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At the edge of translation - materials to program cells for directed differentiation.

机译:在翻译的边缘-用于编程细胞以进行定向分化的材料。

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摘要

Oral Diseases (2011) 17, 241-251 The rapid advancement in basic biology knowledge, especially in the stem cell field, has created new opportunities to develop biomaterials capable of orchestrating the behavior of transplanted and host cells. Based on our current understanding of cellular differentiation, a conceptual framework for the use of materials to program cells in situ is presented, namely a domino vs a switchboard model, to highlight the use of single vs multiple cues in a controlled manner to modulate biological processes. Further, specific design principles of material systems to present soluble and insoluble cues that are capable of recruiting, programming and deploying host cells for various applications are presented. The evolution of biomaterials from simple inert substances used to fill defects, to the recent development of sophisticated material systems capable of programming cells in situ is providing a platform to translate our understanding of basic biological mechanisms to clinical care.
机译:口腔疾病(2011)17,241-251基础生物学知识的迅速发展,特别是在干细胞领域,为开发能够协调移植和宿主细胞行为的生物材料创造了新的机遇。基于我们对细胞分化的当前理解,提出了一种使用材料对原位细胞进行编程的概念框架,即多米诺骨牌vs配电盘模型,以强调以可控方式使用单个或多个线索来调节生物过程。 。此外,提出了用于呈现可溶和不可溶线索的材料系统的特定设计原理,其能够募集,编程和部署用于各种应用的宿主细胞。生物材料从用于填充缺陷的简单惰性物质到能够对细胞进行原位编程的先进材料系统的最新发展,为将我们对基本生物学机制的理解转化为临床护理提供了一个平台。

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