Peixiang Ma, Zhifeng Yu, Ning Wang, X. Guo, G. Genin, L. Qin, Dennis Disher, Zonglai Jiang, Jie Zhao, Yi-Xian Qin
2026.3.1Mechanobiology in Medicine
Abstract
Integrating mechanobiological principles into disease pathogenesis, therapeutic development, and tissue engineering is reshaping our understanding of biological systems and accelerating the advancement of mechanotherapy and mechanohealth. This field reveals how mechanical cues regulate cellular behavior, such as force transmission along integrin-nucleus pathways and collective cell migration, and tissue functions. In doing so, mechanobiology connects fundamental research with clinical applications, from limiting cancer metastasis and fibrosis to promoting bone regeneration and maintaining vascular homeostasis. Building on discussion from the Inaugural International Conference on Mechanobiology (ICM) 2025, integrating mechanobiological research with clinical strategies offers new opportunities to address unmet needs, including personalized anti-fibrotic interventions or precision bone regenerative therapies. At the same time, it supports the broader concept of mechanohealth -- a paradigm focused on preserving the physiological mechanical balance within tissues.
Citation format
MA, Peixiang, et al. Mechanobiological research fueling the advancement of mechanotherapy and mechanohealth. Mechanobiology in Medicine, 2026, 4(1): 100180.