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首页> 外文期刊>Drug delivery. >A novel dendrimer-based complex co-modified with cyclic RGD hexapeptide and penetratin for noninvasive targeting and penetration of the ocular posterior segment
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A novel dendrimer-based complex co-modified with cyclic RGD hexapeptide and penetratin for noninvasive targeting and penetration of the ocular posterior segment

机译:一种新型的基于树状聚合物的复合物,与环状RGD六肽和渗透素共修饰,可无创地靶向和穿透眼后段

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摘要

Noninvasive drug delivery is a promising treatment strategy for ocular posterior segment diseases. Many physiological and anatomical barriers of the eye considerably restrict effective diffusion of therapeutics to the target site. To overcome this problem, a novel cyclic arginine-glycine-aspartate (RGD) hexapeptide and penetratin (PEN) co-modified PEGylation polyamidoamine (PAMAM) was designed as a nanocarriers (NCs), and its penetrating and targeting abilities were evaluated. In this study, we show that PAMAM-PEG (reaction molar ratio 1:32) has a relatively high grafting efficiency and low cytotoxicity. The particle size was within the range of 15-20?nm after modification with RGD and PEN. Cellular uptake of RGD-modified NCs involved significant affinity toward integrin αvβ3, which validated the targeting of neovasculature. An in vitro permeation study indicated that modification with PEN significantly improved penetration of the NCs (1.5 times higher). In vivo ocular distribution studies showed that, the NCs (modified with PEN or co-modified with RGD and PEN) were highly distributed in the cornea and retina (p??.001), and modification extended retinal retention time for more than 12?h. Therefore, these NCs appear to be a promising noninvasive ocular drug delivery system for ocular posterior segment diseases.
机译:无创药物递送是眼后段疾病的有前途的治疗策略。眼睛的许多生理和解剖学障碍极大地限制了治疗药物向目标部位的有效扩散。为了克服这个问题,将新型的环状精氨酸-甘氨酸-天冬氨酸(RGD)六肽和戊二素(PEN)共修饰的聚乙二醇化聚酰胺酰胺(PAMAM)设计为纳米载体(NCs),并对其穿透力和靶向能力进行了评估。在这项研究中,我们表明PAMAM-PEG(反应摩尔比为1:32)具有相对较高的接枝效率和较低的细胞毒性。用RGD和PEN改性后,粒径在15-20nm范围内。 RGD修饰的NCs的细胞摄取涉及对整联蛋白αvβ3的显着亲和力,从而验证了新脉管系统的靶向性。一项体外渗透研究表明,用PEN进行修饰可显着提高NC的渗透率(提高1.5倍)。体内眼部分布研究表明,NCs(经PEN修饰或经RGD和PEN共同修饰)在角膜和视网膜中高度分布(p <0.001),并且修饰将视网膜保留时间延长了12倍以上?H。因此,这些NCs似乎是用于眼后段疾病的有希望的非侵入性眼用药物递送系统。

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