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一种使用超声引导颈动脉穿刺的注射剂栓塞梗死潜能的兔模型。

A rabbit model for embolic infarct potentials of injectables using ultrasound-guided carotid artery puncture.

机构信息

College of Medicine, Seoul National University, Seoul, Korea.

Seoul Metropolitan Government-Seoul National University Boramae Medical Center, Seoul, Korea.

出版信息

Sci Rep. 2022 Nov 10;12(1):19269. doi: 10.1038/s41598-022-21896-9.

Abstract

In order to evaluate the in vivo thrombogenicity of injectable agents, a suitable animal model is needed. We introduce an ultrasound-guided non-selective cerebral artery occlusion model via the common carotid arteries of rabbits. A total of 30 rabbits were assigned to an experimental group (n = 20) and a control group (n = 10). Each group received 2 mL suspension of embolic agent or 2 mL of normal saline, respectively, under ultrasound guidance. The animals were observed for immediate reaction and underwent magnetic resonance imaging (MRI) scan. Follow-up neurologic examination was conducted 24 h following the procedure. In 7 of the 30 rabbits, 2 in the control group and 5 in the experimental group, the administration of either normal saline or the embolic agent failed. Among the successfully injected 15 experimental animals, 14 showed neurologic impairment or deceased, whereas 1 animal did not show significant neurologic deficit. The MRI of 4 experimental animals showed detectable cerebral infarction on diffusion-weighted imaging. None of the 8 control animals showed neurologic abnormality and their brain MRI was normal. Our minimally invasive model is technically feasible and competent to show thrombogenecity of an injectable agent and consequent in vivo neurologic outcome.

摘要

为了评估可注射制剂的体内血栓形成性,需要合适的动物模型。我们介绍了一种通过兔颈总动脉进行的超声引导非选择性大脑中动脉闭塞模型。共 30 只兔子被分为实验组(n=20)和对照组(n=10)。每组在超声引导下分别接受 2ml 栓塞剂混悬液或 2ml 生理盐水。观察动物的即刻反应,并进行磁共振成像(MRI)扫描。在操作后 24 小时进行后续神经检查。在 30 只兔子中,有 7 只(对照组 2 只,实验组 5 只)注射生理盐水或栓塞剂失败。在成功注射的 15 只实验动物中,有 14 只出现神经功能障碍或死亡,而 1 只动物没有明显的神经功能缺陷。4 只实验动物的 MRI 显示弥散加权成像上可检测到脑梗死。8 只对照动物均未出现神经异常,其脑部 MRI 正常。我们的微创模型在技术上是可行的,能够显示可注射制剂的血栓形成性及其随后的体内神经学结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4685/9649683/e9ca41a5a17c/41598_2022_21896_Fig1_HTML.jpg

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