兔颈总动脉结扎弹性酶诱导动脉瘤的改良方法及其对周围动脉的影响。

Daraspreet Kainth, Pascal Salazar, Cyrus Safinia, Ricky Chow, Ornina Bachour, Sasan Andalib, Alexander M McKinney, Afshin A Divani
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引用次数: 0

摘要

背景与目的:兔颅内动脉瘤模型常用于临床前研究。本研究旨在展示另一种产生弹性蛋白酶诱导动脉瘤的血管外方法,以及结扎右侧颈总动脉(RCCA)如何影响血流再分配到左侧颈总动脉(LCCA)。方法:选取18只新西兰兔(4.14±0.314 kg),将3 ~ 5 U的浓缩弹性酶溶液分别应用于左右CCA根(RCCA和LCCA)外侧,形成弹性酶诱导的动脉瘤。诱导动脉瘤后,将动脉瘤与相应CCA的其余部分保持完整,将其与CCA的其余部分分离以形成独立的动脉瘤,或者将其固定在附近的组织中以影响动脉瘤相对于母血管的角度和方向。在动脉瘤形成前后进行超声检查,以收集动脉瘤囊内和周围动脉内的血流测量。在牺牲动物之前,进行了计算机断层血管造影研究。采集的动脉瘤组织用于组织学分析。结果:经血管外入路可成功形成弹性酶诱导的动脉瘤。组织学研究表明,其生物学反应与人类脑动脉瘤和先前发表的弹性酶诱导的兔动脉瘤模型相似。超声测量显示,结扎RCCA后1个月随访时,LCCA血流量明显增加。结论:已经证实了一种制造弹性蛋白酶诱导动脉瘤的替代方法。我们方法的新颖方面允许结扎一个或两个颈总动脉来创建一个单一或双侧动脉瘤,并能够控制诱导动脉瘤的方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A Modified Method for Creating Elastase-Induced Aneurysms by Ligation of Common Carotid Arteries in Rabbits and Its Effect on Surrounding Arteries.

A Modified Method for Creating Elastase-Induced Aneurysms by Ligation of Common Carotid Arteries in Rabbits and Its Effect on Surrounding Arteries.

A Modified Method for Creating Elastase-Induced Aneurysms by Ligation of Common Carotid Arteries in Rabbits and Its Effect on Surrounding Arteries.

A Modified Method for Creating Elastase-Induced Aneurysms by Ligation of Common Carotid Arteries in Rabbits and Its Effect on Surrounding Arteries.

Background and purpose: Rabbit models of intracranial aneurysms are frequently used in pre-clinical settings. This study aimed to demonstrate an alternative, extravascular method for creating elastase-induced aneurysms, and how ligation of the right common carotid arteries (RCCA) can impact flow redistribution into left CCA (LCCA).

Methods: Elastase-induced aneurysms in 18 New Zealand rabbits (4.14 ± 0.314 kg) were created by applying 3-5 U of concentrated elastase solution to the exterior of the right and left CCA roots (RCCA and LCCA). After the induction of the aneurysm, the aneurysm was either kept intact to the rest of the corresponding CCA, severed from the rest of the CCA to allow for a free standing aneurysm, or was anchored to nearby tissue to influence the angle and orientation of the aneurysm with respect to the parent vessel. Ultrasound studies were performed before and after creation of aneurysms to collect blood flow measurements inside the aneurysm pouch and surrounding arteries. Prior to sacrificing the animals, computed tomography angiography studies were performed. Harvested aneurysmal tissues were used for histological analysis.

Results: Elastase-induced aneurysms were successfully created by the extravascular approach. Histological studies showed that the biological response was similar to human cerebral aneurysms and previously published elastase-induced rabbit aneurysm models. Ultrasound measurements indicated that after the RCCA was ligated, blood flow significantly increased in the LCCA at one-month follow-up.

Conclusion: An alternate method for creating elastase-induced aneurysms has been demonstrated. The novel aspects of our method allow for ligation of one or both common carotid arteries to create a single or bilateral aneurysm with an ability to control the orientation of the induced aneurysm.

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