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首页> 外文期刊>Biomaterials >The use of polyion complex micelles to enhance the oral delivery of salmon calcitonin and transport mechanism across the intestinal epithelial barrier
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The use of polyion complex micelles to enhance the oral delivery of salmon calcitonin and transport mechanism across the intestinal epithelial barrier

机译:聚离子络合物胶束的使用可增强鲑鱼降钙素的口服传递和跨肠上皮屏障的转运机制

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The objective of the present study was to demonstrate the effect of polyanionic copolymer mPEG-grafted-alginic acid (mPEG- g-AA)-based polyion complex (PIC) micelles on enhancing the oral absorption of salmon calcitonin (sCT) in vivo and in vitro and identify the transepithelial transport mechanism of PIC micelles across the intestinal barrier. mPEG- g-AA was first successfully synthesized and characterized in cytotoxicity. The PIC micelles were approximately of 72 nm in diameter with a narrow distribution. The extremely significant enhancement of hypocalcemia efficacy of sCT-loaded PIC micelles in rats was evidenced by intraduodenal administration in comparison with sCT solution. The presence of mPEG-grafted-chitosan in PIC micelles had no favorable effect on this action in the referred content. In the Caco-2 transport studies, PIC micelles could significantly increase the permeability of sCT across Caco-2 monolayers without significantly affecting transepithelial electrical resistance values during the transport study. No evident alterations in the F-actin cytoskeleton were detected by confocal microscope observation following treatment of the cell monolayers with PIC micelles, which further certified the incapacity of PIC micelles to open the intercellular tight junctions. In addition, TEM observations showed that the intact PIC micelles were transported across the everted gut sac. These suggested that the transport of PIC micelles across Caco-2 cell monolayers involve a predominant transcytosis mechanism via endocytosis rather than paracellular pathway. Furthermore, PIC micelles were localized in both the cytoplasm and the nuclei observed by CLSM. Therefore, PIC micelles might be a potentially applicable tool for enhancing the oral absorption of cationic peptide and protein drugs.
机译:本研究的目的是证明基于聚阴离子共聚物mPEG接枝海藻酸(mPEG-g-AA)的聚离子复合物(PIC)胶束在体内和体外增强鲑鱼降钙素(sCT)的口服吸收作用。体外并确定PIC胶束跨肠屏障的跨上皮运输机制。 mPEG-g-AA首次成功合成并具有细胞毒性特征。 PIC胶束的直径约为72 nm,分布较窄。与sCT溶液相比,十二指肠内给药证明了sCT加载的PIC胶束在大鼠中的低血钙功效极显着增强。 PIC胶束中mPEG接枝的壳聚糖的存在对所提及的含量的此作用没有有利影响。在Caco-2运输研究中,PIC胶束可以显着提高sCT在Caco-2单层上的渗透性,而不会显着影响运输研究过程中的跨上皮电阻值。用PIC胶束处理细胞单层后,通过共聚焦显微镜观察未检测到F-肌动蛋白细胞骨架的明显变化,这进一步证明了PIC胶束无法打开细胞间的紧密连接。此外,TEM观察表明完整的PIC胶束跨过外翻的肠囊转运。这些表明,PIC胶束跨Caco-2细胞单层的转运主要通过内吞作用而不是通过旁细胞途径进行。此外,通过CLSM观察到PIC胶束位于细胞质和细胞核中。因此,PIC胶束可能是增强阳离子肽和蛋白质药物口服吸收的潜在适用工具。

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