创伤性脑损伤幼体斑马鱼模型:优化神经损伤剂量以发现治疗方法和病因学。

IF 1.8 4区 生物学 Q3 BIOLOGY
Biology Open Pub Date : 2025-02-15 Epub Date: 2025-02-12 DOI:10.1242/bio.060601
Laszlo F Locskai, Taylor Gill, Samantha A W Tan, Alexander H Burton, Hadeel Alyenbaawi, Edward A Burton, W Ted Allison
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引用次数: 0

摘要

创伤性脑损伤(TBI)具有多样性和异质性,这给临床治疗和预防继发性病变(如创伤后癫痫和随后的痴呆)带来了挑战。为了开发治疗创伤性脑损伤和预防并发症的药理学策略,动物模型必须捕捉创伤性脑损伤严重程度的频谱,以更好地了解损伤期间和之后发生的病理生理事件。为了解决这些问题,我们改进了我们最近的幼虫斑马鱼TBI范式,强调滴定到不同的损伤水平。我们观察到损伤水平的增加与临床相关的损伤表型(包括创伤后癫痫发作(PTS)和tau聚集)之间的协调。这种临床前TBI模型易于实施,允许对损伤水平进行剂量调整,以模拟不同的病理,并可按比例进行中通量或高通量筛选。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A larval zebrafish model of traumatic brain injury: optimizing the dose of neurotrauma for discovery of treatments and aetiology.

Traumatic brain injuries (TBI) are diverse with heterogeneous injury pathologies, which creates challenges for the clinical treatment and prevention of secondary pathologies such as post-traumatic epilepsy and subsequent dementias. To develop pharmacological strategies that treat TBI and prevent complications, animal models must capture the spectrum of TBI severity to better understand pathophysiological events that occur during and after injury. To address such issues, we improved upon our recent larval zebrafish TBI paradigm emphasizing titrating to different injury levels. We observed coordination between an increase in injury level and clinically relevant injury phenotypes including post-traumatic seizures (PTS) and tau aggregation. This preclinical TBI model is simple to implement, allows dosing of injury levels to model diverse pathologies, and can be scaled to medium- or high-throughput screening.

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来源期刊
Biology Open
Biology Open BIOLOGY-
CiteScore
3.90
自引率
0.00%
发文量
162
审稿时长
8 weeks
期刊介绍: Biology Open (BiO) is an online Open Access journal that publishes peer-reviewed original research across all aspects of the biological sciences. BiO aims to provide rapid publication for scientifically sound observations and valid conclusions, without a requirement for perceived impact.
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