回肠
空肠
吸收(声学)
动力学
化学
十二指肠
体外
小肠
色谱法
生物化学
材料科学
内科学
医学
量子力学
物理
复合材料
作者
Ling Cheng,Bao-de Shen,Juanjuan Li,Ling Qiu,Gang Shen,Lihong Zhang,Jin Suk Han,Hai-Long Yuan
出处
期刊:China journal of Chinese materia medica
[China Journal of Chinese Materia Medica]
日期:2015-07-15
被引量:1
标识
DOI:10.4268/cjcmm20151435
摘要
To investigate the absorption kinetics of Cu B-SDC/PLC-MMs in rat different intestinal segments and compared with the absorption of Cu B suspension. The in vitro everted gut sacs model was established to study the absorption characteristics of Cu B-SDC/ PLC-MMs in rat duodenum, jejunum, ileum and colon, and the content of cucurbitacin B was detected by HPLC method, and the effects of concentrations on intestinal absorption were evaluated as well. The results showed that the absorption of Cu B-SDC/PLC-MMs was linearity at different intestine segment and different concentrations (R2 > 0.9), which was consistent with zero order rate process. The Ka of different intestine segments showed a concentration-dependent increasing along with the raised concentration of Cu B-SDC/ PLC-MMs, indicating that it was likely to be a mechanism of passive absorption. The best absorption site of Cu B-SDC/PLC-MMs was ileum, and its absorptions in different intestinal segments were superior to cucurbitacin B suspension. SDC/PLC-MMs could significantly enhance the intestinal absorption of cucurbitacin B, and the study of intestinal absorption kinetics of Cu B-SDC/PLC-MMs had gave a support to its further reasonable solidfication.
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