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朝着设计微粒子迈进:各向异性、形状和尺寸的同步控制。

Towards designer microparticles: simultaneous control of anisotropy, shape, and size.

机构信息

Macromolecular Science and Engineering Program, University of Michigan, Ann Arbor, MI 48109, USA.

出版信息

Small. 2010 Feb 5;6(3):404-11. doi: 10.1002/smll.200901306.

Abstract

Biodegradable, compositionally anisotropic microparticles with two distinct compartments that exhibit controlled shapes and sizes are fabricated. These multifunctional particles are prepared by electrohydrodynamic co-jetting of poly(lactide-co-glycolide) polymer solutions. By varying different solution and process parameters, namely, concentration and flow rate, a variety of non-equilibrium bicompartmental shapes, such as discoid and rod-shaped microparticles are produced in high yields. Optimization of jetting parameters, combined with filtration, results in near-perfect, bicompartmental spherical particles in the size range of 3-5 microm. Simultaneous control over anisotropy, size, shape, and surface structure provides an opportunity to create truly multifunctional microparticles for a variety of biological applications, such as drug delivery, diagnostic assays, and theranostics.

摘要

可生物降解的、组成各向异性的微颗粒,具有两个截然不同的隔室,能够展现出可控的形状和尺寸,被制备出来了。这些多功能颗粒是通过聚(丙交酯-共-乙交酯)聚合物溶液的电动力学共喷射来制备的。通过改变不同的溶液和工艺参数,即浓度和流速,可以以高产率产生各种非平衡双隔室形状,例如盘状和棒状微颗粒。喷射参数的优化,结合过滤,可以得到近乎完美的、双隔室的、球形的、尺寸在 3-5 微米范围内的微颗粒。对各向异性、尺寸、形状和表面结构的同步控制为各种生物应用创造真正多功能微颗粒提供了机会,例如药物输送、诊断分析和治疗。

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