Pericyte, but not astrocyte, hypoxia inducible factor-1 (HIF-1) drives hypoxia-induced vascular permeability in vivo
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https://hdl.handle.net/10037/26632Date
2022-01-15Type
Journal articleTidsskriftartikkel
Peer reviewed
Author
Baumann, Julia; Tsao, Chih-Chieh; Patkar, Shalmali; Huang, Sheng-Fu; Francia, Simona; Magnussen, Synnøve Norvoll; Gassmann, Max; Vogel, Johannes; Köster-Hegmann, Christina; Ogunshola, Omolara O.Abstract
Methods: To facilitate HIF-1 deletion in adult mice without developmental complications, novel Cre-inducible astro‑ cyte-targeted (GFAP-CreERT2; HIF-1αf/fl and GLAST-CreERT2; HIF-1αf/fl) and pericyte-targeted (SMMHC-CreERT2; HIF-1αf/ fl ) transgenic animals were generated. Mice in their home cages were exposed to either normoxia (21% O2) or hypoxia (8% O2) for 96 h in an oxygen-controlled humidifed glove box. All lines were similarly responsive to hypoxic challenge and post-Cre activation showed signifcantly reduced HIF-1 target gene levels in the individual cells as predicted.
Results: Unexpectedly, hypoxia-induced vascular remodelling was unafected by HIF-1 loss of function in the two astrocyte lines but efectively blocked in the pericyte line. In correlation, hypoxia-induced barrier permeability and water accumulation were abrogated only in pericyte targeted HIF-1 loss of function mice. In contrast to expectation, brain and serum levels of hypoxia-induced VEGF, TGF-β and MMPs (genes known to mediate vascular remodelling) were unafected by HIF-1 deletion in all lines. However, in agreement with the permeability data, immunofuores‑ cence and electron microscopy showed clear prevention of hypoxia-induced tight junction disruption in the pericyte loss of function line.