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Hydrogels that listen to cells: a review of cell-responsive strategies in biomaterial design for tissue regeneration

机译:收听细胞的水凝胶:对组织再生的生物材料设计中的细胞响应策略述评

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摘要

The past decade has seen a decided move from static and passive biomaterials to biodegradable, dynamic, and stimuli responsive materials in the laboratory and the clinic. Recent advances towards the rational design of synthetic cell-responsive hydrogels-biomaterials that respond locally to cells or tissues without the input of an artificial stimulus-have provided new strategies and insights on the use of artificial environments for tissue engineering and regenerative medicine. These materials can often approximate responsive functions of a cell's complex natural extracellular environment, and must respond to the small and specific stimuli provided within the vicinity of a cell or tissue. In the current literature, there are three main cell-based stimuli that can be harnessed to create responsive hydrogels: (1) enzymes (2) mechanical force and (3) metabolites/small molecules. Degradable bonds, dynamic covalent bonds, and non-covalent or supramolecular interactions are used to provide responsive architectures that enable features ranging from cell selective infiltration to control of stem-cell differentiation. The growing ability to spatiotemporally control the behavior of cells and tissue with rationally designed responsive materials has the ability to allow control and autonomy to future generations of materials for tissue regeneration, in addition to providing understanding and mimicry of the dynamic and complex cellular niche.
机译:过去十年已经看到,在实验室和临床上,从静态和被动生物材料到可生物材料到可生物降解,动态和刺激的刺激材料的决定。迄今为止促进合成细胞响应水凝胶的理性设计的进展 - 生物材料,其局部地对细胞或组织进行局部响应,无需输入人工刺激 - 对使用人工环境进行组织工程和再生医学的使用提供了新的策略和见解。这些材料通常可以近似细胞复杂天然细胞外环境的响应功能,并且必须响应在细胞或组织附近提供的小而特异性刺激。在目前的文献中,存在三种主要的细胞基刺激,可以利用产生响应水凝胶:(1)酶(2)机械力和(3)代谢物/小分子。可降解的键,动态共价键和非共价或超分子相互作用用于提供响应性架构,其使特征能够从细胞选择性浸润到控制茎细胞分化。不断增长的时尚控制细胞和组织的行为具有合理设计的响应材料的能力,并且除了提供动态和复杂的细胞利基的理解和模仿外,还可以允许对后代进行控制和自主的材料进行组织再生。

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  • 来源
    《Materials Horizons》 |2017年第6期|共21页
  • 作者单位

    Maastricht Univ Dept Complex Tissue Regenerat MERLN Inst Technol Inspired Regenerat Med NL-6200 MD Maastricht Netherlands;

    Maastricht Univ Dept Complex Tissue Regenerat MERLN Inst Technol Inspired Regenerat Med NL-6200 MD Maastricht Netherlands;

    Maastricht Univ Dept Complex Tissue Regenerat MERLN Inst Technol Inspired Regenerat Med NL-6200 MD Maastricht Netherlands;

    Maastricht Univ Dept Complex Tissue Regenerat MERLN Inst Technol Inspired Regenerat Med NL-6200 MD Maastricht Netherlands;

    Maastricht Univ Dept Complex Tissue Regenerat MERLN Inst Technol Inspired Regenerat Med NL-6200 MD Maastricht Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
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