4.7 Article

Excessive vascular sprouting underlies cerebral hemorrhage in mice lacking αVβ8-TGFβ signaling in the brain

期刊

DEVELOPMENT
卷 141, 期 23, 页码 4489-4499

出版社

COMPANY OF BIOLOGISTS LTD
DOI: 10.1242/dev.107193

关键词

Angiogenesis; Brain; CNS; Hemorrhage; Sprouting; Integrin alpha V beta 8; TGF beta; Mouse

资金

  1. Pediatric Critical Care Scientist Development Program [K12HD047349]
  2. Leducq Foundation Career Development Award
  3. NIH [HL005702, K99-R00 NS070920]
  4. Knut and Alice Wallenberg Foundation
  5. European Research Council Advanced grant BBBARRIER [5R01 GM060514, 5R01 HL078564, R37 HL53949, R01 NS19090]
  6. Leducq Foundation Transatlantic Network of Excellence Award

向作者/读者索取更多资源

Vascular development of the central nervous system and blood-brain barrier (BBB) induction are closely linked processes. The role of factors that promote endothelial sprouting and vascular leak, such as vascular endothelial growth factor A, are well described, but the factors that suppress angiogenic sprouting and their impact on the BBB are poorly understood. Here, we show that integrin alpha V beta 8 activates angiosuppressive TGF beta gradients in the brain, which inhibit endothelial cell sprouting. Loss of alpha V beta 8 in the brain or downstream TGF beta 1-GFBR2-ALK5-Smad3 signaling in endothelial cells increases vascular sprouting, branching and proliferation, leading to vascular dysplasia and hemorrhage. Importantly, BBB function in Itgb8 mutants is intact during early stages of vascular dysgenesis before hemorrhage. By contrast, Pdgfb(ret/ret) mice, which exhibit severe BBB disruption and vascular leak due to pericyte deficiency, have comparatively normal vascular morphogenesis and do not exhibit brain hemorrhage. Our data therefore suggest that abnormal vascular sprouting and patterning, not BBB dysfunction, underlie developmental cerebral hemorrhage.

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