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Flexible Generation of Gradient Electrospinning Nanofibers Using a Microfluidic Assisted Approach

机译:Flexible Generation of Gradient Electrospinning Nanofibers Using a microfluidic assisted approach

摘要

The nanofiber surface modified with physical or chemical gradients is very useful in a wide range of areas including tissue engineering, regenerative medicine, drug screening, and biomaterial chemistry. In this work, we presented a novel and straightforward microfluidic assisted approach to produce electrospinning nanofibers containing gradients in different compositions, nanoparticles and biomolecule concentrations. The series of gradient nanofibers were mainly produced by using a two inlet microfluidic device in combination with an electrospinning nozzle on a 3-D controllable platform, which exhibited different functions and properties. The controlled nanofibers with incorporated biomolecule gradient were used for guiding the spatial differentiation in mesenchymal stem cells (MSCs). This established approach is very simple, and flexible to operate, which might find enormous potential for biology and tissue engineering applications.
机译:经物理或化学梯度改性的纳米纤维表面在包括组织工程,再生医学,药物筛选和生物材料化学在内的广泛领域中非常有用。在这项工作中,我们提出了一种新颖而直接的微流体辅助方法,以生产静电纺丝纳米纤维,其中包含不同组成,纳米颗粒和生物分子浓度的梯度。梯度纳米纤维的系列主要是通过在3-D可控平台上使用两个入口微流控设备与静电纺丝喷嘴相结合来生产的,它们具有不同的功能和特性。具有掺入的生物分子梯度的受控纳米纤维用于指导间充质干细胞(MSCs)的空间分化。这种既定的方法非常简单,并且操作灵活,在生物学和组织工程应用中可能会发现巨大的潜力。

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