再生(生物学)
神经科学
再生医学
组织工程
生物
天然组织
细胞外基质
组织修复
计算机科学
机制(生物学)
机械转化
模式治疗法
细胞生物学
作者
Qifan Yu,Yudong Duan,Zhuang Zhu,Wei Ji,Caihong Zhu,Bin Li
标识
DOI:10.1016/j.mbm.2025.100159
摘要
Mechanical microenvironment of each tissue plays an important role in regulating its special cellular behaviors, such as morphology, proliferation, differentiation, and migration. Mechanical signals can direct lineage specification or promote cell migration towards injury sites and facilitate tissue repair. During tissue regeneration, mechanoregulation is also important due to the ability of providing an extracellular microenvironment that closely resembles the physiological state for cells. Currently, mechanoregulation strategies have been usually applied to promote tissue regeneration. However, the in vivo mechanical environment is highly complex, these single mechanical conditioning strategies cannot comprehensively replicate the mechanical microenvironment experienced by cells or tissues in the body, thereby hindering the achievement of efficient tissue regeneration. The proposal of multimodal mechanoregulation strategies offers promising avenues to address this limitation. Herein, we summarize the critical role of mechanical factors in promoting tissue regeneration and the current development of different multimodal mechanoregulation approaches. Furthermore, the complex mechanical microenvironment of various tissues such as bone, intervertebral disc and cardiac. Afterwards, the recent successful applications of multimodal mechanical strategies in regenerative therapies were reviewed. And we delineate the persisting challenges, potential resolutions, and emerging translational prospects for multimodal mechanoregulation strategies in regenerative medicine, providing a reference for further development of multimodal mechanoregulation approaches.
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