Cell Biology, Histology and Pharmacology Department, University of Valladolid, Spain.
Histol Histopathol. 2013 Nov;28(11):1507-16. doi: 10.14670/HH-28.1507. Epub 2013 May 27.
The superfamily of transient receptor potential (TRP) cation channels is involved in nociception. Members of this family, such as the vanilloid receptor type 1 (TRPV1) channel, are activated by a wide range of stimuli including heat (⟩43°C), low pH (⟨6.5), hypoxia, and hypertonicity. Here we report TRPV1 expression in rabbit and human eyes.
We analyzed the expression of TRPV1 mRNA by quantitative reverse transcription polymerase chain reaction (qRT-PCR) and protein by immunohistochemistry in eyes of New Zealand White rabbits and humans.
In rabbit and human eyes, TRPV1 protein was present in all layers of the corneal epithelium, but only in the basal layer of the conjunctiva. It was also in the ciliary and lens epithelia of both species as well as in the secretory cells of the rabbit lacrimal gland. The retinal pigment epithelium was positive for this protein in both species. TRPV1 was also present in rabbit Müller cells, where it had a similar pattern of expression to vimentin intermediate filaments. Analysis by qRT-PCR showed that TRPV1 mRNA was found in all of the structures where the protein was present. The highest level was in the lens and the lowest in the retina.
TRPV1 is expressed in cells that are particularly active in Ca²⁺ exchange as well as in cells with significant water transport activity. Because TRPV1 is a Ca²⁺ channel, it probably functions in the regulation of both water and Ca²⁺ movements in ocular tissues.
瞬时受体电位 (TRP) 阳离子通道超家族参与痛觉。该家族的成员,如香草素受体 1 (TRPV1) 通道,可被多种刺激激活,包括热(⟩43°C)、低 pH(⟨6.5)、缺氧和高渗。本文报告 TRPV1 在兔眼和人眼中的表达。
我们通过定量逆转录聚合酶链反应 (qRT-PCR) 分析兔眼和人眼 TRP1 mRNA 的表达,并用免疫组织化学分析蛋白的表达。
在兔眼和人眼中,TRPV1 蛋白存在于角膜上皮的所有层中,但仅存在于结膜的基底层。它也存在于两种物种的睫状上皮和晶状体上皮以及兔泪腺的分泌细胞中。两种物种的视网膜色素上皮均对该蛋白呈阳性。TRPV1 也存在于兔 Müller 细胞中,其表达模式与波形蛋白中间丝相似。qRT-PCR 分析显示,在存在蛋白的所有结构中均发现 TRPV1 mRNA。晶状体中的水平最高,视网膜中的水平最低。
TRPV1 表达在钙交换特别活跃的细胞以及具有显著水转运活性的细胞中。因为 TRPV1 是一种钙通道,所以它可能在眼部组织的水和钙运动的调节中起作用。