Aldrovani Marcela, Filezio Marcella Rosa, Laus José Luiz
Unidade de Oftalmologia, Departamento de Clínica e Cirurgia Veterinária, Faculdade de Ciências Agrárias e Veterinárias, Universidade Estadual Paulista (Unesp), Jaboticabal, SP, Brazil.
Arq Bras Oftalmol. 2017 Jul-Aug;80(4):268-272. doi: 10.5935/0004-2749.20170066.
Various approaches have been taken to improve our knowledge of the microenvironmental regulation of limbal epithelial stem cells. Researchers have extensively investigated the roles of growth factors, survival factors, cytokines, enzymes, and permeable molecules secreted by the limbal cells. However, recent evidence suggests that stem cell fate (i.e., self-renewal or differentiation) can also be influenced by biophysical and mechanical cues related to the supramolecular organization and the liquid crystalline (mesophase) nature of the stromal extracellular matrix. These cues can be sensed by stem cells and transduced into intracellular biochemical and functional responses, a process known as mechanotransduction. The objective of this review is to offer perspectives on the supramolecular microenvironmental regulation of limbal epithelial stem cells and the differentiation of their progeny.
为了增进我们对角膜缘上皮干细胞微环境调节的了解,人们采取了多种方法。研究人员广泛研究了角膜缘细胞分泌的生长因子、存活因子、细胞因子、酶和可渗透分子的作用。然而,最近的证据表明,干细胞的命运(即自我更新或分化)也可能受到与基质细胞外基质的超分子组织和液晶(中间相)性质相关的生物物理和机械信号的影响。这些信号可以被干细胞感知并转化为细胞内的生化和功能反应,这一过程称为机械转导。本综述的目的是就角膜缘上皮干细胞的超分子微环境调节及其子代细胞的分化提供观点。