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首页> 外文期刊>International Journal of Pharmaceutics >Role of the mucous/glycocalyx layers in insulin permeation across the rat ileal membrane.
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Role of the mucous/glycocalyx layers in insulin permeation across the rat ileal membrane.

机译:粘液/糖萼层在大鼠回肠膜中的胰岛素渗透中的作用。

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摘要

The contribution of mucous/glycocalyx layers, as a diffusional or enzymatic barrier, to the absorption of insulin was investigated in situ and in vitro studies using rats. To remove the mucous/glycocalyx layers, ileal segments were exposed to a hyaluronidase solution in situ. The removal of the layers was confirmed by transmission electron microscopy, and the safety of the hyaluronidase pretreatment was established based on light microscopy, a constant mucosal membrane electrical resistance and the absence of lactate dehydrogenase leakage. In the in situ loop absorption experiment, hyaluronidase pretreatment significantly increased the plasma insulin level accompanied by an obvious hypoglycemic response. In the in vitro transport experiment, the apparent permeability coefficient of insulin was significantly increased by the hyaluronidase pretreatment, whereas that of 4.4kDa fluorescein isothiocyanate-labeled dextran and of antipyrine, respective markers for passive para- and transcellular permeation, was unaffected. In the insulin degradation experiment in vitro, a significant amount of insulin was degraded in the compartment removed by hyaluronidase pretreatment. Thus, the mucous/glycocalyx layers functioned in insulin absorption as an enzymatic barrier and insignificantly affected diffusive absorption. In addition, co-administration of aprotinin, a protease inhibitor, further increased insulin absorption from ileum pretreated with hyaluronidase, implying the existence of another enzymatic barrier that influences insulin mucosal absorption.
机译:使用大鼠原位和体外研究了粘液/糖萼层作为扩散或酶促屏障对胰岛素吸收的贡献。为了去除粘液/糖萼层,将回肠段原位暴露于透明质酸酶溶液。通过透射电子显微镜确认了层的去除,并且基于光学显微镜,恒定的粘膜电阻和不存在乳酸脱氢酶渗漏,建立了透明质酸酶预处理的安全性。在原位环路吸收实验中,透明质酸酶预处理可显着提高血浆胰岛素水平,并伴有明显的降血糖反应。在体外转运实验中,透明质酸酶预处理显着增加了胰岛素的表观通透性系数,而4.4kDa异硫氰酸荧光素标记的右旋糖酐和安替比林的被动渗透性和跨细胞渗透性的相应标记均未受影响。在体外胰岛素降解实验中,通过透明质酸酶预处理去除的隔室中大量胰岛素被降解。因此,粘液/糖萼层在胰岛素吸收中起到酶屏障的作用,并且对扩散吸收的影响很小。另外,蛋白酶抑制剂抑酶肽的共同给药,进一步增加了从透明质酸酶预处理过的回肠中胰岛素的吸收,这意味着存在另一个影响胰岛素粘膜吸收的酶促屏障。

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