Statistical Analysis of Metal Chelating Activity of Centella asiatica and Erythroxylum cuneatum Using Response Surface Methodology.

Biotechnology Research International Pub Date : 2013-01-01 Epub Date: 2013-02-27 DOI:10.1155/2013/137851
R J Mohd Salim, M I Adenan, A Amid, M H Jauri, A S Sued
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引用次数: 11

Abstract

The purpose of the study is to evaluate the relationship between the extraction parameters and the metal chelating activity of Centella asiatica (CA) and Erythroxylum cuneatum (EC). The response surface methodology was used to optimize the extraction parameters of methanolic extract of CA and EC with respect to the metal chelating activity. For CA, Run 17 gave optimum chelating activity with IC50 = 0.93 mg/mL at an extraction temperature of 25°C, speed of agitation at 200 rpm, ratio of plant material to solvent at 1 g : 45 mL and extraction time at 1.5 hour. As for EC, Run 13 with 60°C, 200 rpm, 1 g : 35 mL and 1 hour had metal chelating activity at IC50 = 0.3817 mg/mL. Both optimized extracts were further partitioned using a solvent system to evaluate the fraction responsible for the chelating activity of the plants. The hexane fraction of CA showed potential activity with chelating activity at IC50 = 0.090 and the ethyl acetate fraction of EC had IC50 = 0.120 mg/mL. The study showed that the response surface methodology helped to reduce the extraction time, temperature and agitation and subsequently improve the chelating activity of the plants in comparison to the conventional method.
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响应面法统计分析积雪草和楔形红草的金属螯合活性。
本研究的目的是评价提取工艺参数与积雪草(Centella asiatica, CA)和楔形红草(Erythroxylum cuneatum, EC)金属螯合活性的关系。以金属螯合活性为考察指标,采用响应面法优化乙酸乙酯和乙酸乙酯甲醇提取物的提取工艺。对于CA, Run 17在提取温度为25°C,搅拌速度为200 rpm,植物材料与溶剂的比为1 g: 45 mL,提取时间为1.5小时时,其螯合活性最佳,IC50 = 0.93 mg/mL。EC在60°C, 200 rpm, 1 g: 35 mL, 1小时的条件下,Run 13的金属螯合活性为IC50 = 0.3817 mg/mL。用溶剂系统对两种优化的提取物进行进一步的分离,以评估植物螯合活性的部分。CA的己烷部分具有潜在的螯合活性,IC50 = 0.090, EC的乙酸乙酯部分IC50 = 0.120 mg/mL。研究表明,与传统方法相比,响应面法有助于减少提取时间、温度和搅拌,从而提高植物的螯合活性。
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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