评估银杏叶的抗氧化和抗菌特性

Elina Barazesh, M. Govahi, Mojtaba Ranjbar
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摘要

导言活性氧会破坏人体内的化学物质,从而引发疾病。另一方面,抗药性正成为全球治疗感染的一个严重问题。银杏叶具有许多治疗功能。本研究旨在评估伊朗银杏叶提取物的抗氧化和抗菌活性。方法:在这项实验研究中,使用银杏叶提取了水提取物、乙醇提取物(70%)和甲醇提取物(80%)。总酚和类黄酮的含量是通过亚叶酸-西奥卡尔特试剂和氯化铝显色法测定的。提取物的抗氧化活性通过其清除 DPPH 自由基的潜力进行评估。碟片扩散法测试了两种菌株(粪肠球菌和单核细胞增生李斯特菌)的抗菌效力。数据分析采用完全随机设计的因子实验。采用 SPSS 16 版软件和邓肯多重范围检验来比较平均值。结果结果显示,三种提取物都含有大量的酚类化合物,尤其是类黄酮化合物,其中甲醇提取物的酚类和类黄酮化合物含量最高,而水提取物的含量最低。浓度为 300 毫克/毫升的甲醇提取物的抗氧化活性最高,为 84.73%(P<0.05),浓度为 40 毫克/毫升的水提取物的抗氧化活性最低,ROS 清除率为 18.17%(P<0.05),这一结果与所测量的提取物生物活性成分成正比。浓度为 200 毫克/毫升的甲醇提取物对粪肠球菌的抗菌活性最高,而浓度为 50 毫克/微升的水提取物对李斯特菌株的抗菌活性最低。所有三种提取物的抗菌活性都与浓度有关。结论研究结果表明,银杏叶含有丰富的酚类和黄酮类物质,这可能是银杏叶具有显著抗氧化和抗菌活性的原因。因此,银杏可能是抗氧化剂和治疗化合物的宝库。不过,还需要对银杏的各种特性进行更多的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluating of Antioxidant and Antibacterial Characteristics Ginkgo Biloba Leaves
Introduction: Reactive oxygen species cause disease by damaging the chemical compounds in our body. On the other hand, drug resistance is becoming a serious issue in infection treatment, globally. Ginkgo biloba has many therapeutically features. The objective of this study was to evaluate antioxidant and antibacterial activity of Iranian Ginkgo’s leaf extracts. Methods: In this experimental study, aqueous, ethanolic (%70) and methanolic (%80) extracts were made using Ginkgo. Total Phenolic and Flavonoids Content were measured by folin– ciocalteu reagent and Chloride Aluminum color assays. The extracts’ antioxidant activity was assessed by their potential in scavenging DPPH free radicals. Disc Diffusion assay was carried out to test antibacterial potency against two strains of bacteria (Enterococcus faecalis, Listeria monocytogenes). Data analysis was performed using factorial experiment within a completely randomized design. SPSS version 16 software and Duncan's multiple range tests were used to compare the means. Results: Based on results, all three extracts contained extensive amount of phenolic and especially flavonoid compounds with methanolic extract being the richest in phenolic and flavonoids while aqueous extract having the least of these compounds. The most antioxidant activity was found in methanolic extract of 300 mg/mL concentration with %84.73 (P<0.05) and the least was in aqueous extract of 40 mg/mL with %18.17 (P<0.05) ROS scavenging rate, this result was proportional to the measured bioactive components of the extracts. Antibacterial activity in 200 mg/mL concentration of methanolic extract was maximum against Enterococcus faecalis while it was minimum at 50 mg/µl concentration of aqueous extract against Listeria monocytogenes strain. Antibacterial activity of all three extracts was found out to be concentration dependent. Conclusion: The results indicated that Ginkgo leaves are rich in phenolic and flavonoids contents that may be reason behind their notable antioxidant and antibacterial activity. Thus, Ginkgo could be a treasure trove of antioxidants and therapeutic compounds. However, more studies are required in regard to Ginkgo’s various characteristics.
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