Hashiura Tetsuya, Kimura Eiji, Fujisawa Shizuko, Oikawa Sayuri, Nonaka Shigenori, Kurosaka Daijiro, Hitomi Jiro
Department of Anatomy, Iwate Medical University, 2-1-1 Nishitokuta, Yahaba-cho, Shiwa, Iwate, Japan.
Department of Ophthalmology, Iwate Medical University, 2-1-1 Nishitokuta, Yahaba-cho, Shiwa, Iwate, Japan.
PLoS One. 2017 Apr 26;12(4):e0176456. doi: 10.1371/journal.pone.0176456. eCollection 2017.
Ocular vasculature consists of the central retinal and ciliary vascular systems, which are essential to maintaining visual function. Many researchers have attempted to determine their origins and development; however, the detailed, stepwise process of ocular vasculature formation has not been established. In zebrafish, two angioblast clusters, the rostral and midbrain organizing centers, form almost all of the cranial vasculature, including the ocular vasculature, and these are from where the cerebral arterial and venous angioblast clusters, respectively, differentiate. In this study, we first determined the anatomical architecture of the primary ocular vasculature and then followed its path from the two cerebral angioblast clusters using a time-lapse analysis of living Tg(flk1:EGFP)k7 zebrafish embryos, in which the endothelial cells specifically expressed enhanced green fluorescent protein. We succeeded in capturing images of the primary ocular vasculature formation and were able to determine the origin of each ocular vessel. In zebrafish, the hyaloid and ciliary arterial systems first organized independently, and then anastomosed via the inner optic circle on the surface of the lens by the lateral transfer of the optic vein. Finally, the choroidal vascular plexus formed around the eyeball to complete the primary ocular vasculature formation. To our knowledge, this study is the first to report successful capture of circular integration of the optic artery and vein, lateral transfer of the optic vein to integrate the hyaloidal and superficial ocular vasculatures, and formation of the choroidal vascular plexus. Furthermore, this new morphological information enables us to assess the entire process of the primary ocular vasculature formation, which will be useful for its precise understanding.
眼部血管系统由视网膜中央血管系统和睫状血管系统组成,这对于维持视觉功能至关重要。许多研究人员试图确定它们的起源和发育过程;然而,眼部血管系统形成的详细、逐步过程尚未明确。在斑马鱼中,两个成血管细胞簇,即 Rostral 和中脑组织中心,形成了几乎所有的颅部血管系统,包括眼部血管系统,并且分别是脑动脉和成血管细胞簇及脑静脉成血管细胞簇分化的来源。在本研究中,我们首先确定了初级眼部血管系统的解剖结构,然后使用活的 Tg(flk1:EGFP)k7 斑马鱼胚胎的延时分析,从两个脑成血管细胞簇追踪其路径,在该胚胎中内皮细胞特异性表达增强型绿色荧光蛋白。我们成功捕获了初级眼部血管系统形成的图像,并能够确定每条眼部血管的起源。在斑马鱼中,玻璃体动脉系统和睫状动脉系统首先独立组织形成,然后通过晶状体表面的内视环,经视静脉的侧向转移实现吻合。最后,脉络膜血管丛在眼球周围形成,完成初级眼部血管系统的形成。据我们所知,本研究首次成功报道了捕获视动脉和静脉的环形整合、视静脉的侧向转移以整合玻璃体和浅表眼部血管系统以及脉络膜血管丛的形成。此外,这种新的形态学信息使我们能够评估初级眼部血管系统形成的整个过程,这将有助于精确理解该过程。