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肽介导的血脑屏障药物传递系统用于靶向脑肿瘤。

Peptide-mediated drug delivery across the blood-brain barrier for targeting brain tumors.

机构信息

a Research Center for Pharmaceutical Nanotechnology, Biomedicine Institute , Tabriz University of Medical Sciences , Tabriz , Iran.

b Department of Medicinal Chemistry, Faculty of Pharmacy , Urmia University of Medical Sciences , Urmia , Iran.

出版信息

Expert Opin Drug Deliv. 2019 Jun;16(6):583-605. doi: 10.1080/17425247.2019.1614911. Epub 2019 May 20.

Abstract

INTRODUCTION

Transportation of the nutrients and other substances from the blood to the brain is selectively controlled by the brain capillary endothelial cells that form a restrictive barrier, so-called blood-brain barrier (BBB). Currently, there is no unimpeachable approach to overcome the BBB obstructiveness because the existing options are either invasive or ineffective.

AREAS COVERED

This review delineates the biological impacts of BBB on brain drug delivery and targeting. The nanoscaled multifunctional shuttles armed with the targeting entities (e.g., antibodies and peptides) are discussed. Important insights are remarked into the combinatorial screening methodologies used for the identification of de novo peptides capable of crossing BBB and targeting the brain.

EXPERT OPINION

Depending on the physicochemical properties of small molecules and macromolecules, they may cross the BBB and get into the brain either through passive diffusion or active/facilitated transportation and transcytosis in a very selectively controlled manner. Phage-derived shuttle peptides can specifically be selected against BBB endocytic machinery and used in engineering novel peptide-drug conjugates (PDCs). Nanoscaled multitargeting delivery systems encompassing PDCs can overcome the BBB obstructiveness and deliver drugs specifically to diseased cells in the brain with trivial side effects.

摘要

简介

从血液向大脑输送营养物质和其他物质是由形成限制屏障的脑毛细血管内皮细胞选择性控制的,即所谓的血脑屏障(BBB)。目前,还没有一种无可挑剔的方法可以克服 BBB 的阻碍性,因为现有的方法要么具有侵入性,要么无效。

涵盖领域

本文概述了 BBB 对脑内药物输送和靶向的生物学影响。讨论了武装有靶向实体(如抗体和肽)的纳米级多功能穿梭物。对用于鉴定能够穿透 BBB 并靶向大脑的新型肽的组合筛选方法进行了重要的评价。

专家意见

根据小分子和大分子的物理化学性质,它们可以通过被动扩散或主动/促进运输和胞吞作用以非常选择性的方式穿过 BBB 并进入大脑。噬菌体衍生的穿梭肽可以针对 BBB 内吞机制进行特异性选择,并用于工程新型肽药物偶联物(PDC)。包含 PDC 的纳米级多靶向递药系统可以克服 BBB 的阻碍性,并以很小的副作用将药物特异性递送至大脑中的病变细胞。

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