首页> 美国卫生研究院文献>Pharmaceutics >Probing the Action of Permeation Enhancers Sodium Cholate and N-dodecyl-β-D-maltoside in a Porcine Jejunal Mucosal Explant System
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Probing the Action of Permeation Enhancers Sodium Cholate and N-dodecyl-β-D-maltoside in a Porcine Jejunal Mucosal Explant System

机译:探索渗透促进剂胆酸钠和N-十二烷基-β-D-麦芽糖苷在猪空肠黏膜外植体系统中的作用

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摘要

The small intestinal epithelium constitutes a major permeability barrier for the oral administration of therapeutic drugs with poor bioavailability, and permeation enhancers (PEs) are required to increase the paracellular and/or transcellular uptake of such drugs. Many PEs act as surfactants by perturbing cell membrane integrity and causing permeabilization by leakage or endocytosis. The aim of the present work was to study the action of sodium cholate (NaC) and N-dodecyl-β-D-maltoside (DDM), using a small intestinal mucosal explant system. At 2 mM, both NaC and DDM caused leakage into the enterocyte cytosol of the fluorescent probe Lucifer Yellow, but they also blocked the constitutive endocytotic pathway from the brush border. In addition, an increased paracellular passage of 3-kDa Texas Red Dextran into the lamina propria was observed. By electron microscopy, both PEs disrupted the hexagonal organization of microvilli of the brush border and led to the apical extrusion of vesicle-like and amorphous cell debris to the lumen. In conclusion, NaC and DDM acted in a multimodal way to increase the permeability of the jejunal epithelium both by paracellular and transcellular mechanisms. However, endocytosis, commonly thought to be an uptake mechanism that may be stimulated by PEs, was not involved in the transcellular process.
机译:小肠上皮构成口服给药的生物利用度较差的治疗药物的主要渗透屏障,并且需要渗透促进剂(PE)来增加此类药物的细胞旁和/或跨细胞摄取。许多PE通过扰动细胞膜完整性并通过渗漏或内吞作用引起透化作用而充当表面活性剂。本研究的目的是使用小肠粘膜外植体系统研究胆酸钠(NaC)和N-十二烷基-β-D-麦芽糖苷(DDM)的作用。在2 mM时,NaC和DDM都导致荧光探针Lucifer Yellow渗入肠细胞胞质,但它们也阻断了刷状边界的本构内吞途径。另外,观察到3-kDa德克萨斯红葡聚糖进入固有层的细胞旁通道增加。通过电子显微镜观察,两种PE均破坏了刷状缘微绒毛的六边形组织,并导致顶端囊泡状和无定形细胞碎片向腔内挤出。总之,NaC和DDM以多峰方式通过旁细胞和跨细胞机制增加空肠上皮的通透性。但是,内吞作用通常被认为是PE刺激的摄取机制,但并未参与跨细胞过程。

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