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Design of chitosan-based particle systems: A review of the physicochemical foundations for tailored properties

机译:基于壳聚糖的粒子系统设计:对量身定制物理化学基础的综述

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摘要

Chitosan-based particles are widely proposed as biocompatible drug delivery systems with mucoadhesive and permeation enhancing properties. However, strategies on how to modulate the intended biological responses are still scarce. Considering that particle properties affect the biological outcome, the rational design of the synthesis variables should be proposed to engineer drug delivery systems with improved biological performance. The purpose of this review is to establish a deeper understanding of possible correlations between these variables and the particle properties from theoretical and experimental perspectives. The fundamental physicochemical knowledge of chitosan-based polyelectrolyte complexation and surface modification is discussed focusing on chitosan-TPP, polyelectrolyte complexes, and chitosan-surface modified PLGA or lipid particles. A set of design considerations is proposed to enable future investigation in the development of chitosan particles with modulated properties. The approach presented here contributes to the rational design of chitosan-based particles that meet different requirements for biological activities.
机译:壳聚糖基颗粒被广泛提出作为具有粘膜粘附和渗透性的生物相容性药物递送系统。但是,关于如何调节预期生物反应的策略仍然是稀缺的。考虑到颗粒性能影响生物结果,应提出合成变量的合理设计,以改善生物学性能的工程药物递送系统。本综述的目的是建立深入了解这些变量与理论和实验视角之间的可能相关性。讨论了基于壳聚糖的聚电解质络合和表面改性的基本物理化学知识,聚焦在壳聚糖-TPP,聚电解质配合物和壳聚糖表面改性PLGA或脂质颗粒上。提出了一系列设计考虑因素,以便在具有调节性质的壳聚糖颗粒的开发中进行未来调查。这里提出的方法有助于壳聚糖的颗粒的合理设计,其符合生物活性的不同要求。

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