The Role of Retinal Dopamine D1 Receptors in Ocular Growth and Myopia Development in Mice

多巴胺 兴奋剂 视网膜 内分泌学 内科学 神经递质 敌手 多巴胺受体 受体 多巴胺受体D1 化学 视网膜 神经科学 生物 医学 生物化学
作者
Ziheng Shu,Chen Kai-jie,Qiongsi Wang,Honglin Wu,Yimin Zhu,Rong Tian,Wenjun Yan,Qin Huang,Chunlan Zhang,Wei‐Wei Xiong,Jia Qu,Xiangtian Zhou,Furong Huang
出处
期刊:The Journal of Neuroscience [Society for Neuroscience]
卷期号:43 (48): 8231-8242 被引量:1
标识
DOI:10.1523/jneurosci.1196-23.2023
摘要

Dopamine is a key neurotransmitter in the signaling cascade controlling ocular refractive development, but the exact role and site of action of dopamine D1 receptors (D1Rs) involved in myopia remains unclear. Here, we determine whether retinal D1Rs exclusively mediate the effects of endogenous dopamine and systemically delivered D1R agonist or antagonist in the mouse form deprivation myopia (FDM) model. Male C57BL/6 mice subjected to unilateral FDM or unobstructed vision were divided into the following four groups: one noninjected and three groups that received intraperitoneal injections of a vehicle, D1R agonist SKF38393 (18 and 59 nmol/g), or D1R antagonist SCH39166 (0.1 and 1 nmol/g). The effects of these drugs on FDM were further assessed in Drd1 -knock-out ( Drd1 -KO), retina-specific conditional Drd1 -KO ( Drd1 -CKO) mice, and corresponding wild-type littermates. In the visually unobstructed group, neither SKF38393 nor SCH39166 affected normal refractive development, whereas myopia development was attenuated by SKF38393 and enhanced by SCH39166 injections. In Drd1 -KO or Drd1 -CKO mice, however, these drugs had no effect on FDM development, suggesting that activation of retinal D1Rs is pertinent to myopia suppression by the D1R agonist. Interestingly, the development of myopia was unchanged by either Drd1 -KO or Drd1 -CKO, and neither SKF38393 nor SCH39166 injections, nor Drd1 -KO, affected the retinal or vitreal dopamine and the dopamine metabolite DOPAC levels. Effects on axial length were less marked than effects on refraction. Therefore, activation of D1Rs, specifically retinal D1Rs, inhibits myopia development in mice. These results also suggest that multiple dopamine D1R mechanisms play roles in emmetropization and myopia development. SIGNIFICANCE STATEMENT While dopamine is recognized as a “stop” signal that inhibits myopia development (myopization), the location of the dopamine D1 receptors (D1Rs) that mediate this action remains to be addressed. Answers to this key question are critical for understanding how dopaminergic systems regulate ocular growth and refraction. We report here the results of our study showing that D1Rs are essential for controlling ocular growth and myopia development in mice, and for identifying the retina as the site of action for dopaminergic control via D1Rs. These findings highlight the importance of intrinsic retinal dopaminergic mechanisms for the regulation of ocular growth and suggest specific avenues for exploring the retinal mechanisms involved in the dopaminergic control of emmetropization and myopization.
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