Ma Ting-ting, He Rui, Gong Mu-xin, Xu Yong-song, Li Jing, Zhai Yong-song, Wan Guang
Zhongguo Zhong Yao Za Zhi. 2015 Nov;40(21):4268-74.
To study the compatible mechanisms and compatible proportion of Shaoyao Gancao decoction, the intestinal absorption of main ingredients in Shaoyao Gancao decoction SG11 (Baishao-Zhigancao 1: 1) , SG31 (Baishao-Zhigancao 3: 1), Baishao water decoction S and Zhigancao (G) were investigated and compared using in vitro everted intestinal sac model and in situ single pass intestinal perfusion (SPIP) model. The concentration of paeoniflorin (PF), liquiritin (LQ) and mono-ammonium glycyrrhizinate (GL) in test samples and samples of intestinal sac and intestinal perfusion was determined by HPLC. The intestinal absorptive amount and absorption parameters were calculated. Results showed that in the everted intestinal sac model, three ingredients could be absorbed by duodenum, jejunum and ileum, and the absorption in the jejunum was best for all 3 ingredients. The absorption rate of three ingredients in SG11 was significantly higher than that in single decoction (P < 0.05), but had no significant difference compared with SG31. In SPIP model, the absorption rate constant K(a), the apparent absorption coefficient P(app) and the absorption rate of three ingredients in SG11 were significantly higher than those in single decoction. Parameters of PF and GL in SG11 were significantly higher than those in SG31, but had no differences of LQ. It proved that the compatibility of Baishao and Zhigancao could improve the intestinal absorption of PF, LQ and GL. The absorption of each ingredient in SG11 was better than that in SG31.
为研究芍药甘草汤的配伍机制及配伍比例,采用体外翻肠囊模型和原位单向肠灌流(SPIP)模型,考察并比较了芍药甘草汤SG11(白芍-炙甘草1:1)、SG31(白芍-炙甘草3:1)、白芍水煎液S及炙甘草(G)中主要成分的肠吸收情况。用高效液相色谱法测定受试样品及肠囊、肠灌流样品中芍药苷(PF)、甘草苷(LQ)和甘草酸单铵盐(GL)的浓度,计算肠吸收量及吸收参数。结果显示,在翻肠囊模型中,3种成分在十二指肠、空肠和回肠均可被吸收,且3种成分在空肠的吸收最佳。SG11中3种成分的吸收率显著高于单煎剂(P<0.05),但与SG31相比无显著差异。在SPIP模型中,SG11中3种成分的吸收速率常数K(a)、表观吸收系数P(app)及吸收率均显著高于单煎剂。SG11中PF和GL的参数显著高于SG31,但LQ无差异。证明白芍与炙甘草配伍可提高PF、LQ和GL的肠吸收,且SG11中各成分的吸收优于SG31。