Bangru Sushant, Diegmiller Rocky, Di Talia Stefano, Poss Kenneth D
Morgridge Institute for Research, Madison, WI, USA.
Department of Cell and Regenerative Biology, University of Wisconsin, Madison, WI, USA.
Nat Rev Mol Cell Biol. 2025 Nov 11. doi: 10.1038/s41580-025-00917-1.
Tissue regeneration has historically been the subject of intense scientific scrutiny, from basic biology to applications in regenerative medicine. Use of model organisms and cutting-edge technologies have uncovered various mechanisms of regeneration, but understanding how signals are regulated spatiotemporally to renew lost structures at scale remains a challenge. Recent insights into chromatin structure and enhancer regulation, immune-tissue crosstalk, bioelectric and metabolic cues and quantitative modelling are broadening and reshaping our understanding of how tissues repair and renew. The evolution of cutting-edge tools for in vivo profiling and tracking of single cells is providing unprecedented dynamic views of regeneration across scales. Here, we synthesize the current knowledge of signal control in regeneration, with emphasis on conceptual advances, technical innovations and future directions for a more quantitative understanding of regenerative biology.
从基础生物学到再生医学应用,组织再生一直是科学研究的热点。模式生物和前沿技术的应用揭示了多种再生机制,但了解信号如何在时空上受到调控以大规模更新受损结构仍是一项挑战。最近对染色质结构和增强子调控、免疫与组织相互作用、生物电和代谢信号以及定量建模的深入研究,正在拓宽和重塑我们对组织修复和更新的理解。用于体内单细胞分析和追踪的前沿工具的发展,为跨尺度的再生提供了前所未有的动态视角。在此,我们综合了当前再生信号控制方面的知识,重点关注概念进展、技术创新以及未来方向,以期更定量地理解再生生物学。