Differential Expression of VEGF-A<sub>xxx</sub> Isoforms Is Critical for Development of Pulmonary Fibrosis.

Barratt, Shaney L; Blythe, Thomas; Jarrett, Caroline; Ourradi, Khadija; Shelley-Fraser, Golda; Day, Michael J; Qiu, Yan; Harper, Steve et al. · Am J Respir Crit Care Med · 2017

basic_science · Level V

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Abstract

Fibrosis after lung injury is related to poor outcome, and idiopathic pulmonary fibrosis (IPF) can be regarded as an exemplar. Vascular endothelial growth factor (VEGF)-A has been implicated in this context, but there are conflicting reports as to whether it is a contributory or protective factor. Differential splicing of the VEGF-A gene produces multiple functional isoforms including VEGF-A<sub>165</sub>a and VEGF-A<sub>165</sub>b, a member of the inhibitory family. To date there is no clear information on the role of VEGF-A in IPF. To establish VEGF-A isoform expression and functional effects in IPF. We used tissue sections, plasma, and lung fibroblasts from patients with IPF and control subjects. In a bleomycin-induced lung fibrosis model we used wild-type MMTV mice and a triple transgenic mouse SPC-rtTA<sup>+/-</sup>TetoCre<sup>+/-</sup>LoxP-VEGF-A<sup>+/+</sup> to conditionally induce VEGF-A isoform deletion specifically in the alveolar type II (ATII) cells of adult mice. IPF and normal lung fibroblasts differentially expressed and responded to VEGF-A<sub>165</sub>a and VEGF-A<sub>165</sub>b in terms of proliferation and matrix expression. Increased VEGF-A<sub>165</sub>b was detected in plasma of progressing patients with IPF. In a mouse model of pulmonary fibrosis, ATII-specific deficiency of VEGF-A or constitutive overexpression of VEGF-A<sub>165</sub>b inhibited the development of pulmonary fibrosis, as did treatment with intraperitoneal delivery of VEGF-A<sub>165</sub>b to wild-type mice. These results indicate that changes in the bioavailability of VEGF-A sourced from ATII cells, namely the ratio of VEGF-A<sub>xxx</sub>a to VEGF-A<sub>xxx</sub>b, are critical in development of pulmonary fibrosis and may be a paradigm for the regulation of tissue repair.

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