Painter Taishi, Ou Chenxi, Gong Xiaohua, Xia Chun-Hong
Herbert Wertheim School of Optometry and Vision Science Program, University of California, Berkeley, Berkeley, CA, United States.
Front Ophthalmol (Lausanne). 2024 May 3;4:1387961. doi: 10.3389/fopht.2024.1387961. eCollection 2024.
Connexin 50 (Cx50) mediated signaling is essential for controlling the lens growth and size. Cx50 mutations cause microphthalmia, smaller lenses, and cataracts in humans and animals. These ocular defects have never been investigated in live Cx50 mutant mice by using non-invasive imaging techniques. Here, we report a longitudinal study of the ocular defects in Cx50 knockout (Cx50KO) mice from the ages of 3 weeks to 12 months by using spectral-domain optical coherence tomography (SD-OCT). The anterior chamber depth (ACD), lens thickness (LT), vitreous chamber depth (VCD), and axial length (AL) were measured along the visual axis and adjusted with corresponding refractive indices. The SD-OCT image data confirm age-related reductions of LT and AL in live Cx50KO mice compared to age-matched wild-type (WT) controls, and the reduction values are comparable to the measurements of Cx50KO eyeballs and lenses reported previously. Moreover, reductions of ACD were observed in Cx50KO mice at all ages studied while VCD changes are statistically insignificant in comparison to the WT controls. Therefore, Cx50KO's microphthalmia with small lens is selectively associated with delayed ACD development but not the vitreous formation. This work supports the notion that lens size and/or growth is important for anterior chamber development.
连接蛋白50(Cx50)介导的信号传导对于控制晶状体的生长和大小至关重要。Cx50突变会导致人类和动物出现小眼症、晶状体变小以及白内障。此前从未通过非侵入性成像技术在活体Cx50突变小鼠中研究过这些眼部缺陷。在此,我们报告了一项使用光谱域光学相干断层扫描(SD-OCT)对3周龄至12月龄的Cx50基因敲除(Cx50KO)小鼠眼部缺陷进行的纵向研究。沿着视轴测量前房深度(ACD)、晶状体厚度(LT)、玻璃体腔深度(VCD)和眼轴长度(AL),并根据相应的折射率进行调整。SD-OCT图像数据证实与年龄匹配的野生型(WT)对照相比,活体Cx50KO小鼠的LT和AL随年龄增长而降低,且降低值与先前报道的Cx50KO眼球和晶状体的测量值相当。此外,在所有研究年龄的Cx50KO小鼠中均观察到ACD降低,而与WT对照相比,VCD变化在统计学上无显著意义。因此,Cx50KO小鼠的小眼症伴小晶状体与ACD发育延迟选择性相关,而非与玻璃体形成相关。这项工作支持了晶状体大小和/或生长对前房发育很重要这一观点。