| Literature DB >> 29334947 |
Shaney L Barratt1, Thomas Blythe2, Khadija Ourradi2, Caroline Jarrett2, Gavin I Welsh3, David O Bates4, Ann B Millar2.
Abstract
Dysregulation of VEGF-A bioavailability has been implicated in the development of lung injury/fibrosis, exemplified by Idiopathic Pulmonary Fibrosis (IPF). VEGF-A is a target of the hypoxic response via its translational regulation by HIF-1α. The role of hypoxia and hyperoxia in the development and progression of IPF has not been explored. In normal lung (NF) and IPF-derived fibroblasts (FF) VEGF-Axxxa protein expression was upregulated by hypoxia, mediated through activation of VEGF-Axxxa gene transcription. VEGF-A receptors and co-receptors were differentially expressed by hypoxia and hyperoxia. Our data supports a potential role for hypoxia, hyperoxia and VEGF-Axxxa isoforms as drivers of fibrogenesis.Entities:
Keywords: Hypoxia; Idiopathic pulmonary fibrosis; Interstitial lung disease; Vascular endothelial growth factor
Mesh:
Substances:
Year: 2018 PMID: 29334947 PMCID: PMC5769544 DOI: 10.1186/s12931-017-0711-x
Source DB: PubMed Journal: Respir Res ISSN: 1465-9921
Fig. 1a Vascular endothelial growth factor-A (VEGF-A) mRNA levels in Normal (NF) and Fibrotic (FF) fibroblast total RNA lysates in response to 24 h exposure to hypoxia and hyperoxia. Using quantitative reverse transcriptase polymerase chain reactions (qRT-PCR) of total RNA cell lysates, panVEGF-A mRNA levels significantly increased in response to hypoxia in NF (****p < 0.0001) and FF (***p < 0.001). The response of FF to hypoxia was significantly attenuated compared to the NF response (****p < 0.0001). FF panVEGF-A mRNA levels also significantly increased in response to hyperoxia (p < 0.01), (NF and FF n = 6). Changes in VEGF-Axxxa mRNA levels reflected those seen for panVEGF-A with increased mRNA levels in response to hypoxia in total RNA lysates of NF (****p < 0.0001) and FF (p < 0.01), an attenuated response of FF to hypoxia compared to NF (***p < 0.001) and increased FF VEGF-Axxxa mRNA levels in response to hyperoxia (*p < 0.05), (NF and FF n = 6). In contrast, VEGF-Axxxb mRNA levels did not change in response to hypoxia or hyperoxia (NF and FF n = 6) (data not shown). Data are presented as mean fold change in expression (2^△△CT) with SEM, data analysis performed on △△CT values. Statistical analysis: analysis of variance with post hoc Holm-Sidak multiple comparisons analysis used throughout. b VEGF-A isoform protein expression in Normal (NF) and Fibrotic (FF) fibroblast cell lysates in response to 24 h exposure to hypoxia and hyperoxia. By ELISA, panVEGF-A protein expression in NF and FF cell lysates were significantly up-regulated in response to hypoxia (****p < 0.0001). The response of FF to hypoxia was significantly attenuated compared to the NF response (****p < 0.0001). Hyperoxia had no significant effect on panVEGF-A protein expression in NF and FF (NF n = 7, FF n = 7). Using a specific VEGF-A165b ELISA, there was no significant effect of either hypoxia and hyperoxia on VEGF-A165b expression in both NF and FF (NF and FF n = 6). Data presented as means with SEM, ANOVA with Holm’s Sidak multiple comparisons statistical analysis