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蛋白质、寡核苷酸和右旋糖酐透过眼组织的研究:实验研究及文献综述

Permeation of proteins, oligonucleotide and dextrans across ocular tissues: experimental studies and a literature update.

作者信息

Pescina Silvia, Govoni Paolo, Antopolsky Maxim, Murtomäki Lasse, Padula Cristina, Santi Patrizia, Nicoli Sara

机构信息

Department of Pharmacy, University of Parma, Parma, 43124, Italy.

Department of Biomedical, Biotechnological and Translational Sciences, University of Parma, Parma, 43126, Italy.

出版信息

J Pharm Sci. 2015 Jul;104(7):2190-202. doi: 10.1002/jps.24465. Epub 2015 May 13.

Abstract

Proteins and oligonucleotides represent powerful tools for the treatment of several ocular diseases, affecting both anterior and posterior eye segments. Despite the potential of these compounds, their administration remains a challenge. The last years have seen a growing interest for the noninvasive administration of macromolecular drugs, but still there is only little information of their permeability across the different ocular barriers. The aim of this work was to evaluate the permeation of macromolecules of different size, shape and charge across porcine ocular tissues such as the isolated sclera, the choroid Bruch's membrane and the cornea, both intact and de-epitelialized. Permeants used were two proteins (albumin and cytochrome C), an oligonucleotide, two dextrans (4 and 40 kDa) and a monoclonal antibody (bevacizumab). Obtained data and its comparison with the literature highlight the difficulties in predicting the behavior of macromolecules based on their physicochemical properties, because the interplay between the charge, molecular radius and conformation prevent their analysis separately. However, the data can be of great help for a rough evaluation of the feasibility of a noninvasive administration and for building computational models to improve understanding of the interplay among static, dynamic and metabolic barriers in the delivery of macromolecules to the eye.

摘要

蛋白质和寡核苷酸是治疗多种眼部疾病的有力工具,可影响眼前段和眼后段。尽管这些化合物具有潜力,但其给药仍是一项挑战。近年来,人们对大分子药物的非侵入性给药越来越感兴趣,但关于它们穿过不同眼部屏障的渗透性的信息仍然很少。这项工作的目的是评估不同大小、形状和电荷的大分子在猪眼组织(如分离的巩膜、脉络膜 Bruch 膜和完整及去上皮化的角膜)中的渗透情况。所使用的渗透剂有两种蛋白质(白蛋白和细胞色素 C)、一种寡核苷酸、两种葡聚糖(4 和 40 kDa)和一种单克隆抗体(贝伐单抗)。获得的数据及其与文献的比较突出了基于大分子的物理化学性质预测其行为的困难,因为电荷、分子半径和构象之间的相互作用使得无法单独对其进行分析。然而,这些数据对于粗略评估非侵入性给药的可行性以及构建计算模型以更好地理解大分子向眼内递送过程中静态、动态和代谢屏障之间的相互作用可能会有很大帮助。

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