Pharmacological Stabilization of Intracranial Aneurysms in Mice

医学 蛛网膜下腔出血 动脉瘤 米诺环素 强力霉素 剪裁(形态学) 外科 放射科 语言学 生物 微生物学 哲学 抗生素
作者
Hiroshi Makino,Yoshiteru Tada,Kosuke Wada,Elena I. Liang,Mayland Chang,Shahriar Mobashery,Yasuhisa Kanematsu,Chie Kurihara,Emma Palova,Miyuki Kanematsu,Keiko T. Kitazato,Tomoki Hashimoto
出处
期刊:Stroke [Lippincott Williams & Wilkins]
卷期号:43 (9): 2450-2456 被引量:93
标识
DOI:10.1161/strokeaha.112.659821
摘要

Background and Purpose— An increasing number of unruptured intracranial aneurysms are being detected, partly due to the increased use of brain imaging techniques. Pharmacological stabilization of aneurysms for the prevention of aneurysmal rupture could potentially be an attractive alternative approach to clipping or coiling in patients with unruptured intracranial aneurysms. We have developed a mouse model of intracranial aneurysm that recapitulates key features of intracranial aneurysms. In this model, subarachnoid hemorrhage from aneurysmal rupture causes neurological symptoms that can be easily detected by a simple neurological examination. Using this model, we tested whether anti-inflammatory agents such as tetracycline derivatives, or a selective inhibitor of matrix metalloproteinases-2 and -9 (SB-3CT), can prevent the rupture of intracranial aneurysms. Methods— Aneurysms were induced by a combination of induced hypertension and a single injection of elastase into the cerebrospinal fluid in mice. Treatment with minocycline, doxycycline, or SB-3CT was started 6 days after aneurysm induction. Aneurysmal rupture was detected by neurological symptoms and confirmed by the presence of intracranial aneurysms with subarachnoid hemorrhage. Results— Minocycline and doxycycline significantly reduced rupture rates (vehicle versus doxycycline=80% versus 35%, P <0.05; vehicle versus minocycline=73% versus 24%, P <0.05) without affecting the overall incidence of aneurysms. However, SB-3CT did not affect the rupture rate (62% versus 55%, P =0.53). Conclusions— Our data established the feasibility of using a mouse model of intracranial aneurysm to test pharmacological stabilization of aneurysms. Tetracycline derivatives could be potentially effective in preventing aneurysmal rupture.
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