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Application and Analysis of Biological Electrospray in Tissue Engineering

机译:生物电喷雾技术在组织工程中的应用与分析

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摘要

Nan-fiber scaffolds are suitable tools for tissue engineering. Electro spinning materials together with cells presents not adequate to obtain a high cellular zing tissue constructs as the shear force, tensile force, and other physical effects excited in the electro spinning process, which are harmful to cellular differentiation, development and function. However, this limitation has been overcome by a micro integration system of simultaneously bio-electro spraying human adipose stem cells (ASCs) and electro spinning Polyvinyl alcohol (PVA). Then it was compared to the single electro spinning nan-fiber scaffolds in relation to cell viability, which showed that the scaffolds by micro integration approach has a larger number of surviving cells and more suitable for cell growth and proliferation. In addition, the relationship between different parameters of biological electrospray (voltage, flow rate and distance of the needle from the collecting board) and droplet size of cell suspension was elucidated and the droplets with a near-mono distribution (<50um) could be generated to deposit a single living cell within a droplet. The association of bio-electro spraying with electro spinning (a scaffold preparation technique) has been demonstrated to be a promising and suitable tissue engineering approach in producing nan-fiber based three-dimensional (3-D) cell seeded scaffolds.
机译:Nan-fiber支架是用于组织工程的合适工具。电纺丝材料与细胞一起存在不足以获得高细胞斑纹组织构造,因为在电纺丝过程中激发的剪切力,拉伸力和其他物理效应有害于细胞分化,发育和功能。但是,通过同时生物电喷雾人类脂肪干细胞(ASC)和电纺丝聚乙烯醇(PVA)的微集成系统已克服了这一局限性。然后将其与单电纺丝纳米纤维支架的细胞存活率进行比较,这表明通过微整合方法的支架具有更多的存活细胞,更适合细胞生长和增殖。此外,阐明了生物电喷雾的不同参数(电压,流速和针距收集板的距离)与细胞悬浮液液滴大小之间的关系,并可以产生具有近单峰分布(<50um)的液滴。在小滴中沉积单个活细胞。已证明生物电喷涂与电纺丝(支架制备技术)的结合是生产基于纳米纤维的三维(3-D)细胞接种支架的一种有前途且合适的组织工程方法。

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