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首页> 外文期刊>Pharmacognosy magazine >Optimization of ultrasound-assisted enzymatic extraction and antioxidant activity of polysaccharide from radix Morindae officinalis by response surface methodology
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Optimization of ultrasound-assisted enzymatic extraction and antioxidant activity of polysaccharide from radix Morindae officinalis by response surface methodology

机译:响应面法从基于麦克林综合素的超声辅助酶促提取和抗氧化活性的优化

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Objectives: In this study, we aimed to establish an efficient method for the extraction of radix Morindae officinalispolysaccharide (MOP) by applying ultrasonic technology and by optimizing the parameters through response surface methodology (RSM) based on the central composite design. Materials and Methods: Ultrasound-assisted enzymatic extraction (UAEE) was performed to extract the MOP. We applied an orthogonal array design to optimize the concentration of enzymes (cellulose, pectinase, and papain). The extraction parameters were optimized based on the RSM technique. Furthermore, the effects of ultrasound-assisted enzymatic treatment on 2,2-diphenyl-1-picrylhydrazyl (DPPH) radical-scavenging activity by the MOP was optimized using the RSM technique. Results: According to our results, 1.0% cellulase, 1.5% pectinase, and 1.0% papain were the optimum concentrations of the enzyme (calculated based on the percentage dry weight of radix Morindae officinalis powder). The optimum conditions of extraction were as follows: 21 mL/g solvent–solid ratio, 280 W, pH of 5.3, and temperature of 50°C. Under these conditions, the yield of MOPs and DPPH-scavenging activity of MOP were 23.68% ± 0.52% (n = 3) and 117.26 ± 2.73 mg Vitamin C/100 g dry weight (n = 3), respectively. The overall desirability was 1.03 ± 0.01 (n = 3). Conclusion: UAEE was effective in the extraction of MOP, and RSM technique was adequate to design and optimize the extraction parameters.
机译:目的:在本研究中,我们旨在通过应用超声技术和通过基于中央复合设计来通过响应面方法(RSM)来优化参数来建立萃取Radix Morindae Officinalispolysacheride(MOP)的有效方法。材料和方法:进行超声辅助酶促提取(UAEE)以提取拖把。我们应用了正交阵列设计以优化酶(纤维素,果胶酶和木瓜蛋白酶)的浓度。基于RSM技术进行了优化提取参数。此外,使用RSM技术优化了通过RSM技术优化了通过RSM技术进行了对2,2-二苯基-1-野生酰基(DPPH)自由基活性的超声辅助酶处理的影响。结果:根据我们的结果,1.0%纤维素酶,1.5%果胶酶和1.0%木瓜蛋白酶是酶的最佳浓度(基于Radix Morindae Officinalis粉末的干重百分比计算)。提取的最佳条件如下:21ml / g溶剂 - 实用比,280w,pH为5.3和50℃的温度。在这些条件下,MOP的MOP和DPPH-清除活性的产率分别为23.68%±0.52%(n = 3)和117.26±2.73mg维生素C / 100g干重(n = 3)。总体期望为1.03±0.01(n = 3)。结论:UAEE在拖把的提取方面有效,RSM技术足以设计和优化提取参数。

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