Department of Cell Developmental and Integrative Biology, University of Alabama at Birmingham, Birmingham, AL, United States.
Department of Cell Developmental and Integrative Biology, University of Alabama at Birmingham, Birmingham, AL, United States.
Curr Top Dev Biol. 2019;133:49-90. doi: 10.1016/bs.ctdb.2018.11.018. Epub 2019 Jan 3.
Development of the axial skeleton is a complex, stepwise process that relies on intricate signaling and coordinated cellular differentiation. Disruptions to this process can result in a myriad of skeletal malformations that range in severity. The notochord and the sclerotome are embryonic tissues that give rise to the major components of the intervertebral discs and the vertebral bodies of the spinal column. Through a number of mouse models and characterization of congenital abnormalities in human patients, various growth factors, transcription factors, and other signaling proteins have been demonstrated to have critical roles in the development of the axial skeleton. Balance between opposing growth factors as well as other environmental cues allows for cell fate specification and divergence of tissue types during development. Furthermore, characterization of progenitor cells for specific cell lineages has furthered the understanding of specific spatiotemporal cues that cells need in order to initiate and complete development of distinct tissues. Identifying specific marker genes that can distinguish between the various embryonic and mature cell types is also of importance. Clinically, understanding developmental clues can aid in the generation of therapeutics for musculoskeletal disease through the process of developmental engineering. Studies into potential stem cell therapies are based on knowledge of the normal processes that occur in the embryo, which can then be applied to stepwise tissue engineering strategies.
轴向骨骼的发育是一个复杂的、逐步的过程,依赖于复杂的信号传递和协调的细胞分化。这个过程的中断可能导致一系列严重程度不同的骨骼畸形。脊索和体节是胚胎组织,它们产生椎间盘的主要成分和脊柱的椎体。通过许多小鼠模型和对人类患者先天性异常的特征描述,已经证明了各种生长因子、转录因子和其他信号蛋白在轴向骨骼发育中具有关键作用。 opposing growth factors 之间的平衡以及其他环境线索允许细胞命运特化和组织类型的分化在发育过程中发生。此外,特定细胞谱系祖细胞的特征描述进一步加深了对特定时空线索的理解,这些线索是细胞启动和完成不同组织发育所必需的。鉴定能够区分各种胚胎和成熟细胞类型的特定标记基因也很重要。临床上,通过发育工程,了解发育线索有助于为肌肉骨骼疾病生成治疗方法。对潜在干细胞疗法的研究基于对胚胎中正常过程的了解,然后可以将其应用于逐步的组织工程策略。