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EFFECTS OF SCAFFOLD DESIGN PARAMETERS AND LOCAL ENVIRONMENT ON BIOPOLYMER SCAFFOLD DEGRADATION

机译:脚手架设计参数与局域环境对生物聚合物支架降解的影响

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Biodegradable polymers have been extensively used in tissue engineering as temporary porous scaffolding structures to host or guide tissue/organ regeneration. The advantage lies in that the polymers degrade away harmlessly in the body. One key requirement in tissue scaffold design is to control the scaffolding degradation and erosion that synchronize the new cell/tissue growth. The degradation and/or erosion for biodegradable polymers are influenced by a multitude of factors. This paper presents an in vitro experimental study to examine effects of scaffold design parameters and local environment on the degradation rate of biopolymer scaffolds. Parameters considered are scaffold pore size, material composition and cellular activity.
机译:可生物降解的聚合物已被广泛用于组织工程中作为宿主或引导组织/器官再生的临时多孔支架结构。 优点在于,聚合物在体内无害地降解。 组织支架设计的一个关键要求是控制与新细胞/组织生长同步的脚手架降解和侵蚀。 可生物降解聚合物的降解和/或腐蚀受到多种因素的影响。 本文介绍了体外实验研究,用于检查支架设计参数和局部环境对生物聚合物支架的降解率的影响。 所考虑的参数是支架孔径,材料组成和细胞活性。

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