医用静电纺高分子纳米纤维的基础材料研究进展

L. Manea, L. Hristian, A. Leon, A. Popa
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引用次数: 24

摘要

目前电纺高分子纳米纤维最重要的应用是在生物医学领域。从生物学的角度来看,人体几乎所有的组织和器官都由纳米纤维结构组成。这些例子包括骨骼、牙本质、软骨、肌腱和皮肤。所有这些都是通过不同的纤维结构来表征的,在纳米尺度上分层组织。静电纺丝是一种纳米技术,除了自组装和相分离技术之外,还可以获得这种细胞培养结构。用于生产静电纺纳米纤维的基本材料可以是天然的,也可以是合成的,具有聚合物、陶瓷或复合材料的性质。这些材料的选择取决于要再生的组织的性质和结构,即:对于光滑组织的再生,需要通过静电纺丝聚合物基础材料进行处理,而为了获得硬组织再生的支持,必须主要使用陶瓷材料或复合结构,这些材料允许将生物活性物质嵌入基质的不同区域。这项工作介绍了最近关于获得静电纺聚合物纳米纤维的基本材料的研究,以及在医学生物工程应用中生产和实施这些纳米纤维的实际可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent advances of basic materials to obtain electrospun polymeric nanofibers for medical applications
The most important applications of electrospun polymeric nanofibers are by far those from biomedical field. From the biological point of view, almost all the human tissues and organs consist of nanofibroas structures. The examples include the bone, dentine, cartilage, tendons and skin. All these are characterized through different fibrous structures, hierarchically organized at nanometer scale. Electrospinning represents one of the nanotechnologies that permit to obtain such structures for cell cultures, besides other technologies, such as selfassembling and phase separation technologies. The basic materials used to produce electrospun nanofibers can be natural or synthetic, having polymeric, ceramic or composite nature. These materials are selected depending of the nature and structure of the tissue meant to be regenerated, namely: for the regeneration of smooth tissues regeneration one needs to process through electrospinning polymeric basic materials, while in order to obtain the supports for the regeneration of hard tissues one must mainly use ceramic materials or composite structures that permit imbedding the bioactive substances in distinctive zones of the matrix. This work presents recent studies concerning basic materials used to obtain electrospun polymeric nanofibers, and real possibilities to produce and implement these nanofibers in medical bioengineering applications.
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