出版信息

3 Biotech. 2024 Nov;14(11):261. doi: 10.1007/s13205-024-04105-4. Epub 2024 Oct 5.

Abstract

This study evaluated the biological characteristics of seaweeds , , and . Among the seaweeds tested, ethyl acetate extract of exhibited the highest antibacterial activity against and . The phytochemical analysis of ULME and ULEA showed the presence of most of the tested phytochemicals, whereas only amino acids, tannins, glycosides, and carbohydrates were detected by ULHE. The DPPH scavenging property of exerted the maximum antioxidant property of 62.54% (ULME), 75.64% (ULEA), and 39.55% (ULHE), whereas the alpha amylase inhibitory property (µg/mL) of ULME, ULEA, and ULHE was, respectively, 80.99, 51.15, and 49.23. ULME, ULEA, and ULHE exhibited the greatest alpha-glucosidase inhibition, with IC values (g/mL) of 116.12, 45.59, and 170.10 correspondingly. ULEA also showed potent mosquito-larvicidal effects against larvae with the maximum lethal concentration values with LC and LC values (mg/mL) being 11.55 and 65.97, respectively FTIR analysis of ULME, ULHE, and ULEA were found to have various functional groups, including alkanes, carboxylic acids, alkenes, alkynes, aldehydes, amides and alkanes, ketones, and aromatics, while HPLC revealed a strong peak at 4.760 retention time. In conclusion, , particularly its ethyl acetate extract, demonstrates significant antibacterial, antioxidant, and enzyme-inhibitory properties, highlighting its therapeutic and biotechnological potential. Its diverse phytochemicals and effective mosquito-larvicidal activity further support its broad application prospects.

摘要

本研究评估了[海藻名称1]、[海藻名称2]和[海藻名称3]的生物学特性。在所测试的海藻中,[海藻名称1]的乙酸乙酯提取物对[细菌名称1]和[细菌名称2]表现出最高的抗菌活性。对[海藻名称1]的甲醇提取物(ULME)和乙醇提取物(ULEA)的植物化学分析表明,存在大多数测试的植物化学物质,而[海藻名称3]的热水提取物(ULHE)仅检测到氨基酸、单宁、糖苷和碳水化合物。[海藻名称1]、[海藻名称2]和[海藻名称3]的DPPH清除特性分别表现出最大抗氧化性能为62.54%(ULME)、75.64%(ULEA)和39.55%(ULHE),而ULME、ULEA和ULHE的α淀粉酶抑制特性(μg/mL)分别为80.99、51.15和49.23。ULME、ULEA和ULHE表现出最大的α-葡萄糖苷酶抑制作用,IC值(g/mL)分别为116.12、45.59和170.10。ULEA对[蚊虫幼虫名称]幼虫也显示出有效的杀蚊幼虫作用,最大致死浓度值LC₅₀和LC₉₀值(mg/mL)分别为11.55和65.97。对ULME、ULHE和ULEA的FTIR分析发现具有各种官能团,包括烷烃、羧酸、烯烃、炔烃、醛、酰胺和烷烃、酮和芳烃,而HPLC在保留时间4.760处显示出一个强峰。总之,[海藻名称1],特别是其乙酸乙酯提取物,表现出显著的抗菌、抗氧化和酶抑制特性,突出了其治疗和生物技术潜力。其多样的植物化学物质和有效的杀蚊幼虫活性进一步支持了其广阔的应用前景。

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本文引用的文献

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