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Expression of muscarinic receptor subtypes in tree shrew ocular tissues and their regulation during the development of myopia

机译:毒蕈碱受体亚型在树sh眼组织中的表达及其在近视发展过程中的调控

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摘要

Muscarinic receptors are known to regulate several important physiologic processes in the eye. Antagonists to these receptors such as atropine and pirenzepine are effective at stopping the excessive ocular growth that results in myopia. However, their site of action is unknown. This study details ocular muscarinic subtype expression within a well documented model of eye growth and investigates their expression during early stages of myopia induction. Total RNA was isolated from tree shrew corneal, iris/ciliary body, retinal, choroidal, and scleral tissue samples and was reverse transcribed. Using tree shrew-specific primers to the five muscarinic acetylcholine receptor subtypes (CHRM1-CHRM5), products were amplified using polymerase chain reaction (PCR) and their identity confirmed using automated sequencing. The expression of the receptor proteins (M1-M5) were also explored in the retina, choroid, and sclera using immunohistochemistry. Myopia was induced in the tree shrew for one or five days using monocular deprivation of pattern vision, and the expression of the receptor subtypes was assessed in the retina, choroid, and sclera using real-time PCR. All five muscarinic receptor subtypes were expressed in the iris/ciliary body, retina, choroid, and sclera while gene products corresponding to CHRM1, CHRM3, CHRM4, and CHRM5 were present in the corneal samples. The gene expression data were confirmed by immunohistochemistry with the M1-M5 proteins detected in the retina, choroid, and sclera. After one or five days of myopia development, muscarinic receptor gene expression remained unaltered in the retinal, choroidal, and scleral tissue samples. This study provides a comprehensive profile of muscarinic receptor gene and protein expression in tree shrew ocular tissues with all receptor subtypes found in tissues implicated in the control of eye growth. Despite the efficacy of muscarinic antagonists at inhibiting myopia development, the genes of the muscarinic receptor subtypes are neither regulated early in myopia (before measurable axial elongation) nor after significant structural change.
机译:已知毒蕈碱受体调节眼睛中的几个重要生理过程。这些受体的拮抗剂,例如阿托品和哌仑西平,可以有效地阻止导致近视的过度眼部生长。但是,他们的行动地点未知。这项研究详细描述了眼睛生长模型中眼毒蕈碱型亚型的表达,并研究了近视眼诱导初期的表达。从树角膜,虹膜/睫状体,视网膜,脉络膜和巩膜组织样品中分离总RNA,然后反转录。使用针对五种毒蕈碱乙酰胆碱受体亚型(CHRM1-CHRM5)的树sh特异性引物,使用聚合酶链反应(PCR)扩增产物,并通过自动测序确认其身份。还使用免疫组织化学在视网膜,脉络膜和巩膜中探索了受体蛋白(M1-M5)的表达。使用单眼剥夺模式视觉在树sh中诱导近视一到五天,并使用实时PCR评估视网膜,脉络膜和巩膜中受体亚型的表达。所有五个毒蕈碱受体亚型均在虹膜/睫状体,视网膜,脉络膜和巩膜中表达,而对应于CHRM1,CHRM3,CHRM4和CHRM5的基因产物存在于角膜样品中。基因表达数据通过免疫组织化学与在视网膜,脉络膜和巩膜中检测到的M1-M5蛋白确认。近视发展一到五天后,视网膜,脉络膜和巩膜组织样本中毒蕈碱受体基因的表达保持不变。这项研究提供了树scar眼组织中毒蕈碱受体基因和蛋白表达的全面概况,其中所有受体亚型都存在于控制眼部生长的组织中。尽管毒蕈碱拮抗剂可以抑制近视发展,但毒蕈碱受体亚型的基因在近视早期(可测量的轴向伸长之前)或显着的结构变化后均未得到调节。

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