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静电纺丝基础:优化溶液和设备参数。

Electrospinning fundamentals: optimizing solution and apparatus parameters.

作者信息

Leach Michelle K, Feng Zhang-Qi, Tuck Samuel J, Corey Joseph M

机构信息

Department of Biomedical Engineering, University of Michigan, MI, USA.

出版信息

J Vis Exp. 2011 Jan 21(47):2494. doi: 10.3791/2494.

Abstract

Electrospun nanofiber scaffolds have been shown to accelerate the maturation, improve the growth, and direct the migration of cells in vitro. Electrospinning is a process in which a charged polymer jet is collected on a grounded collector; a rapidly rotating collector results in aligned nanofibers while stationary collectors result in randomly oriented fiber mats. The polymer jet is formed when an applied electrostatic charge overcomes the surface tension of the solution. There is a minimum concentration for a given polymer, termed the critical entanglement concentration, below which a stable jet cannot be achieved and no nanofibers will form - although nanoparticles may be achieved (electrospray). A stable jet has two domains, a streaming segment and a whipping segment. While the whipping jet is usually invisible to the naked eye, the streaming segment is often visible under appropriate lighting conditions. Observing the length, thickness, consistency and movement of the stream is useful to predict the alignment and morphology of the nanofibers being formed. A short, non-uniform, inconsistent, and/or oscillating stream is indicative of a variety of problems, including poor fiber alignment, beading, splattering, and curlicue or wavy patterns. The stream can be optimized by adjusting the composition of the solution and the configuration of the electrospinning apparatus, thus optimizing the alignment and morphology of the fibers being produced. In this protocol, we present a procedure for setting up a basic electrospinning apparatus, empirically approximating the critical entanglement concentration of a polymer solution and optimizing the electrospinning process. In addition, we discuss some common problems and troubleshooting techniques.

摘要

电纺纳米纤维支架已被证明可在体外加速细胞成熟、促进细胞生长并引导细胞迁移。静电纺丝是一种将带电聚合物射流收集在接地收集器上的过程;快速旋转的收集器会产生排列整齐的纳米纤维,而固定收集器则会产生随机取向的纤维毡。当施加的静电荷克服溶液的表面张力时,就会形成聚合物射流。对于给定的聚合物,存在一个最低浓度,称为临界缠结浓度,低于该浓度就无法形成稳定的射流,也不会形成纳米纤维——尽管可能会形成纳米颗粒(电喷雾)。稳定的射流有两个区域,一个是流动段,一个是鞭梢段。虽然鞭梢段射流通常肉眼不可见,但在适当的光照条件下,流动段通常是可见的。观察射流的长度、厚度、连贯性和运动情况,有助于预测正在形成的纳米纤维的排列和形态。短的、不均匀的、不一致的和/或振荡的射流表明存在各种问题,包括纤维排列不佳、串珠现象、飞溅以及卷曲或波浪状图案。可以通过调整溶液的成分和静电纺丝设备的配置来优化射流,从而优化所生产纤维的排列和形态。在本方案中,我们介绍了一种设置基本静电纺丝设备的程序,凭经验估算聚合物溶液的临界缠结浓度,并优化静电纺丝过程。此外,我们还讨论了一些常见问题及故障排除技术。

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