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ADAM10-dependent disruption of N-cadherin and ventricular zone in post-hemorrhagic hydrocephalus

作者:Castaneyra-Ruiz L, Garcia-Bonilla M, Isaacs AM, Morales DM, Otun A, Michenkova M, Zwick SH, Wardenburg JB, Paulson JN, Castaneyra-Perdomo A, Dahiya SM, Ge X, McAllister JP 2nd, Limbrick DD Jr · 发表于:Experimental neurology · 年份:2026 · DOI:10.1016/j.expneurol.2026.115941 · 研究领域:ADAM10、Cadherins、Cleavage、Hydrocephalus、Neuroepithelial/ependymal disruption、Ventriculomegaly

Intraventricular hemorrhage (IVH) and subsequent post-hemorrhagic hydrocephalus (PHH) are common, severe complications of preterm birth associated with substantial morbidity and mortality. The pathophysiology of IVH/PHH involves the disruption of N-cadherin-mediated cell junctions in the ventricular zone (VZ), impaired differentiation of radial glial cells into ependymal cells, and reactive astrogliosis. A disintegrin and metalloproteinase domain-containing protein 10 (ADAM10) is a widely distributed metalloproteinase known to cleave cell junction proteins under inflammatory conditions similar to IVH/PHH. We hypothesize that ADAM10 hyperactivity mediates the cleavage of N-cadherin, leading to VZ disruption and the development of ventriculomegaly in PHH. Human postmortem samples with IVH were examined by immunofluorescence. Two/four-day-old (P2-P4) mice received intraventricular injections of lysed blood to model IVH and subsequent PHH. Additionally, the ADAM10 agonist α-hemolysin (Hla) and the specific inhibitor GI254023X were used to modulate its enzyme activity in vivo and in vitro [using neural stem cell (NSC)/ependymal cultures]. Human IVH samples showed NSC-ependyma alterations associated with ADAM10-dependent N-cadherin cleavage. Similarly, mice injected with blood-induced PHH displayed VZ disruption, N-cadherin cleavage, and ADAM10 activation compared to controls (p < 0.05). In vitro, Hla-induced ADAM10 activation triggered N-cadherin cleavage in NSC-ependymal cells (p...