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首页> 外文期刊>Biological & pharmaceutical bulletin >Noncovalent Strategy with Cell-Penetrating Peptides to Facilitate the Brain Delivery of Insulin through the Blood-Brain Barrier
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Noncovalent Strategy with Cell-Penetrating Peptides to Facilitate the Brain Delivery of Insulin through the Blood-Brain Barrier

机译:具有细胞穿透肽的非共价策略,以促进胰岛素通过血脑屏障的脑递送

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摘要

To overcome the difficulty in delivery of biopharmaceuticals such as peptides and proteins to the brain, several approaches combining the ligands and antibodies targeting the blood-brain barrier (BBB) have been tried. However, these are inefficient in terms of their permeability through the BBB and structural modification of bioactive drugs. In the present study, we therefore examined the usefulness of a noncovalent method using the cell-penetrating peptides (CPPs) such as octaarginine (R8) as a suitable brain delivery strategy for biopharmaceuticals. A safety examination using microvascular endothelial model bEnd.3 cells clarified that R8 was the safest among the CPPs tested in this study. The cellular uptake study demonstrated that coincubation with R8 enhanced the uptake of model peptide drug insulin by bEnd.3 cells in a concentration-dependent and a temperature-independent manner. Furthermore, an in vivo study with rats showed that the accumulation of insulin in the deeper region of the brain, i.e., hippocampus, significantly increased after the intravenous coadministration of insulin with n-R8 without altering the insulin disposition in plasma. Thus, the present study provided the first evidence suggesting that the noncovalent method with CPPs is one of the strategic options for brain delivery of biopharmaceuticals via intravenous injection.
机译:为了克服难以向大脑递送肽和蛋白质的生物制药等困难,已经尝试了组合配体和靶向血脑屏障(BBB)的配体和抗体的几种方法。然而,这些通过BBB通过BBB和生物活性药物的结构改性来效率低下。因此,在本研究中,我们研究了使用诸如Octaarginine(R8)的细胞穿透肽(CPP)作为生物药物的合适脑传递策略的非共价法的有用性。使用微血管内皮模型弯曲的安全检查澄清了R8是本研究中测试的CPP中最安全的。蜂窝摄取研究表明,与R8的辛酸相加增强了通过浓度依赖性的弯曲肽肽药物胰岛素的摄取和浓度依赖性的方式。此外,与大鼠的体内研究表明,在脑静脉注射胰岛素的静脉注射胰岛素的情况下,在脑内脑的更深区段中的胰岛素的积累显着增加,但在不改变血浆中的胰岛素置位,显着增加。因此,本研究提供了第一种证据表明,具有CPP的非共价方法是通过静脉注射注射脑脑递送生物制药的战略选择之一。

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