gangeasia和Phyllanthus Niruri提取物的特性:总酚含量、抗氧化和抗菌活性

Ozahrah Hasan Basir, N. Zaid, N. Fauzi, A. H. A. Razak
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引用次数: 1

摘要

抗氧化剂在抑制和清除自由基方面发挥重要作用,保护人体免受感染和退行性疾病的侵袭。由于天然抗氧化剂具有安全的治疗作用,目前的研究主要集中在草药中的“天然抗氧化剂”。本研究以索氏法、冷浸法和传统超声辅助提取法(UAE)三种不同提取方法对江蓠叶和江蓠叶的抗氧化性、总酚含量和抗菌活性进行了研究。采用DPPH自由基清除法和Folin-Ciocalteau试剂分别对提取物的抗氧化活性和总酚含量进行了表征。采用响应面法对冷浸- UAE联合提取工艺进行了优化研究。然后,通过琼脂盘扩散法对优化后的提取物进行了大肠杆菌和表皮葡萄球菌的抑菌活性鉴定。冷浸渍的gangeganga和P. niruri具有最高的抗氧化性能,其DPPH清除率最高(分别为59.57%和51.14%)。浸渍后的黑檀和黑檀总酚含量分别为2.73 mg GAE/g和2.68 mg GAE/g。因此,在确定了DPPH清除活性的最高百分比后,用UAE对提取物进行了进一步优化。通过优化,确定了最佳条件为:功率为17.57±0.01W,时间为5.83±0.01min;功率为98.14±0.01W,时间为0.17±0.01min。两种提取物均表现出较强的抑菌活性,对大肠杆菌具有较高的抑菌程度。综上所述,冷浸联合UAE法可显著提高黑檀和黑檀提取物中抗氧化剂的含量。本研究结果可用于制药和药妆行业。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterisation of Asystasia Gangetica and Phyllanthus Niruri Extracts: Total Phenolic Content, Antioxidant and Antibacterial Activities
Antioxidant plays a significant role in inhibiting and scavenging free radicals, which protectshuman against infection and degenerative diseases. Nowadays, most studies focus on “natural antioxidants” from herbs due to safe therapeutic. In this study, performance on different extraction methods, i.e. Soxhlet, cold maceration and traditional extraction method assisted with ultrasonic-assisted extraction (UAE) for Asystasia gangetica leaves and Phyllanthus niruri plant are investigated by means of antioxidant, total phenolic content and antibacterial activity. The extracts were characterized for its antioxidant activity and total phenolic content by means of DPPH radical scavenging method and Folin-Ciocalteau reagent respectively. Optimization studies were carried out on combined cold-maceration and UAE extraction method by using Response Surface Method. Then, the optimized extracts were further characterized for antibacterial activity using Escherichia coliand Staphylococcus epidermidisby the agar disc diffusion method. Sample containing cold macerated A. gangetica and P. niruri indicates the highest antioxidant property as it contains the highest percentage of DPPH scavenging activity (59.57% and 51.14% respectively). While, the total phenolic content of macerated A. gangetica and P. niruri are 2.73 mg GAE/g and 2.68 mg GAE/g respectively. Consequently, after the determination of highest percentage of DPPH scavenging activity, the extracts werefurther optimized using UAE. From the optimization, the optimum condition was determined to be power of 17.57±0.01W and time of 5.83±0.01minutes for A. gangetica while, the power of 98.14±0.01W and 0.17±0.01minutes for P. niruri. Both optimized extracts showed potent antibacterial activity with high degree of antibacterial against E. coli. In conclusion, combination of cold maceration and UAE method increase the amount of antioxidant from extracts of A. gangetica and P. niruri. The finding from this study can be useful in pharmaceutical and cosmeceutical industries.
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