Influence of ultraviolet A radiation on osmolytes transport in human retinal pigment epithelial cells

AIM: To demonstrate that ultraviolet A(UVA)induces osmolytes accumulation in retinal pigment epithelial(RPE)cells.<p>METHODS: Under different experimental conditions such as UVA exposure, hyperosmotic stress condition and hypoosmotic stress condition, RPE cells were cultured for different time...

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Main Authors: Da-Yang Wu, Jin-Song Zhang
Format: Article
Language:English
Published: Press of International Journal of Ophthalmology (IJO PRESS) 2014-04-01
Series:Guoji Yanke Zazhi
Subjects:
Online Access:http://www.ies.net.cn/cn_publish/2014/4/201404006.pdf
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spelling doaj-164a29b70ddb4c80a8f70fed767dbe912020-11-24T23:33:12ZengPress of International Journal of Ophthalmology (IJO PRESS)Guoji Yanke Zazhi1672-51231672-51232014-04-0114459960210.3980/j.issn.1672-5123.2014.04.06Influence of ultraviolet A radiation on osmolytes transport in human retinal pigment epithelial cellsDa-Yang Wu0Jin-Song Zhang1Department of Ophthalmology, the First Affiliated Hospital of Liaoning Medical University, Jinzhou 121001, Liaoning Province, ChinaEye Center of the Fourth Affiliated Hospital of China Medical University, Shenyang 110005, Liaoning Province, ChinaAIM: To demonstrate that ultraviolet A(UVA)induces osmolytes accumulation in retinal pigment epithelial(RPE)cells.<p>METHODS: Under different experimental conditions such as UVA exposure, hyperosmotic stress condition and hypoosmotic stress condition, RPE cells were cultured for different time periods. The betaine /γ-amino- n-butyric acid(GABA)transporter, the sodium-dependent myoinositol transporter and the taurine transporter(TAUT)mRNA were measured by quantitative PCR. The radioactive labeled osmolytes were measured to evaluate the level of osmolytes transportation. <p>RESULTS: This study demonstrated that RPE expressed mRNA specific for the betaine/GABA transporter, for the sodium-dependent myoinositol transporter and for the TAUT. In comparison to norm osmotic(300mosmol/L)controls, a 3-5-fold induction of mRNA expression for the betaine/GABA transporter, the sodium-dependent myoinositol transporter and the TAUT was observed within 6-24h after hyperosmotic exposure(400mosmol/L). Expression of osmolyte transporters was associated with an increased uptake of radioactive labeled osmolytes. Conversely, hypoosmotic(200mosmol/L)stimulation induced significant efflux of these osmolytes. UVA significantly stimulated osmolyte uptake. Increased osmolyte uptake was associated with upregulation of mRNA steady-state levels for osmolyte transporters in irradiated cells.<p>CONCLUSION: UVA induces osmolyte uptake in RPE. It is similar reaction to hyperosmotic stress. This suggests that osmolyte uptake response by UVA may be important to maintain homeostasis.http://www.ies.net.cn/cn_publish/2014/4/201404006.pdfultraviolet Ahyperosmotic stressosmolytesretinal pigment epithelialretinal pigment epithelial
collection DOAJ
language English
format Article
sources DOAJ
author Da-Yang Wu
Jin-Song Zhang
spellingShingle Da-Yang Wu
Jin-Song Zhang
Influence of ultraviolet A radiation on osmolytes transport in human retinal pigment epithelial cells
Guoji Yanke Zazhi
ultraviolet A
hyperosmotic stress
osmolytes
retinal pigment epithelial
retinal pigment epithelial
author_facet Da-Yang Wu
Jin-Song Zhang
author_sort Da-Yang Wu
title Influence of ultraviolet A radiation on osmolytes transport in human retinal pigment epithelial cells
title_short Influence of ultraviolet A radiation on osmolytes transport in human retinal pigment epithelial cells
title_full Influence of ultraviolet A radiation on osmolytes transport in human retinal pigment epithelial cells
title_fullStr Influence of ultraviolet A radiation on osmolytes transport in human retinal pigment epithelial cells
title_full_unstemmed Influence of ultraviolet A radiation on osmolytes transport in human retinal pigment epithelial cells
title_sort influence of ultraviolet a radiation on osmolytes transport in human retinal pigment epithelial cells
publisher Press of International Journal of Ophthalmology (IJO PRESS)
series Guoji Yanke Zazhi
issn 1672-5123
1672-5123
publishDate 2014-04-01
description AIM: To demonstrate that ultraviolet A(UVA)induces osmolytes accumulation in retinal pigment epithelial(RPE)cells.<p>METHODS: Under different experimental conditions such as UVA exposure, hyperosmotic stress condition and hypoosmotic stress condition, RPE cells were cultured for different time periods. The betaine /γ-amino- n-butyric acid(GABA)transporter, the sodium-dependent myoinositol transporter and the taurine transporter(TAUT)mRNA were measured by quantitative PCR. The radioactive labeled osmolytes were measured to evaluate the level of osmolytes transportation. <p>RESULTS: This study demonstrated that RPE expressed mRNA specific for the betaine/GABA transporter, for the sodium-dependent myoinositol transporter and for the TAUT. In comparison to norm osmotic(300mosmol/L)controls, a 3-5-fold induction of mRNA expression for the betaine/GABA transporter, the sodium-dependent myoinositol transporter and the TAUT was observed within 6-24h after hyperosmotic exposure(400mosmol/L). Expression of osmolyte transporters was associated with an increased uptake of radioactive labeled osmolytes. Conversely, hypoosmotic(200mosmol/L)stimulation induced significant efflux of these osmolytes. UVA significantly stimulated osmolyte uptake. Increased osmolyte uptake was associated with upregulation of mRNA steady-state levels for osmolyte transporters in irradiated cells.<p>CONCLUSION: UVA induces osmolyte uptake in RPE. It is similar reaction to hyperosmotic stress. This suggests that osmolyte uptake response by UVA may be important to maintain homeostasis.
topic ultraviolet A
hyperosmotic stress
osmolytes
retinal pigment epithelial
retinal pigment epithelial
url http://www.ies.net.cn/cn_publish/2014/4/201404006.pdf
work_keys_str_mv AT dayangwu influenceofultravioletaradiationonosmolytestransportinhumanretinalpigmentepithelialcells
AT jinsongzhang influenceofultravioletaradiationonosmolytestransportinhumanretinalpigmentepithelialcells
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