Bioassay Guided Fractionation of Ciplukan (Physalis angulata L.) Monitored by Glucose Consumption Assay and Thin Layer Chromatography on Myoblast Cells

M. Wahyuningsih, Ketut Shri Satya Wiwekananda, Aurelia Priscilla Regita Putri, D. Nugrahaningsih, Mia Munawaroh Yuniyanti
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Abstract

Ciplukan (Physalis angulata Linn.) has been used by the community as an anti-diabetic drug. The antidiabetic effect is due to ingredients such as unsaturated fatty acids, alkaloids, flavonoids, saponins, polyphenols, steroids, triterpenoids, monoterpenoids, and sesquiterpenoids. Part of the fruit of P. angulata contains many active substances of flavonoids with the proportion of fruit extract 300 μg/ml is 84%. Therefore the exploration for compounds responsible for antidiabetic activity in P. angulata needs to be done to ensure empirical evidence. The purpose of this study was to find the active fraction of P. angulata L. which has anti-hyperglycemic properties. This study used Myoblast cells as subjects and the Bioassay Guided Fractionation method for separating compound groups through three stages of the extraction, partitioning, and fractionation processes which were monitored using TLC and the Glucose Consumption Assay test. The results showed that the chloroform extract (CHCl3) was more active in lowering glucose levels compared to the methanol extract (MeOH) (4.86% vs -8.74%). MeOH insoluble extract was more active than MeOH soluble extract (5.14% vs -8.52). The fractionation results showed that Fraction I was the most active in lowering glucose levels compared to FII, III, and IV (26.47%; 13.18%; 0.15%; 13.76%). Therefore Fraction 1 which contains a class of flavonoid compounds is a potential candidate to be developed as an antidiabetic agent.
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葡萄糖消耗法和薄层色谱法监测Ciplukan(Physalis angulata L.)在成肌细胞上的生物测定导向分级
Ciplukan(Physalis angulata Linn.)已被社区用作抗糖尿病药物。抗糖尿病作用是由于不饱和脂肪酸、生物碱、类黄酮、皂苷、多酚、类固醇、三萜类、单萜类和倍半萜类等成分。angulata果实部分含有多种黄酮类活性物质,果实提取物300μg/ml的比例为84%。因此,需要对角孢霉中具有抗糖尿病活性的化合物进行探索,以确保经验证据。本研究的目的是寻找具有抗高血糖特性的P.angulata L.的活性部分。本研究以成肌细胞为受试者,采用生物测定引导分级法,通过提取、分配和分级过程的三个阶段分离化合物组,并使用TLC和葡萄糖消耗测定测试进行监测。结果表明,与甲醇提取物(MeOH)相比,氯仿提取物(CHCl3)在降低葡萄糖水平方面更具活性(4.86%对-8.74%)。MeOH不溶性提取物比MeOH可溶性提取物更具有活性(5.14%对-8.52)。分级结果表明,馏分I与FII、III、,和IV(26.47%;13.18%;0.15%;13.76%)。因此,含有一类类黄酮化合物的组分1是一种潜在的候选抗糖尿病药物。
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来源期刊
CiteScore
0.60
自引率
0.00%
发文量
10
审稿时长
15 weeks
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