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Learning from Mother Nature: Innovative Tools to Boost Endogenous Repair of Critical or Difficult-to-Heal Large Tissue Defects

机译:向大自然学习:创新工具可促进内生性修复严重或难以治愈的大组织缺陷

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摘要

For repair of chronic or difficult-to-heal tissue lesions and defects, major constraints exist to a broad application of cell therapy and tissue engineering approaches, i.e., transplantation of “ex vivo” expanded autologous stem/progenitor cells, alone or associated with carrier biomaterials. To enable a large number of patients to benefit, new strategies should be considered. One of the main goals of contemporary regenerative medicine is to develop new regenerative therapies, inspired from Mother Nature. In all injured tissues, when platelets are activated by tissue contact, their released factors promote innate immune cell migration to the wound site. Platelet-derived factors and factors secreted by migrating immune cells create an inflammatory microenvironment, in turn, causing the activation of angiogenesis and vasculogenesis processes. Eventually, repair or regeneration of the injured tissue occurs via paracrine signals activating, mobilizing or recruiting to the wound site cells with healing potential, such as stem cells, progenitors, or undifferentiated cells derived from the reprogramming of tissue differentiated cells. This review, largely based on our studies, discusses the identification of new tools, inspired by cellular and molecular mechanisms overseeing physiological tissue healing, that could reactivate dormant endogenous regeneration mechanisms lost during evolution and ontogenesis.
机译:对于修复慢性或难以治愈的组织病变和缺陷,细胞治疗和组织工程方法的广泛应用存在主要限制,即单独或与载体结合的“离体”扩增的自体干/祖细胞的移植生物材料。为了使大量患者受益,应考虑新的策略。现代再生医学的主要目标之一是在自然界的启发下开发新的再生疗法。在所有受伤的组织中,当血小板通过组织接触而被激活时,其释放的因子会促进先天免疫细胞迁移至伤口部位。血小板衍生因子和免疫细胞迁移分泌的因子产生炎性微环境,进而引起血管生成和血管生成过程的激活。最终,损伤旁组织的修复或再生通过旁分泌信号激活,动员或募集到具有愈合潜力的伤口部位细胞,例如干细胞,祖细胞或源自组织分化细胞重编程的未分化细胞。这篇综述主要基于我们的研究,讨论了新工具的识别,这些新工具受到监督生理组织愈合的细胞和分子机制的启发,可以重新激活在进化和本体形成过程中失去的休眠的内源性再生机制。

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