Regional diversity of cranial skeletal stem cells governs bone morphogenetic protein-2 mediated bone regeneration
Abstract
Abstract Skeletal stem cells (SSCs), originally identified in 2015, are increasingly understood to exhibit significant heterogeneity throughout the body. Cranial SSCs provide a unique model to investigate this diversity because cranial bones arise from both neural crest and mesoderm, unlike mesoderm-derived long bones. Here, we show that cranial SSCs possess anatomically defined transcriptomic and functional heterogeneity. Through comprehensive in vitro and in vivo functional assays combined with targeted gene expression analyses by qPCR, we demonstrate that cranial SSCs exhibit region-specific transcriptional signatures and lineage biases that influence their osteogenic and chondrogenic capacities. Temporal analysis further reveals that SSCs progressively outnumber progenitor cells with age, suggesting that the SSC-to-progenitor ratio may serve as an indicator of skeletal developmental and regenerative potential. Finally, we demonstrate that SSC heterogeneity critically influences bone regeneration in response to Bone Morphogenetic Protein-2 in vitro and in vivo, supporting the need for region-specific optimization of BMP-2-based regenerative therapies.
Article Details
Authors (13)
Eri Takematsu
Rovin N. Lachmansingh
Kyle Johnston
Sophia Hou
Elyon Bailey
Yuting Wang
Dalian Institute of Chemical Physics, Chinese Academy of Sciences
Liming Zhao
Malachia Hoover
Hieu T. M. Nguyen
Kumarizeel M. Parmar
Heather Talbott
Michael T. Longaker
Charles K. F. Chan