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从神经嵴细胞到黑素细胞:发育过程中和发育后的细胞可塑性。

From neural crest cells to melanocytes: cellular plasticity during development and beyond.

机构信息

Molecular and Cellular Oncology Laboratory, Department of Biomedical Molecular Biology, Ghent University, Technologiepark-Zwijnaarde 71, 9052, Ghent, Belgium.

DAMBI, VIB Center for Inflammation Research, Ghent, Belgium.

出版信息

Cell Mol Life Sci. 2019 May;76(10):1919-1934. doi: 10.1007/s00018-019-03049-w. Epub 2019 Mar 4.

Abstract

Here, we review melanocyte development and how the embryonic melanoblast, although specified to become a melanocyte, is prone to cellular plasticity and is not fully committed to the melanocyte lineage. Even fully differentiated and pigment-producing melanocytes do not always have a stable phenotype. The gradual lineage restriction of neural crest cells toward the melanocyte lineage is determined by both cell-intrinsic and extracellular signals in which differentiation and pathfinding ability reciprocally influence each other. These signals are leveraged by subtle differences in timing and axial positioning. The most extensively studied migration route is the dorsolateral path between the dermomyotome and the prospective epidermis, restricted to melanoblasts. In addition, the embryonic origin of the skin dermis through which neural crest derivatives migrate may also affect the segregation between melanogenic and neurogenic cells in embryos. It is widely accepted that, irrespective of the model organism studied, the immediate precursor of both melanoblast and neurogenic populations is a glial-melanogenic bipotent progenitor. Upon exposure to different conditions, melanoblasts may differentiate into other neural crest-derived lineages such as neuronal cells and vice versa. Key factors that regulate melanoblast migration and patterning will regulate melanocyte homeostasis during different stages of hair cycling in postnatal hair follicles.

摘要

在这里,我们回顾黑素细胞的发育过程,以及尽管胚胎黑素细胞被指定成为黑素细胞,但它容易发生细胞可塑性,并且尚未完全向黑素细胞谱系分化。即使是完全分化并产生色素的黑素细胞,其表型也并不总是稳定的。神经嵴细胞向黑素细胞谱系的逐渐谱系限制取决于细胞内在和细胞外信号,其中分化和寻路能力相互影响。这些信号利用了时间和轴向定位的细微差异。研究最广泛的迁移途径是真皮肌节和预期表皮之间的背外侧途径,该途径仅限于黑素细胞前体细胞。此外,通过神经嵴衍生物迁移的皮肤真皮的胚胎起源也可能影响胚胎中黑素生成细胞和神经生成细胞之间的分离。人们普遍认为,无论研究的模式生物如何,黑素细胞前体细胞和神经生成细胞群体的直接前体细胞都是胶质-黑素双能祖细胞。暴露于不同条件下,黑素细胞前体细胞可能分化为其他神经嵴衍生谱系,如神经元细胞,反之亦然。调节黑素细胞迁移和模式形成的关键因素将调节出生后毛囊不同毛发周期阶段的黑素细胞动态平衡。

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