Department of Diagnostic and Biomedical Sciences, School of Dentistry, The University of Texas Health Science Center at Houston (UTHealth), 1941 East Road, BBS 4208, Houston, TX, 77054, USA.
Center for Craniofacial Research, UTHealth, Houston, TX, 77054, USA.
Cell Mol Life Sci. 2021 Apr;78(7):3299-3315. doi: 10.1007/s00018-020-03741-2. Epub 2021 Jan 15.
The mammalian salivary gland develops as a highly branched structure designed to produce and secrete saliva. This review focuses on research conducted on mammalian salivary gland development, particularly on the differentiation of acinar, ductal, and myoepithelial cells. We discuss recent studies that provide conceptual advances in the understanding of the molecular mechanisms of salivary gland development. In addition, we describe the organogenesis of submandibular glands (SMGs), model systems used for the study of SMG development, and the key signaling pathways as well as cellular processes involved in salivary gland development. The findings from the recent studies elucidating the identity of stem/progenitor cells in the SMGs, and the process by which they are directed along a series of cell fate decisions to form functional glands, are also discussed. Advances in genetic tools and tissue engineering strategies will significantly increase our knowledge about the mechanisms by which signaling pathways and cells establish tissue architecture and function during salivary gland development, which may also be conserved in the growth and development of other organ systems. An increased knowledge of organ development mechanisms will have profound implications in the design of therapies for the regrowth or repair of injured tissues. In addition, understanding how the processes of cell survival, expansion, specification, movement, and communication with neighboring cells are regulated under physiological and pathological conditions is critical to the development of future treatments.
哺乳动物的唾液腺发育为高度分支的结构,旨在产生和分泌唾液。本篇综述专注于哺乳动物唾液腺发育方面的研究,特别是关于腺泡、导管和肌上皮细胞的分化。我们讨论了最近的研究,这些研究为理解唾液腺发育的分子机制提供了概念上的进展。此外,我们描述了下颌下腺(SMG)的器官发生、用于研究 SMG 发育的模型系统,以及涉及唾液腺发育的关键信号通路和细胞过程。还讨论了最近的研究阐明 SMG 中的干细胞/祖细胞的特性,以及它们如何沿着一系列细胞命运决定的方向被引导形成功能性腺体的过程。遗传工具和组织工程策略的进步将极大地增加我们对信号通路和细胞在唾液腺发育过程中建立组织结构和功能的机制的了解,这些机制也可能在其他器官系统的生长和发育中得到保守。对器官发育机制的深入了解将对受伤组织的再生或修复治疗的设计产生深远的影响。此外,了解细胞存活、扩增、特化、运动以及与邻近细胞的通信过程在生理和病理条件下是如何被调控的,对于未来治疗方法的发展至关重要。