See Angela Wai-Man, Clagett-Dame Margaret
Interdepartmental Graduate Program in Nutritional Sciences, University of Wisconsin-Madison, Madison, WI 53706-1544, USA.
Dev Biol. 2009 Jan 1;325(1):94-105. doi: 10.1016/j.ydbio.2008.09.030. Epub 2008 Oct 14.
Mammalian eye development requires vitamin A (retinol, ROL). The role of vitamin A at specific times during eye development was studied in rat fetuses made vitamin A deficient (VAD) after embryonic day (E) 10.5 (late VAD). The optic fissure does not close in late VAD embryos, and severe folding and collapse of the retina is observed at E18.5. Pitx2, a gene required for normal optic fissure closure, is dramatically downregulated in the periocular mesenchyme in late VAD embryos, and dissolution of the basal lamina does not occur at the optic fissure margin. The addition of ROL to late VAD embryos by E12.5 restores Pitx2 expression, supports dissolution of the basal lamina, and prevents coloboma, whereas supplementation at E13.5 does not. Surprisingly, ROL given as late as E13.5 completely prevents folding of the retina despite the presence of an open fetal fissure, showing that coloboma and retinal folding represent distinct VAD-dependent defects. Retinal folding due to VAD is preceded by an overall reduction in the percentage of cyclin D1 positive cells in the developing retina, (initially resulting in retinal thinning), as well as a dramatic reduction in the cell adhesion-related molecules, N-cadherin and beta-catenin. Reduction of retinal cell number combined with a loss of the normal cell-cell adhesion proteins may contribute to the collapse and folding of the retina that occurs in late VAD fetuses.
哺乳动物的眼睛发育需要维生素A(视黄醇,ROL)。在胚胎期(E)10.5之后维生素A缺乏(VAD)的大鼠胎儿(晚期VAD)中,研究了维生素A在眼睛发育特定时期的作用。晚期VAD胚胎的视裂未闭合,在E18.5时观察到视网膜严重折叠和塌陷。Pitx2是正常视裂闭合所需的基因,在晚期VAD胚胎的眼周间充质中显著下调,视裂边缘未发生基膜溶解。在E12.5时给晚期VAD胚胎添加ROL可恢复Pitx2表达,支持基膜溶解,并预防视网膜缺损,而在E13.5时补充则无效。令人惊讶的是,即使存在开放的胎儿视裂,在E13.5时给予ROL也能完全防止视网膜折叠,这表明视网膜缺损和视网膜折叠代表了不同的VAD依赖性缺陷。VAD导致的视网膜折叠之前,发育中的视网膜中细胞周期蛋白D1阳性细胞的百分比总体下降(最初导致视网膜变薄),以及细胞粘附相关分子N-钙粘蛋白和β-连环蛋白显著减少。视网膜细胞数量减少以及正常细胞间粘附蛋白的丧失可能导致晚期VAD胎儿视网膜的塌陷和折叠。