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Biomimetic materials processing for tissue-engineering processes

机译:用于组织工程过程的仿生材料加工

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摘要

Material scaffolds play a key role in most tissue-engineering processes and regenerative medicine therapies. As the provisional substitute to and potential analogue of natural extracellular matrix ideally the scaffolds should create a space offering a suitable microenvironment for cell attachment, differentiation, growth and physiological function; the scaffold should also facilitate secondary key functions, such as revascularization and integration with the host tissues. Biomimetic materials processing could be defined as the design and synthesis of new functional materials by refining knowledge and understanding of related biological products, structures, functions, and processes. Synthetic and organic artificial scaffolds have been produced using biomimetic materials processes such as the incorporation of functional peptides into polymer substrates, self-assembly chemistry and electrospinning technologies to mimic certain aspects of the structure or function of the natural extracellular microenvironment. An exact copy of extracellular matrix is perhaps not the ideal objective, but a transient analogous structure that provides the key signals and triggers the right pathways for the host to remodel a tissue structure is more beneficial, certainly as a medical therapy this would suggest function and longevity could be achieved.
机译:材料支架在大多数组织工程过程和再生医学治疗中起着关键作用。作为天然细胞外基质的临时替代物和潜在的类似物,理想的支架应该创造一个空间,为细胞的附着,分化,生长和生理功能提供合适的微环境。支架还应促进次要关键功能,例如血运重建和与宿主组织的整合。仿生材料加工可以定义为通过完善对相关生物产品,结构,功能和过程的知识和理解来设计和合成新功能材料。合成的和有机的人工支架是使用仿生材料工艺生产的,例如将功能肽掺入聚合物基质,自组装化学和静电纺丝技术来模仿天然细胞外微环境的某些结构或功能。细胞外基质的精确复制可能不是理想的目标,但是提供关​​键信号并触发宿主重塑组织结构的正确途径的瞬时类似结构会更有益,当然,这是医学疗法会暗示其功能和功能。长寿可以实现。

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