当前位置: 首页 > 文章 > 高效阴离子交换-脉冲安培检测壳寡糖在体外非翻转肠囊模型中的吸收 西北农业学报 2013,22 (1) 6-11
Position: Home > Articles > Detection of Chitooligosaccharides Absorption in Non-everted Rat Intestinal Sacs Model in vitro with High Performance Anionexchange Chromatography with Pulsed Amperometric Detection Acta Agriculturae Boreali-occidentalis Sinica 2013,22 (1) 6-11

高效阴离子交换-脉冲安培检测壳寡糖在体外非翻转肠囊模型中的吸收

作  者:
魏鹏;赵小明;许青松;谭成玉;白雪芳;杜昱光
单  位:
中国科学院大连化学物理研究所;大连海洋大学
关键词:
壳寡糖;吸收;非翻转肠囊法;高效阴离子交换色谱;脉冲安培检测
摘  要:
建立高效阴离子交换色谱结合脉冲安培检测器(HPAEC-PAD)检测非翻转肠囊中壳寡糖吸收的方法。结果表明,以RCX-10阴离子交换柱为分离柱,通过NaOH溶液的梯度淋洗,壳一糖~壳六糖的检出限为0.8~4.0mg/L(进样体积100μL,峰面积定量),该方法的相对标准偏差为1.3%~6.6%。体外非翻转大鼠肠囊模型中,壳二糖、壳三糖以及壳四糖在十二指肠、空肠以及回肠中均有良好的吸收(Papp>1×10-5 cm/s),在结肠中仅能部分吸收(Papp<3×10-6 cm/s)。壳寡糖吸收速率随聚合度的升高而降低,壳寡糖吸收符合一级吸收动力学特征,推测壳寡糖在体内的吸收为被动过程。
译  名:
Detection of Chitooligosaccharides Absorption in Non-everted Rat Intestinal Sacs Model in vitro with High Performance Anionexchange Chromatography with Pulsed Amperometric Detection
作  者:
WEI Peng1,2,ZHAO Xiaoming1,XU Qingsong1, TAN Chengyu3,BAI Xuefang1 and DU Yuguang1(1.Dalian Institute of Chemical Physics,Chinese Academy of Sciences,Dalian Liaoning 116021,China;2.Graduate School of Chinese Academy of Sciences,Beijing 110864,China;3.Dalian Ocean University,Dalian Liaoning 116023,China)
关键词:
Chitooligosaccharides;Absorption;Non-everted intestinal sac;HPAEC;PAD
摘  要:
A method for determination of chitooligosaccharides(COS) in non-everted intestinal sacs model by high performance anion-exchange chromatography with pulsed amperometric detection(HPAEC-PAD) was established.The chromatographic separation was established on a Hamilton RCX-10 anion exchange column using NaOH gradient elution.Detection limits of 0.8-4.0 mg/L(100 μL injection volume) were achieved under optimized conditions.RSD of the peak area for COS was 1.3%-6.6%.The results demonstrated chitobiose,chitotriose and chitotetraose could be well absorbed in duodenum,jejunum and ileum with high apparent permeability coefficients(Papp>1×10-5cm/s),and the absorption of COS in colon was low(Papp<3×10-6cm/s) in non-everted intestinal sacs in vitro.It was also proven that as polymerization degree of COS increased,the absorption rate decreased.The mechanism of COS absorption was in a passive absorption manner and followed the first-order absorption kinetics.

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