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光血栓形成小鼠模型在研究褪黑素作为缺血性中风后治疗工具中的应用。

Photothrombotic Mouse Models for the Study of Melatonin as a Therapeutic Tool After Ischemic Stroke.

机构信息

Department of Neurosciences, Biomedicine and Movement Sciences, University of Verona, Verona, Italy.

Division of Neuroscience, IRCCS San Raffaele Scientific Institute, Milan, Italy.

出版信息

Methods Mol Biol. 2022;2550:433-441. doi: 10.1007/978-1-0716-2593-4_42.

Abstract

Melatonin is a potent neuroprotective agent which has shown therapeutic effects in animal models of brain injury such as stroke. Currently, there are few effective treatments for the therapeutics of stroke, the second leading cause of death and a major cause of disability worldwide. As demonstrated by the high number of publications during the last two decades, there is growing interest in understanding how and if melatonin could be a possible drug for stroke in humans, given also its very low and limited toxicity. Here, we describe the detailed protocol for performing the photothrombotic model of stroke which involves the occlusion of small cerebral vessels caused by the photoactivation of the previously injected light-sensitive dye Rose Bengal. Importantly, this model allows for the study of cellular and molecular mechanisms underlying the pathophysiology of stroke and thus can be used for investigating the neuropharmacological role of melatonin and the melatonin system in stroke. In particular, future research is warranted to demonstrate how and if melatonin impacts neurodegeneration, neuroprotection, and neuro-regeneration occurring after the brain injury caused by the occlusion of cerebral vessels.

摘要

褪黑素是一种有效的神经保护剂,在中风等脑损伤动物模型中显示出治疗效果。目前,对于中风这种全球第二大致死原因和主要致残原因,治疗方法寥寥无几。过去二十年发表的大量研究论文表明,人们越来越关注褪黑素是否可能成为治疗中风的一种药物,因为它的毒性非常低且有限。在这里,我们描述了进行光血栓性中风模型的详细方案,该模型涉及通过先前注射的光敏感染料 Rose Bengal 的光激活来阻塞小脑血管。重要的是,该模型允许研究中风病理生理学的细胞和分子机制,因此可用于研究褪黑素和褪黑素系统在中风中的神经药理学作用。特别是,有必要开展未来的研究来证明褪黑素如何以及是否会影响脑损伤后发生的神经退行性变、神经保护和神经再生。

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