Literature DB >> 20805126

Hypothermia reduces secretion of vascular endothelial growth factor by cultured retinal pigment epithelial cells.

Marco Coassin1, Keith G Duncan, Kathy R Bailey, Ajay Singh, Daniel M Schwartz.   

Abstract

AIM: Visual loss in age-related macular degeneration usually develops secondary to choroidal neovascularisation. Vascular endothelial growth factor (VEGF) is a critical regulator of retinal angiogenesis and vascular permeability, especially in hypoxic conditions. We hypothesise that hypothermia may reduce the retinal pigment epithelium (RPE) metabolism and, consequently, the levels of VEGF secretion by cultured RPE cells under hypoxic conditions. The effects of hypothermia were compared with the metabolic inhibiting effects of thiopental and nicotinamide.
METHODS: ARPE-19 cells were grown in culture for up to 5 days under normoxic (20% O(2)) and hypoxic (1% O(2)) conditions at temperatures ranging from 27°C to 40°C. For experiments with pharmacological agents, thiopental and nicotinamide were added to the media. VEGF levels in the media were measured by ELISA and cell metabolic activity was measured by a fluorescent cell metabolic assay.
RESULTS: We found that hypothermia reduced ARPE-19 cell metabolism in a temperature-dependent fashion. Hypothermia also reduced ARPE-19 cell VEGF secretion in a temperature-dependent fashion. ARPE-19 cell VEGF secretion was reduced by 38% at 34°C compared with cells grown at 37°C. Conversely, ARPE-19 cell VEGF secretion was increased by 32% at 40°C compared with cells grown at 37°C. Hypoxia increased ARPE-19 cell VEGF secretion by 84% at 37°C. However, hypothermia decreased the hypoxia-induced increase of ARPE-19 cell VEGF secretion by 30%. The effect of hypothermia on ARPE-19 cell VEGF secretion was reversible after 4 days. In contrast to hypothermia, thiopental and nicotinamide were able to reduce RPE cell metabolism but not VEGF secretion.
CONCLUSION: Hypothermia decreases both VEGF secretion and cellular metabolism in ARPE-19 cells. Hypothermia also mitigates the hypoxia-induced increase in ARPE-19 cell VEGF secretion. These effects of hypothermia are potentially unique and cannot be obtained by other pharmacological agents that slow cellular metabolism.

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Year:  2010        PMID: 20805126     DOI: 10.1136/bjo.2009.168864

Source DB:  PubMed          Journal:  Br J Ophthalmol        ISSN: 0007-1161            Impact factor:   4.638


  12 in total

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Review 3.  A Revised Hemodynamic Theory of Age-Related Macular Degeneration.

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4.  Optimization of Storage Temperature for Cultured ARPE-19 Cells.

Authors:  Lara Pasovic; Tor Paaske Utheim; Rima Maria; Torstein Lyberg; Edward B Messelt; Peder Aabel; Dong Feng Chen; Xiangjun Chen; Jon Roger Eidet
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5.  Cold Shock Proteins Are Expressed in the Retina Following Exposure to Low Temperatures.

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Review 6.  Neuroprotective mechanisms and translational potential of therapeutic hypothermia in the treatment of ischemic stroke.

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Authors:  Daniel P Singh; Zohreh Barani Lonbani; Maria A Woodruff; Tony J Parker; Roland Steck; Jonathan M Peake
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8.  Hypothermia reduces VEGF-165 expression, but not osteogenic differentiation of human adipose stem cells under hypoxia.

Authors:  Nick C Leegwater; Astrid D Bakker; Jolanda M A Hogervorst; Peter A Nolte; Jenneke Klein-Nulend
Journal:  PLoS One       Date:  2017-02-06       Impact factor: 3.240

9.  Critical Functionality Effects from Storage Temperature on Human Induced Pluripotent Stem Cell-Derived Retinal Pigment Epithelium Cell Suspensions.

Authors:  Shohei Kitahata; Yuji Tanaka; Kanji Hori; Cody Kime; Sunao Sugita; Hiroshi Ueda; Masayo Takahashi
Journal:  Sci Rep       Date:  2019-02-27       Impact factor: 4.379

10.  Decreased VEGF-A and sustained PEDF expression in a human retinal pigment epithelium cell line cultured under hypothermia.

Authors:  Masayuki Takeyama; Masahiko Yoneda; Masahiko Gosho; Masayoshi Iwaki; Masahiro Zako
Journal:  Biol Res       Date:  2015-07-30       Impact factor: 5.612

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