协助组织愈合的电纺丝膜制造

Madeeha Sadia, Norhidayu Muhamad Zain, Nurizzati Mohd Daud, Faizuan Abdullah, A. Chandio, I. A. Channa, S. A. Taqvi, Nik Ahmad Nizam Nik Malek, S. Saidin
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摘要

将纤维排列成三维(3D)复杂结构是构造一张膜,这取决于制造技术。纤维垫和支架已被用于各种应用,包括组织工程,它涉及纤维之间孔隙内细胞和组织的整合。由于纳米纤维在组织愈合方面的功效比微纤维突出,因此有几种技术被选择用于生产纳米纤维。在各种制备技术(拉伸法、模板合成法、温度诱导相分离法、分子自组装法和静电纺丝法)中,静电纺丝法因其易于操作、价格低廉、可大规模生产从几纳米到几微米的纤维而备受关注。研究人员采用了多种静电纺丝方法,包括混合/共静电纺丝、乳液、同轴、并排和三轴静电纺丝。在静电纺丝制备用于组织愈合的光滑纳米纤维时,需要调整湿度、温度、电压、流速、粘度、浓度、分子量、表面张力、电导率和溶剂挥发性等参数。纳米纤维形成的形态应该支持周围细胞和组织的大小和结构。此外,可降解高分子材料的种类也在稳定纳米纤维的形成中发挥作用。本文综述了纳米纤维的制备技术,以期对静电纺丝技术进行初步探索。
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Electrospun Membrane Fabrication in Assisting Tissues Healing
The arrangement of fibers into three-dimensional (3D) complex structure is constructing a sheet of membrane, depending on the fabrication technique. The fiber mats and scaffolds have been used in various applications including tissue engineering which involve the integration of cells and tissues within the pores between the fibers. There are several techniques that have been opted to produce specifically nanofibers as its efficacy in tissue healing is prominent compared to microfibers. Among the fabrication techniques (drawing, template synthesis, temperature-induced phase separation, molecular self-assembly, and electrospinning), electrospinning method has drawn attention due to their easy handling, inexpensive, and ability for membrane scale-up with the production of fibers ranging from few nanometers to several microns. Researchers have employed a variety of electrospinning methods, including blended/co-electrospinning, emulsion, coaxial, side-by-side, and triaxial electrospinning. In electrospinning smooth formation of nanofibers for tissue healing with less appearance of spray and beads, several parameters such as humidity, temperature, voltage, flow rate, viscosity, concentration, molecular weight, surface tension, conductivity, and solvent volatile need to be tailored. The morphology of nanofibers formation should support the size and structure of the surrounded cells and tissues. Besides, the types of degradable polymeric materials also play a role in the formation of stable nanofibers. This review paper aimed to provide information on the techniques to produce nanofibers, intended to the basic exploration of electrospinning.
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