Effects of Size and Surface Charge of Polymeric Nanoparticles on in Vitro and in Vivo Applications

Sams M A Sadat, S. Jahan, A. Haddadi
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引用次数: 123

Abstract

Biodegradable polymeric materials are the most common carriers for use in drug delivery systems. With this trend, newer drug delivery systems using targeted and controlled release polymeric nanoparticles (NPs) are being developed to manipulate their navigation in complex in vivo environment. However, a clear understanding of the interactions between biological systems and these nanoparticulates is still unexplored. Different studies have been performed to correlate the physicochemical properties of polymeric NPs with the biological responses. Size and surface charge are the two fundamental physicochemical properties that provide a key direction to design an effective NP formulation. In this critical review, our goal is to provide a brief overview on the influences of size and surface charge of different polymeric NPs in vitro and to highlight the challenges involved with in vivo trials.
高分子纳米颗粒的尺寸和表面电荷对体外和体内应用的影响
可生物降解高分子材料是药物输送系统中最常用的载体。随着这一趋势的发展,使用靶向和控释聚合物纳米颗粒(NPs)的新型药物递送系统正在开发中,以操纵其在复杂的体内环境中的导航。然而,对生物系统与这些纳米颗粒之间的相互作用的清晰理解仍未得到探索。已经进行了不同的研究,以将聚合物NPs的物理化学性质与生物反应联系起来。尺寸和表面电荷是两个基本的物理化学性质,为设计有效的NP配方提供了关键方向。在这篇重要的综述中,我们的目标是简要概述不同聚合物NPs在体外的大小和表面电荷的影响,并强调体内试验所涉及的挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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