薏苡仁成分治疗脾虚湿湿的机理研究。

Xiaochun Han, Xuming Ji, Haijun Zhao, Yanan Zhang, Guowei Liu, Yanfang Wang, Wenxiao Zhao, Shijun Wang
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引用次数: 12

摘要

背景:薏苡仁具有健脾、阻湿的作用。然而,尚不清楚哪种薏苡仁成分具有这些功能。以往的研究表明薏苡仁的主要成分是蛋白质、多糖、油脂和淀粉。本研究旨在探讨薏苡仁在脾虚湿湿(SDWD)大鼠模型中最有效的健脾成分,并研究薏苡仁对水运的调节作用。材料与方法:将所用大鼠分为(i)对照组、(ii)模型组、(iii)汤剂组、(iv)蛋白质组、(v)多糖组、(vi)油脂组、(vii)淀粉组。计算各组大鼠的尿量、饮水量和水负荷指数。采用Agilent 8*60K芯片进行基因表达分析。筛选与转运活性相关的差异mrna。采用qRT-PCR对mRNA微阵列进行验证。结果:各给药组均能降低SDWD大鼠的湿气。mRNA芯片对蛋白质组和多糖组水运调控均有显著影响,其中最显著的mRNA分别是Fabp6、Slc51a、Slc51b、Slc11a2、Slc4a10和AQP3。结论:蛋白质和多糖的组成对SDWD大鼠模型的水转运有显著的调节作用。贡献mRNA主要集中在Fabp、Slc和AQP家族。
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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MECHANISMS OF COIX SEED COMPOSITIONS IN THE TREATMENT OF SPLEEN DEFICIENCY AND WET DAMPNESS ZHENG.

Background: Coix seed has the functions of fortifying the spleen and inhibiting the dampness. However, it remains unclear which Coix seed compositions is responsible for these functions. Previous investigations have revealed that the main compositions of Coix seed are proteins, polysaccharides, oils and starches. The objectives of this study are to explore which is the most effective compositions in fortifying the spleen and examine how Coix seed works in regulating the water transport on the spleen deficiency and wet dampness (SDWD) rat model.

Materials and methods: The rats used were divided into (i) control group, (ii) model group, (iii) decoction group, (iv) protein group, (v) polysaccharide group, (vi) oil group and (vii) starch group. The urine volume, the drinking volume and the water loading index in each group were calculated. Agilent 8*60K array was used for microarray-based gene expression analysis. The differential mRNAs related to the transport activity were screened. qRT-PCR was used to validate the mRNA microarray.

Results: The results demonstrated that all treatment groups could decrease the dampness of SDWD rats. mRNA microarray had significant effect on the protein group and the polysaccharide group in regulating the water transport, among which the most significant mRNA was Fabp6, Slc51a, Slc51b, Slc11a2, Slc4a10 and AQP3 respectively.

Conclusion: The compositions of proteins and polysaccharides had the most significant effect in regulating the water transport of SDWD rat model. The contributing mRNA focused on Fabp, Slc and AQP family.

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