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穿膜肽,一种用于非侵入性眼内给药的潜在强效吸收促进剂。

Penetratin, a potentially powerful absorption enhancer for noninvasive intraocular drug delivery.

作者信息

Liu Chang, Tai Lingyu, Zhang Wenjian, Wei Gang, Pan Weisan, Lu Weiyue

机构信息

Key Laboratory of Smart Drug Delivery, Ministry of Education; Department of Pharmaceutics, School of Pharmacy, Fudan University , Shanghai 201203, China.

出版信息

Mol Pharm. 2014 Apr 7;11(4):1218-27. doi: 10.1021/mp400681n. Epub 2014 Feb 24.

Abstract

Intraocular drug delivery is extraordinarily hampered by the impermeability of defensive barriers of the eye. In this study, the ocular permeability of fluorophore-labeled cell-penetrating peptides (CPPs), including penetratin, TAT, low molecular weight protamine, and poly(arginine)8, was investigated based on multilevel evaluations. The human conjunctival epithelial cell (NHC) was exposed to various CPPs to determine the cytotoxicity and cellular uptake. Ex vivo studies with rabbit cornea were performed using side-by-side diffusion chambers to evaluate the apparent permeability coefficients and acute tissue tolerance of the CPP candidates. Among all examined CPPs, penetratin shows an outstanding cellular uptake, by increasing more than 16 and 25 times at low and high concentrations, compared to the control peptide poly(serine)8 respectively. Additionally, the permeability of penetratin across excised cornea is 87.5 times higher in comparison with poly(serine)8. More importantly, after instilled in the conjunctival sac of rat eyes, fluorophore-labeled penetratin displayed a rapid and wide distribution in both anterior and posterior segment of the eye, and could be observed in the corneal epithelium and retina lasting for at least 6 h. Interestingly, penetratin showed the lowest ocular cell and tissue toxicities among all examined CPPs. The high ocular permeability of penetratin could be attributed to its amphipathicity and spatial conformation determined by circular dichroism. Taken together, these data demonstrate that penetratin is potentially useful as an absorption enhancer for intraocular drug delivery.

摘要

眼部防御屏障的不渗透性极大地阻碍了眼内给药。在本研究中,基于多层面评估,对包括穿膜肽、TAT、低分子量鱼精蛋白和聚精氨酸8在内的荧光团标记的细胞穿透肽(CPPs)的眼部渗透性进行了研究。将人结膜上皮细胞(NHC)暴露于各种CPPs中,以确定细胞毒性和细胞摄取情况。使用并排扩散室对兔角膜进行离体研究,以评估CPP候选物的表观渗透系数和急性组织耐受性。在所有检测的CPPs中,穿膜肽表现出出色的细胞摄取能力,与对照肽聚丝氨酸8相比,在低浓度和高浓度下分别增加了16倍和25倍以上。此外,穿膜肽在离体角膜上的渗透率比聚丝氨酸8高87.5倍。更重要的是,荧光团标记的穿膜肽滴入大鼠眼结膜囊后,在眼的前段和后段均呈现快速且广泛的分布,并且在角膜上皮和视网膜中至少持续6小时均可观察到。有趣的是,穿膜肽在所有检测的CPPs中表现出最低的眼部细胞和组织毒性。穿膜肽的高眼部渗透性可归因于其两亲性和由圆二色性确定的空间构象。综上所述,这些数据表明穿膜肽作为眼内给药的吸收增强剂具有潜在的应用价值。

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