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首页> 外文期刊>Future Journal of Pharmaceutical Sciences >Optimization of extraction conditions and evaluation of Manilkara zapota (L.) P. Royen fruit peel extract for in vitro α-glucosidase enzyme inhibition and free radical scavenging potential
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Optimization of extraction conditions and evaluation of Manilkara zapota (L.) P. Royen fruit peel extract for in vitro α-glucosidase enzyme inhibition and free radical scavenging potential

机译:Manilkara Zapota(L.)P. royen果皮提取物的优化萃取条件和评价,用于体外α-葡糖苷酶抑制作用和自由基清除潜力

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Background:Most of the edible portions like peel and skin of some fruits is discarded while consuming it, though they are rich in several health beneficial phytochemicals or nutrients. Many reports from literature are about fruit pulp of (Sapota) Manilkara zapota (L) P. Royen having high radical scavenging and antioxidant potential, but the studies relating to peel extracts are scanty. Regardless of its commendable phytoconstituents which could have free radical scavenging potential, this fruit peel is as yet still needed to be assessed for in vitro antidiabetic prospects. Hence, the present study aims at evaluating in vitro free radical scavenging and α-glucosidase enzyme hindrance abilities of this fruit peel.ResultsWith a maximum considerable % extractive yield (18.90%) in 70% ethanol, this study has demonstrated that 70% ethanolic extract of Manilkara Zapota (L.) P. Royen Fruit Peel (MZFP) has the highest in vitro free radical scavenging potential as compared to extracts of other solvents viz. n-hexane, chloroform, acetone, absolute ethanol, and water by DPPH and H2O2 assays. In order to optimize the extraction condition parameters, MZFP sample evaluated with three different concentrations of ethanol (40%, 70%, 100%), extraction times (6 h, 9 h, 12 h), and temperatures (40 °C, 50 °C, 60 °C) to get the highest radical scavenging potential. The MZFP when extracted with 70% ethanol, at 50 °C for 12 h, showed higher DPPH (IC50 = 0.34 and 88.42% inhibition at 1 mg/ml) and H2O2 (IC50 = 32.69 and 65.78% inhibition at 50 μg/ml) radical scavenging potential than absolute and 40% ethanolic extracts, when ascorbic acid was used as a reference standard. While further evaluation for in vitro α-glucosidase enzyme inhibition, 70% ethanolic MZFP extract demonstrated high inhibition activity (IC50 = 104.23 ± 1.75 μg/ml) than absolute ethanolic extract (IC50 = 111.65 ± 1.57 μg/ml) with a significant difference (p < 0.05), when acarbose was taken as reference inhibitor (IC50 = 86.93 ± 0.74 μg/ml).ConclusionsOverall results indicated that MZFP 70% ethanolic extract exhibited promising in vitro radical scavenging and α-glucosidase enzyme inhibition potential. Thus, suggesting further studies with isolated phytochemicals from peel to explore its potentials for antidiabetic activity through in vitro α-glucosidase enzyme inhibition.
机译:背景:虽然它们富含几种健康有益的植物化学物质或营养素,但大多数可食用部分都丢弃了一些水果的果皮和皮肤皮肤。来自文献的许多报道是关于(Sapota)的水果纸浆 manilkara zapota (l)p. royen具有高自由基清除和抗氧化潜力,但与剥皮提取物有关的研究很少。无论其可称为可自由基清除潜力的可称赞植物主学,此果皮均仍然需要对体外抗透明前景进行评估。因此,本研究旨在评估这种果皮的体外自由基清除和α-葡萄糖苷酶阻碍能力。本研究表明70%乙醇提取物的最大相当大的萃取产率(18.90%)在70%乙醇中进行了最大相当大的萃取产率(18.90%) Manilkara Zapota (L.)P. Royen Fruit Peel(MZFP)与其他溶剂的提取物相比,瑞恩果皮(MZFP)具有最高的体外自由基清除潜力。 N-己烷,氯仿,丙酮,绝对乙醇和DPPH和H 2 O 2 测定。为了优化提取条件参数,用三种不同浓度的乙醇(40%,70%,100%),提取时间(6小时,9小时,12小时)和温度(40°C,50 °C,60°C)获得最高的自由基清除潜力。用70%乙醇提取时的MZFP在50℃下12小时,显示出较高的DPPH(IC <亚次> 50℃> = 0.34和88.42%抑制在1mg / ml)和H 2 O 2 (IC 50 = 32.69和65.78%抑制超过50μg/ mL)的根深子清除潜力。参考标准。虽然进一步评价体外α-葡萄糖苷酶抑制作用,但是70%乙醇MZFP提取物比绝对乙醇提取物(IC 50 < /亚= 111.65±1.57μg/ ml)具有显着差异( p <0.05),当acarbose作为参考抑制剂时(IC 50 = 86.93±0.74μg /mL).Conclusionsoverall结果表明,MZFP 70%乙醇提取物表现出具有体外自由基清除和α-葡糖苷酶抑制潜力的有前途。因此,表明通过剥离的分离的植物化学方法进一步研究通过体外α-葡糖苷酶抑制来探讨其对抗糖尿病活性的潜力。

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