Ahmad Abdullah Shafique, Satriotomo Irawan, Fazal Jawad, Nadeau Stephen E, Doré Sylvain
Department of Anesthesiology, Center for Translational Research in Neurodegenerative Disease, University of Florida , Gainesville, FL , USA.
Research Service, Brain Rehabilitation Research Center, Malcom Randall Veterans Affairs Medical Center , Gainesville, FL , USA ; Department of Neurology, University of Florida , Gainesville, FL , USA.
Front Neurol. 2015 Aug 12;6:172. doi: 10.3389/fneur.2015.00172. eCollection 2015.
White matter (WM) injury in relation to acute neurologic conditions, especially stroke, has remained obscure until recently. Current advances in imaging technologies in the field of stroke have confirmed that WM injury plays an important role in the prognosis of stroke and suggest that WM protection is essential for functional recovery and post-stroke rehabilitation. However, due to the lack of a reproducible animal model of WM injury, the pathophysiology and mechanisms of this injury are not well studied. Moreover, producing selective WM injury in animals, especially in rodents, has proven to be challenging. Problems associated with inducing selective WM ischemic injury in the rodent derive from differences in the architecture of the brain, most particularly, the ratio of WM to gray matter in rodents compared to humans, the agents used to induce the injury, and the location of the injury. Aging, gender differences, and comorbidities further add to this complexity. This review provides a brief account of the techniques commonly used to induce general WM injury in animal models (stroke and non-stroke related) and highlights relevance, optimization issues, and translational potentials associated with this particular form of injury.
直到最近,与急性神经系统疾病,尤其是中风相关的白质(WM)损伤仍不清楚。中风领域成像技术的当前进展证实,WM损伤在中风预后中起重要作用,并表明WM保护对于功能恢复和中风后康复至关重要。然而,由于缺乏可重复的WM损伤动物模型,这种损伤的病理生理学和机制尚未得到充分研究。此外,在动物,尤其是啮齿动物中产生选择性WM损伤已被证明具有挑战性。在啮齿动物中诱导选择性WM缺血性损伤相关的问题源于大脑结构的差异,最特别的是,与人类相比,啮齿动物中WM与灰质的比例、用于诱导损伤的药物以及损伤的位置。衰老、性别差异和合并症进一步增加了这种复杂性。本综述简要介绍了在动物模型(与中风和非中风相关)中诱导一般WM损伤常用的技术,并强调了与这种特殊形式损伤相关的相关性、优化问题和转化潜力。