Oxidative stress induced inflammation initiates functional decline of tear production.
Oxidative damage and inflammation are proposed to be involved in an age-related functional decline of exocrine glands. However, the molecular mechanism of how oxidative stress affects the secretory function of exocrine glands is unclear. We developed a novel mev-1 conditional transgenic mouse model...
Main Authors: | , , , , , , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Public Library of Science (PLoS)
2012-01-01
|
Series: | PLoS ONE |
Online Access: | http://europepmc.org/articles/PMC3465290?pdf=render |
id |
doaj-3620eebee9544070be4ac3359d40d93a |
---|---|
record_format |
Article |
spelling |
doaj-3620eebee9544070be4ac3359d40d93a2020-11-25T01:46:01ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-01710e4580510.1371/journal.pone.0045805Oxidative stress induced inflammation initiates functional decline of tear production.Yuichi UchinoTetsuya KawakitaMasaki MiyazawaTakamasa IshiiHiromi OnouchiKayo YasudaYoko OgawaShigeto ShimmuraNaoaki IshiiKazuo TsubotaOxidative damage and inflammation are proposed to be involved in an age-related functional decline of exocrine glands. However, the molecular mechanism of how oxidative stress affects the secretory function of exocrine glands is unclear. We developed a novel mev-1 conditional transgenic mouse model (Tet-mev-1) using a modified tetracycline system (Tet-On/Off system). This mouse model demonstrated decreased tear production with morphological changes including leukocytic infiltration and fibrosis. We found that the mev-1 gene encodes Cyt-1, which is the cytochrome b(560) large subunit of succinate-ubiquinone oxidoreductase in complex II of mitochondria (homologous to succinate dehydrogenase C subunit (SDHC) in humans). The mev-1 gene induced excessive oxidative stress associated with ocular surface epithelial damage and a decrease in protein and aqueous secretory function. This new model provides evidence that mitochondrial oxidative damage in the lacrimal gland induces lacrimal dysfunction resulting in dry eye disease. Tear volume in Tet-mev-1 mice was lower than in wild type mice and histopathological analyses showed the hallmarks of lacrimal gland inflammation by intense mononuclear leukocytic infiltration and fibrosis in the lacrimal gland of Tet-mev-1 mice. These findings strongly suggest that oxidative stress can be a causative factor for the development of dry eye disease.http://europepmc.org/articles/PMC3465290?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yuichi Uchino Tetsuya Kawakita Masaki Miyazawa Takamasa Ishii Hiromi Onouchi Kayo Yasuda Yoko Ogawa Shigeto Shimmura Naoaki Ishii Kazuo Tsubota |
spellingShingle |
Yuichi Uchino Tetsuya Kawakita Masaki Miyazawa Takamasa Ishii Hiromi Onouchi Kayo Yasuda Yoko Ogawa Shigeto Shimmura Naoaki Ishii Kazuo Tsubota Oxidative stress induced inflammation initiates functional decline of tear production. PLoS ONE |
author_facet |
Yuichi Uchino Tetsuya Kawakita Masaki Miyazawa Takamasa Ishii Hiromi Onouchi Kayo Yasuda Yoko Ogawa Shigeto Shimmura Naoaki Ishii Kazuo Tsubota |
author_sort |
Yuichi Uchino |
title |
Oxidative stress induced inflammation initiates functional decline of tear production. |
title_short |
Oxidative stress induced inflammation initiates functional decline of tear production. |
title_full |
Oxidative stress induced inflammation initiates functional decline of tear production. |
title_fullStr |
Oxidative stress induced inflammation initiates functional decline of tear production. |
title_full_unstemmed |
Oxidative stress induced inflammation initiates functional decline of tear production. |
title_sort |
oxidative stress induced inflammation initiates functional decline of tear production. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2012-01-01 |
description |
Oxidative damage and inflammation are proposed to be involved in an age-related functional decline of exocrine glands. However, the molecular mechanism of how oxidative stress affects the secretory function of exocrine glands is unclear. We developed a novel mev-1 conditional transgenic mouse model (Tet-mev-1) using a modified tetracycline system (Tet-On/Off system). This mouse model demonstrated decreased tear production with morphological changes including leukocytic infiltration and fibrosis. We found that the mev-1 gene encodes Cyt-1, which is the cytochrome b(560) large subunit of succinate-ubiquinone oxidoreductase in complex II of mitochondria (homologous to succinate dehydrogenase C subunit (SDHC) in humans). The mev-1 gene induced excessive oxidative stress associated with ocular surface epithelial damage and a decrease in protein and aqueous secretory function. This new model provides evidence that mitochondrial oxidative damage in the lacrimal gland induces lacrimal dysfunction resulting in dry eye disease. Tear volume in Tet-mev-1 mice was lower than in wild type mice and histopathological analyses showed the hallmarks of lacrimal gland inflammation by intense mononuclear leukocytic infiltration and fibrosis in the lacrimal gland of Tet-mev-1 mice. These findings strongly suggest that oxidative stress can be a causative factor for the development of dry eye disease. |
url |
http://europepmc.org/articles/PMC3465290?pdf=render |
work_keys_str_mv |
AT yuichiuchino oxidativestressinducedinflammationinitiatesfunctionaldeclineoftearproduction AT tetsuyakawakita oxidativestressinducedinflammationinitiatesfunctionaldeclineoftearproduction AT masakimiyazawa oxidativestressinducedinflammationinitiatesfunctionaldeclineoftearproduction AT takamasaishii oxidativestressinducedinflammationinitiatesfunctionaldeclineoftearproduction AT hiromionouchi oxidativestressinducedinflammationinitiatesfunctionaldeclineoftearproduction AT kayoyasuda oxidativestressinducedinflammationinitiatesfunctionaldeclineoftearproduction AT yokoogawa oxidativestressinducedinflammationinitiatesfunctionaldeclineoftearproduction AT shigetoshimmura oxidativestressinducedinflammationinitiatesfunctionaldeclineoftearproduction AT naoakiishii oxidativestressinducedinflammationinitiatesfunctionaldeclineoftearproduction AT kazuotsubota oxidativestressinducedinflammationinitiatesfunctionaldeclineoftearproduction |
_version_ |
1725021270251143168 |