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在动物疾病模型中观察血脑屏障功能障碍。

Imaging blood-brain barrier dysfunction in animal disease models.

机构信息

Department of Experimental Neurology, Center for Stroke Research Berlin, Charité-University Medicine Berlin, Berlin, Germany.

出版信息

Epilepsia. 2012 Nov;53 Suppl 6:14-21. doi: 10.1111/j.1528-1167.2012.03698.x.

Abstract

The blood-brain barrier (BBB) is a highly complex structure, which separates the extracellular fluid of the central nervous system (CNS) from the blood of CNS vessels. A wide range of neurologic conditions, including stroke, epilepsy, Alzheimer's disease, and brain tumors, are associated with perturbations of the BBB that contribute to their pathology. The common consequence of a BBB dysfunction is increased permeability, leading to extravasation of plasma constituents and vasogenic brain edema. The BBB impairment can persist for long periods, being involved in secondary inflammation and neuronal dysfunction, thus contributing to disease pathogenesis. Therefore, reliable imaging of the BBB impairment is of major importance in both clinical management of brain diseases and in experimental research. From landmark studies by Ehrlich and Goldman, the use of dyes (probes) has played a critical role in understanding BBB functions. In recent years methodologic advances in morphologic and functional brain imaging have provided insight into cellular and molecular interactions underlying BBB dysfunction in animal disease models. These imaging techniques, which range from in situ staining to noninvasive in vivo imaging, have different spatial resolution, sensitivity, and capacity for quantitative and kinetic measures of the BBB impairment. Despite significant advances, the translation of these techniques into clinical applications remains slow. This review outlines key recent advances in imaging techniques that have contributed to the understanding of BBB dysfunction in disease and discusses major obstacles and opportunities to advance these techniques into the clinical realm.

摘要

血脑屏障 (BBB) 是一种高度复杂的结构,将中枢神经系统 (CNS) 的细胞外液与 CNS 血管中的血液分隔开来。包括中风、癫痫、阿尔茨海默病和脑肿瘤在内的多种神经疾病都与 BBB 的破坏有关,这些破坏会导致疾病的发生。BBB 功能障碍的常见后果是通透性增加,导致血浆成分外渗和血管源性脑水肿。BBB 损伤可持续很长时间,参与继发性炎症和神经元功能障碍,从而促进疾病的发病机制。因此,可靠地成像 BBB 损伤对于脑疾病的临床管理和实验研究都具有重要意义。从 Ehrlich 和 Goldman 的开创性研究开始,染料(探针)的使用在理解 BBB 功能方面发挥了关键作用。近年来,形态和功能脑成像方法的进展为动物疾病模型中 BBB 功能障碍的细胞和分子相互作用提供了深入了解。这些成像技术从原位染色到非侵入性的体内成像,具有不同的空间分辨率、灵敏度以及定量和动力学测量 BBB 损伤的能力。尽管取得了重大进展,但这些技术向临床应用的转化仍然缓慢。本文综述了成像技术的最新进展,这些进展有助于理解疾病中的 BBB 功能障碍,并讨论了将这些技术推进到临床领域的主要障碍和机遇。

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