Department of Anatomy, College of Medicine, The Catholic University of Korea, 137-701 Seoul, Korea.
J Comp Neurol. 2010 Apr 1;518(7):1064-81. doi: 10.1002/cne.22263.
Vascular endothelial growth factor receptor (VEGFR)-3, a receptor for VEGF-C and VEGF-D, is expressed in neural progenitor cells, but there has been no comprehensive study of its distribution in the developing brain. Here, the temporal and cell-specific expression of VEGFR-3 mRNA was studied in the developing rat forebrain and eye. Expression appeared along the ventricular and subventricular zones of the lateral and third ventricles showing ongoing neurogenesis as early as embryonic day 13 but was progressively down-regulated during development and remained in the subventricular zone and rostral migratory stream of the adult forebrain. VEGFR-3 expression was also detectable in some differentiating and postmitotic neurons in the developing cerebral cortex, including Cajal-Retzius cells, cortical plate neurons, and subplate neurons. Expression in the subplate increased significantly during the early postnatal period but was absent by postnatal day 14. It was also highly expressed in nonneural tissues of the eye during development, including the retinal pigment epithelium, the retinal ciliary margin, and the lens, but persisted in a subset of cells in the pigmented ciliary epithelium of the adult eye. In contrast, there was weak or undetectable expression in the early neural retina, but a subset of retinal neurons in the postnatal and mature retina showed intense signals. These unique spatiotemporal mRNA expression patterns suggest that VEGFR-3 might mediate the regulation of both neurogenesis and adult neuronal function in the rat forebrain and eye.
血管内皮生长因子受体(VEGFR)-3 是 VEGF-C 和 VEGF-D 的受体,在神经祖细胞中表达,但尚未对其在发育中的大脑中的分布进行全面研究。在这里,研究了 VEGFR-3 mRNA 在发育中的大鼠前脑和眼睛中的时间和细胞特异性表达。表达出现在侧脑室和第三脑室的室管膜和室下区,早在胚胎第 13 天就显示出持续的神经发生,但在发育过程中逐渐下调,并在前脑的室下区和额状迁移流中保持。VEGFR-3 的表达也可在发育中的大脑皮质中的一些分化和有丝分裂后神经元中检测到,包括 Cajal-Retzius 细胞、皮质板神经元和基板神经元。基板中的表达在出生后的早期显著增加,但在出生后第 14 天就不存在了。它在发育过程中也在眼睛的非神经组织中高度表达,包括视网膜色素上皮、视网膜睫状缘和晶状体,但在成年眼睛的色素睫状上皮的一部分细胞中仍然存在。相比之下,早期的神经视网膜中表达较弱或无法检测到,但出生后和成熟的视网膜中的一部分视网膜神经元显示出强烈的信号。这些独特的时空 mRNA 表达模式表明,VEGFR-3 可能在大鼠前脑和眼睛中调节神经发生和成年神经元功能。