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首页> 外文期刊>Journal of Diabetes and Metabolic Disorders >Extraction process optimization of polyphenols from Indian Citrus sinensis – as novel antiglycative agents in the management of diabetes mellitus
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Extraction process optimization of polyphenols from Indian Citrus sinensis – as novel antiglycative agents in the management of diabetes mellitus

机译:印度柑桔中多酚的提取工艺优化-作为治疗糖尿病的新型抗糖化剂

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Background Diabetes mellitus is a chronic metabolic disorder characterized by increased blood glucose level. It has become an epidemic disease in the 21st century where, India leads the world with largest number of diabetic subjects. Non-enzymatic glycosylation (glycation) is severe form of diabetes, occurs between reducing sugar and proteins which results in the formation of advanced glycation end products (AGEs) that leads to the other complicated secondary disorders. In this context, Mangifera indica (Mango), Syzygium cumini (Jambul), Vitis vinifera (Grapes), Citrus sinensis (Orange), Artocarpus heterophyllus (Jackfruit), Manilkara zapota (Sapodilla) seeds were evaluated for their antiglyation activity. Attempts were made to isolate the polyphenols in the seeds that have recorded the maximum activity. Methods Different extraction methods (shake flask, centrifugation and pressurized hot water) using various extractants (organic solvents, hot water and pressurized hot water) were adopted to investigate the in vitro antiglycation activity. Central composite (CCD) design based Response Surface Methodology (RSM) was espoused to optimize the extraction process of polyphenols from the fruit seeds that have recorded poor antiglycation activity. The PTLC analysis was performed to isolate the polyphenols (Flavonoids and phenolic acids) and LC-PDA-MS analysis was done for structure prediction. Results Pressurized hot water extraction of Artocarpus heterophyllus (87.52%) and Citrus sinensis seeds (74.79%) was found to possess high and low antiglycation activity, respectively. The RSM mediated optimization process adopted for the Citrus sinensis seeds have revealed that 1:15 solvent ratio (hexane to heptane), 6 minutes and 1:20 solid to liquid ratio as the optimal conditions for the extraction of polyphenols with a maximum antiglycation activity (89.79%). The LC-PDA-MS analysis of preparative thin layer chromatography (PTLC) eluates of Artocarpus heterophyllus seed has showed the presence of compounds like quercetin (301.2), 4-hydroxy phenyl acetic acid (149.0), rhamnosyl-di-hexosyl quercetin sulphate (857.6), quercetin-3-O-xyloside (428.2), rutin (613.4), diosmetin (298.1) and luteolin (283.0). Conclusion The Artocarpus heterophyllus was observed to possess a significant antiglycation activity and the activity of Citrus sinensis was improved after the optimization process, which proved that both the seeds may be used as a traditional medicine in the management of chronic diabetes mellitus.
机译:背景技术糖尿病是一种慢性代谢性疾病,其特征在于血糖水平升高。它已成为21世纪的流行病,在印度,糖尿病患者人数居世界首位。非酶糖基化(糖基化)是糖尿病的严重形式,发生在还原糖和蛋白质之间,导致形成高级糖基化终产物(AGEs),从而导致其他复杂的继发性疾病。在这种情况下,评估了芒果(Mangifera indica),芒果(Syzygium cumini)(Jambul),葡萄(Vitis vinifera)(Grapes),柑橘(Citrus sinensis(Orange)),面包果(Artocarpus heterophyllus(Jackfruit)),马尼尔卡拉zapota(Sapodilla)种子的抗糖化活性。试图分离出已记录到最大活性的种子中的多酚。方法采用多种萃取剂(有机溶剂,热水和加压热水)采用不同的萃取方法(摇瓶,离心和加压热水)研究其体外抗糖化活性。支持基于中央复合材料(CCD)设计的响应表面方法(RSM),以优化抗糖化活性较差的水果种子中多酚的提取工艺。进行PTLC分析以分离多酚(类黄酮和酚酸),并进行LC-PDA-MS分析以预测结构。结果加压热水提取的面包果皮(57.52%)和柑橘类种子(74.79%)具有较高的抗糖化活性和较低的抗糖化活性。 RSM介导的柑桔种子优化工艺表明,1:15的溶剂比(己烷:庚烷),6分钟和1:20的固液比是提取具有最大抗糖化活性的多酚的最佳条件( 89.79%)。面包果种子制备薄层色谱(PTLC)洗脱液的LC-PDA-MS分析显示,存在槲皮素(301.2),4-羟基苯基乙酸(149.0),鼠李糖基-二-己基槲皮素硫酸盐( 857.6),槲皮素-3-O-木糖苷(428.2),芦丁(613.4),薯os皂素(298.1)和木犀草素(283.0)。结论优化工艺后,发现异皮面包果具有显着的抗糖化活性,提高了柑橘的活性,证明这两种种子均可作为治疗慢性糖尿病的传统药物。

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