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Nonlinear estimation reveals a working mechanism of Xie-Xin decoction, a traditional Chinese combinatorial formula

机译:非线性估计揭示了泻心汤的工作机理,这是传统的中药配方

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Xie-Xin decoction (XXD) is a commonly used traditional Chinese combinatorial formula containing Rhei rhizome (rhizomes of Rheum officinale Baill; RR), Scutellariae radix (roots of Scutellaria baicalensis Georgi; SR) and Coptidis rhizoma (rhizomes of Coptis chinensis Franch; CR). In the present study, a central composite design (CCD) and the nonlinear estimation were adopted to reveal the changed regularity of anthraquinones and the working mechanism in Xie-Xin decoction. On the CCD experimental matrix, dosages of RR were fixed at 1 g, independent variables of CR and SR were set at the range of 0.01a€“0.99 g and pH values were set at 0.1a€“9.9. The dissolving-out quantity of the summed anthraquinones was selected as the dependent variable and measured by HPLC. The experimental data were fitted by using quadratic and cubic polynomial models, and surface plots were generated for further analyses. It showed that the cubic polynomial model with the R2 value of 0.9933 is more appropriate than the quadratic polynomial model (R2 = 0.8806) in explaining the relationship between factors and the response, in which CR and pH values contributed most to the changes of anthraquinones. Surface plots showed the interactive effects of CR and pH values: the responses were increased with the increase of CR when on the low pH values (namely acidic solution), while the responses were decreased with the increase of CR on the high pH values (namely alkaline solution). It is suggested that obtaining a high dissolving-out quantity of anthraquinones needs a stable pH condition during the process of decoction, which could be achieved when the combinatorial herbs of RR, CR and SR in XXD are used at an appropriate dosage ratio. The complete working mechanism remains to be further investigated by multidisciplinary cooperation from different perspectives.
机译:泻心汤(XXD)是一种常用的中药组合配方,包含大黄根茎(Rheum officinale Baill; RR),黄cut(Scutellaria baicalensis Georgi; SR)和黄连(Coptis chinensis Franch; )。本研究采用中心复合设计(CCD)和非线性估计的方法揭示了泻心汤中蒽醌的变化规律和作用机理。在CCD实验矩阵上,RR的剂量固定为1 g,CR和SR的自变量设置为0.01a-0.99 g,pH值设置为0.1a-9.9。选择总蒽醌的溶解量作为因变量,并通过HPLC测定。通过使用二次多项式和三次多项式模型拟合实验数据,并生成了表面图以进行进一步分析。结果表明,R2值为0.9933的三次多项式模型比二次多项式模型(R2 = 0.8806)更适合解释因子与响应之间的关系,其中CR和pH值对蒽醌的变化影响最大。表面图显示了CR和pH值的交互作用:在低pH值(即酸性溶液)下,响应随CR的增加而增加,而在高pH值(即酸性溶液)下,响应随CR的增加而减小。碱性溶液)。建议在煎煮过程中获得高溶解度的蒽醌需要稳定的pH条件,这可以通过以适当的剂量比例使用XXD中RR,CR和SR的组合草药来实现。完整的工作机制有待于不同角度的多学科合作进一步研究。

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