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Nanostructured Materials for Artificial Tissue Replacements

机译:用于人工组织替代的纳米结构材料

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摘要

This paper review current trends in applications of nanomaterials in tissue engineering. Nanomaterials applicable in this area can be divided into two groups: organic and inorganic. Organic nanomaterials are especially used for the preparation of highly porous scaffolds for cell cultivation and are represented by polymeric nanofibers. Inorganic nanomaterials are implemented as they stand or dispersed in matrices promoting their functional properties while preserving high level of biocompatibility. They are used in various forms (e.g., nano- particles, -tubes and -fibers)—and when forming the composites with organic matrices—are able to enhance many resulting properties (biologic, mechanical, electrical and/or antibacterial). For this reason, this contribution points especially to such type of composite nanomaterials. Basic information on classification, properties and application potential of single nanostructures, as well as complex scaffolds suitable for 3D tissues reconstruction is provided. Examples of practical usage of these structures are demonstrated on cartilage, bone, neural, cardiac and skin tissue regeneration and replacements. Nanomaterials open up new ways of treatments in almost all areas of current tissue regeneration, especially in tissue support or cell proliferation and growth. They significantly promote tissue rebuilding by direct replacement of damaged tissues.
机译:本文回顾了纳米材料在组织工程中的当前应用趋势。适用于该领域的纳米材料可分为两类:有机和无机。有机纳米材料尤其用于制备用于细胞培养的高度多孔的支架,并且以聚合物纳米纤维为代表。无机纳米材料可以按原样放置或分散在基质中,从而在保持高水平生物相容性的同时提高其功能特性。它们以各种形式使用(例如,纳米颗粒,-管和-纤维),并且在与有机基质形成复合材料时,能够增强许多最终的性能(生物学,机械,电和/或抗菌)。因此,这种贡献尤其指向这种类型的复合纳米材料。提供了有关单个纳米结构以及适用于3D组织重建的复杂支架的分类,性质和应用潜力的基本信息。这些结构在软骨,骨骼,神经,心脏和皮肤组织的再生和置换中得到了实际应用。纳米材料在当前组织再生的几乎所有领域,尤其是在组织支持或细胞增殖和生长方面,都开辟了新的治疗方法。它们通过直接替换受损组织来显着促进组织重建。

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