医学
血管痉挛
蛛网膜下腔出血
脑血管痉挛
经颅多普勒
脑血流
生物标志物
心脏病学
病理
麻醉
内科学
生物化学
化学
作者
Christopher M. Jackson,John Choi,Denis Routkevitch,Ayush Pant,Laura Saleh,Xiaobu Ye,Justin M. Caplan,Judy Huang,Cameron G. McDougall,Drew M. Pardoll,Henry Brem,Rafael J. Tamargo,Michael Lim
出处
期刊:Neurosurgery
[Oxford University Press]
日期:2020-10-28
卷期号:88 (4): 855-863
被引量:26
标识
DOI:10.1093/neuros/nyaa495
摘要
Abstract BACKGROUND Cerebral vasospasm is a major source of morbidity and mortality following aneurysm rupture and has limited treatment options. OBJECTIVE To evaluate the role of programmed death-1 (PD-1) in cerebral vasospasm. METHODS Endovascular internal carotid artery perforation (ICAp) was used to induce cerebral vasospasm in mice. To evaluate the therapeutic potential of targeting PD-1, programmed death ligand-1 (PD-L1) was administered 1 h after ICAp and vasospasm was measured histologically at the level of the ICA bifurcation bilaterally. PD-1 expressing immune cell populations were evaluated by flow cytometry. To correlate these findings to patients and evaluate the potential of PD-1 as a biomarker, monocytes were isolated from the peripheral blood and analyzed by flow cytometry in a cohort of patients with ruptured cerebral aneurysms. The daily frequency of PD-1+ monocytes in the peripheral blood was correlated to transcranial Doppler velocities as well as clinical and radiographic vasospasm. RESULTS We found that PD-L1 administration prevented cerebral vasospasm by inhibiting ingress of activated Ly6c+ and CCR2+ monocytes into the brain. Human correlative studies confirmed the presence of PD-1+ monocytes in the peripheral blood of patients with ruptured aneurysms and the frequency of these cells corresponded with cerebral blood flow velocities and clinical vasospasm. CONCLUSION Our results identify PD-1+ monocytes as mediators of cerebral vasospasm and support PD-1 agonism as a novel therapeutic strategy.
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