Novel Animal Model of Spontaneous Cerebral Petechial Hemorrhage Using Focused Ultrasound in Rats

<i>Background and Objectives:</i> Petechial cerebral hemorrhages can be caused by various factors, such as traumas, cerebral infarctions, and aging, and is related to the disruption of the blood–brain barrier or the cellular damage of blood vessels. However, there is no animal model that...

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Bibliographic Details
Main Authors: Sang-Youl Yoon, Mun Han, Chaejin Lee, Eun-Hee Lee, Moonsik Kim, Kyoung-Tae Kim, Jeong-Hyun Hwang, Sungdae Na, Juyoung Park, Ki-Su Park
Format: Article
Language:English
Published: MDPI AG 2022-06-01
Series:Medicina
Subjects:
Online Access:https://www.mdpi.com/1648-9144/58/7/881
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Summary:<i>Background and Objectives:</i> Petechial cerebral hemorrhages can be caused by various factors, such as traumas, cerebral infarctions, and aging, and is related to the disruption of the blood–brain barrier or the cellular damage of blood vessels. However, there is no animal model that recapitulates cerebral petechial hemorrhages. <i>Materials and Methods:</i> Here, we implemented a petechial hemorrhage using a novel technology, i.e., microbubble-assisted focused ultrasound (MB + FUS). <i>Results:</i> This method increases the permeability of the blood–brain barrier by directly applying mechanical force to the vascular endothelial cells through cavitation of the microbubbles. Microbubble-enhanced cavitation has the advantage of controlling the degree and location of petechial hemorrhages. <i>Conclusions:</i> We thus generated a preclinical rat model using noninvasive focal MB + FUS. This method is histologically similar to actual petechial hemorrhages of the brain and allows the achievement of a physiologically resembling petechial hemorrhage. In the future, this method shall be considered as a useful animal model for studying the pathophysiology and treatment of petechial cerebral hemorrhages.
ISSN:1010-660X
1648-9144