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Polyvinylidene fluoride nanocomposite scaffolds for cell culturing and their preparation

机译:用于细胞培养的聚偏二氟乙烯纳米复合支架及其制备

摘要

The present invention is poly to either maximize the beta phase containing exhibit piezoelectric properties after mixing with the carbon nanotubes to the polymer material, polyvinylidene fluoride exhibit piezoelectric properties manufacturing them directly to the film, and through a stretching and polarized processes or electrospinning vinylidene fluoride through the manufactured film stretching and polarization process then primarily by increasing the piezoelectric properties sikimeuroseo maximize the content on the beta exhibit piezoelectric properties as well as excellent in deposition and proliferative capacity of cells poly for physical performance is excellent cell culture vinylidene fluoride relates to a nanocomposite and a method of manufacturing the scaffold. The as yet, as the configuration is the deposition and proliferation ability of the scaffold are cells for cell culture of the present invention excellent that excellent also the physical performance of the piezoelectric properties and the scaffold, and can be easily coated on the inner wall of the cell culture vessel after the other film production no harmful chemical compounds in the human body to go through the process because š door, eliminating the need for post-processing and purification steps that the manufacturing process is simple.;
机译:本发明是聚的,以使与碳纳米管混合后的含β相的压电性能最大化,形成聚酰亚胺材料;聚偏二氟乙烯具有压电性能,可将它们直接制造到薄膜上;并通过拉伸和极化过程或电纺成偏二氟乙烯。人造膜的拉伸和极化过程随后主要通过增加压电性能来实现,使β上的含量最大化,表现出压电性能,以及出色的细胞沉积和增殖能力,聚对物理性能的优异表现。细胞培养偏二氟乙烯与纳米复合材料有关。一种制造支架的方法。迄今为止,由于支架的构型是沉积和增殖能力,因此本发明的细胞培养用细胞优异,其压电特性和支架的物理性能也优异,并且可以容易地涂覆在支架的内壁上。该细胞培养容器在其他膜生产后,由于没有门,因此在人体中没有有害的化学物质通过,从而消除了后处理和纯化步骤的需要,从而使制造过程简单。

著录项

  • 公开/公告号KR101688023B1

    专利类型

  • 公开/公告日2016-12-21

    原文格式PDF

  • 申请/专利权人 서울대학교산학협력단;

    申请/专利号KR20140091898

  • 发明设计人 서용석;

    申请日2014-07-21

  • 分类号A61L27/56;A61L27/08;A61L27/14;A61L27/44;C12M3;

  • 国家 KR

  • 入库时间 2022-08-21 13:28:27

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