山竹(Garcinia mangostana L.)根内生细菌乙酸乙酯提取物的抗氧化活性

Bastian Nova, Epi Supri Wardi, Ria Afrianti, Aldo Maihendra
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引用次数: 0

摘要

目的:本研究旨在获得山竹根中的内生细菌分离物,确定内生细菌次生代谢产物化学成分的相关信息,并使用 DPPH(1,1-二苯基-2-苦基肼)法获得抗氧化活性数据。研究地点和时间:研究于2019年6月至9月在印度尼西亚西苏门答腊省佩林蒂斯大学(Universitas Perintis)和高等教育协调委员会第十区的微生物实验室进行。研究方法:内生细菌的分离、内生细菌产生的次生代谢物、植物化学筛选以及使用 DPPH 法进行的抗氧化活性测试。结果用 DPPH 法测定山竹根内生细菌次生代谢物提取物的抗氧化活性,结果显示 IC50 为 14,047.912 克/毫升,没食子酸溶液为 2,498 克/毫升。此外,山竹根内生细菌次生代谢物的抑制率与没食子酸之间的 T 检验分析得出的显著值为 0.013。结论山竹根内生细菌次生代谢物的抗氧化活性较弱,不能作为抗氧化剂生产的替代品或解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Antioxidant Activity of Ethyl Acetate Extract from Endohytic Bacteria of Mangosteen (Garcinia mangostana L.) Roots
Aims: This study aims to obtain isolates of endophytic bacteria found in mangosteen roots, determine information regarding the chemical contents of secondary metabolites from endophytic bacteria, and obtain antioxidant activity data using the DPPH (1,1-Diphenyl-2-Picrylhydrazyl) method. Place and Duration of Study: The research was conducted from June to September 2019 at the Microbiology Laboratory of Universitas Perintis and the Higher Education Coordinating Board Region X, West Sumatra, Indonesia. Methodology: Isolation of endophytic bacteria, secondary metabolite production by endophytic bacteria, phytochemical screening, and antioxidant activity testing using the DPPH method. Results: The results of measuring the antioxidant activity of secondary metabolite extracts from endophytic bacteria of mangosteen rootsusing the DPPH method yielded an IC50 of 14,047.912 g/ml and gallic acid solution of 2,498 g/ml. Furthermore, the T-test analysis between the % inhibition of secondary metabolites from endophytic bacteria of mangosteen roots and gallic acid yielded a significant value of 0.013. Conclusion: The antioxidant activity of secondary metabolites from endophytic bacteria of mangosteen roots is considered weak and cannot be an alternative or solution for antioxidant production.
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