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首页> 外文期刊>International Journal of Pharmaceutics >The remarkable three-dimensional network structure of bacterial cellulose for tissue engineering applications
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The remarkable three-dimensional network structure of bacterial cellulose for tissue engineering applications

机译:用于组织工程应用的细菌纤维素的显着三维网络结构

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摘要

Cellulose is a natural homopolymer, composed of beta-1,4- anhydro-D-glucopyranose units. Unlike plant cellulose, bacterial cellulose (BC), obtained from species belonging to the genera of Acetobacter, Rhizobium, Agrobacterium, and Sarcina through various cultivation methods and techniques, is produced in its pure form. BC is produced in the form of gel-like, never dry sheet with tremendous mechanical properties. Containing up to 99% of water, BC hydrogel is considered biocompatible thus finding robust applications in the health industry. Moreover, BC three-dimensional structure closely resembles the extracellular matrix (ECM) of living tissue. In this review, we focus on the porous BC morphology particularly suited to host oxygen and nutrients thus providing conducive environment for cell growth and proliferation. The remarkable BC porous morphology makes this biological material a promising templet for the generation of 3D tissue culture and possibly for tissue-engineered scaffolds.
机译:纤维素是一种天然均聚物,由β-1,4-苯二羟基-D-吡喃葡萄葡萄糖单元组成。 与植物纤维素不同,通过各种培养方法和技术从属于Acetobacter,Rhizobium,Agrobacterium和Sarcina的物种中获得的细菌纤维素(BC),其纯形式产生。 BC以凝胶状的形式生产,从不具有具有巨大机械性能的干燥片。 含有高达99%的水,BC水凝胶被认为是生物相容性,从而在卫生行业找到了强大的应用。 此外,BC三维结构非常类似于活组织的细胞外基质(ECM)。 在本文中,我们专注于多孔BC形态,特别适用于宿主氧气和营养素,从而为细胞生长和增殖提供有利环境。 显着的BC多孔形态使得这种生物材料成为一代有前途的模板,用于产生3D组织培养,并且可能用于组织工程支架。

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