Efektivitas Fraksi Metabolit Sekunder Jamur Endofit Lamun (Thalassia hemprichii) dari Kawasan Teluk Tomini Sebagai Antibakteri Jerawat

Mahdalena Sy. Pakaya, Fika Nuzul Ramadhani, Moh. Ridwan Ente
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Abstract

Endophytic fungi live in their host tissues, so that endophytic fungi can produce secondary metabolites that are similar to their hosts as well. In this case, the use of endophytic fungi can reduce the exploitation of seagrass populations (Thalassia hemprichii) in Tomini Bay. This study aims to examine the effectiveness of the secondary metabolite fraction of the endophytic seagrass fungus (Thalassia hemprichii) from Tomini Bay against acne-causing bacteria. The test method used is disc diffusion method (Kirby Bauer), by measuring the inhibition zones of the ethanol fraction, ethyl acetate fraction, and the N-hexan fraction of the secondary metabolite fraction of endophytic fungi against acne-causing bacteria. The liquid-liquid partition results of the secondary metabolites of seagrass endophytic fungi from the Tomini Bay area were the N-Hexan fraction of 3.06 grams, the Chloroform fraction of 2.90 grams, and the Ethyl Acetate fraction of 1.53 grams. While the effectiveness test of the N-Hexan, Chloroform, and Ethyl Acetate fractions of secondary metabolites of endophytic seagrass microbes from the Tomini Bay area showed that the N-Hexan fraction at a concentration of 75% had greater inhibition on each of the acne-causing bacteria, namely Propionibacterium acne 17 .33 mm (strong category), Staphylococcus aureus 17.86 mm (strong category), and Staphylococcus epidermidis 16.01 mm (strong category).
托米尼湾海草内生真菌(Thalassia hemprichii)的次级代谢物馏分作为痤疮抗菌剂的功效
内生真菌生活在宿主组织中,因此内生真菌也能产生与宿主相似的次级代谢产物。在这种情况下,利用内生真菌可以减少对托米尼湾海草(Thalassia hemprichii)种群的开发。本研究旨在探讨托米尼湾的内生海草真菌(Thalassia hemprichii)的次级代谢产物部分对痤疮细菌的功效。测试方法是采用 Kirby Bauer 盘扩散法,测量内生真菌次生代谢物乙醇部分、乙酸乙酯部分和 N-己烷部分对痤疮丙酸杆菌的抑制区。托米尼湾海草内生真菌次级代谢产物的液-液分配结果为:N-己烷馏分 3.06 克,氯仿馏分 2.90 克,乙酸乙酯馏分 1.53 克。对托米尼海湾地区海草内生微生物次生代谢产物的 N-己醇、氯仿和乙酸乙酯馏分进行的有效性测试表明,浓度为 75% 的 N-己醇馏分对每种痤疮致病菌都有较强的抑制作用,即痤疮丙酸杆菌 17.33 毫米(强效类)、金黄色葡萄球菌 17.86 毫米(强效类)和表皮葡萄球菌 16.01 毫米(强效类)。
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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