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通过在双水相体系中进行离子交联可控生成尖刺状微粒。

Controlled generation of spiky microparticles by ionic cross-linking within an aqueous two-phase system.

作者信息

Abbasi Niki, Navi Maryam, Nunes Janine K, Tsai Scott S H

机构信息

Department of Mechanical and Industrial Engineering, Ryerson University, Toronto, Canada.

出版信息

Soft Matter. 2019 Apr 17;15(16):3301-3306. doi: 10.1039/c8sm02315h.

Abstract

Microparticles are used in a variety of different fields, such as drug delivery. Recently, non-spherical microparticle generation has become desirable. The high surface-to-volume ratio of non-spherical microparticles allows for enhanced targeting, and attachment to cells and tissue. Current non-spherical microparticle generation techniques require complicated setup, and utilizing natural micrograins, such as pollen grains, as non-spherical delivery vehicles, requires extensive post-processing. Here, we describe a unique and facile chemical synthesis approach, for controlled generation of pollen-like microparticles, based on ionic cross-linking of alginate and calcium chloride (CaCl2), within an all-biocompatible aqueous two-phase system (ATPS) of dextran (DEX) and polyethylene glycol (PEG). Our technique controls the length of spikes that emerge on the surface of these microparticles. We anticipate that these pollen-like spiky microparticles may be used as drug delivery vehicles, and this new chemical synthesis approach may be used for generating other biomaterials.

摘要

微粒被应用于各种不同领域,如药物递送。近来,非球形微粒的生成变得很有必要。非球形微粒的高比表面积有利于增强靶向性以及与细胞和组织的附着。当前的非球形微粒生成技术需要复杂的设置,并且利用天然微颗粒(如花粉粒)作为非球形递送载体需要大量的后处理。在此,我们描述了一种独特且简便的化学合成方法,用于在葡聚糖(DEX)和聚乙二醇(PEG)的全生物相容性水两相体系(ATPS)内,基于海藻酸盐与氯化钙(CaCl2)的离子交联,可控地生成花粉状微粒。我们的技术可控制这些微粒表面出现的刺的长度。我们预计这些花粉状带刺微粒可用作药物递送载体,并且这种新的化学合成方法可用于生成其他生物材料。

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