血管张力和神经血管耦合:改进体外模型的考虑因素。

Frontiers in neuroenergetics Pub Date : 2010-08-16 eCollection Date: 2010-01-01 DOI:10.3389/fnene.2010.00016
Jessica A Filosa
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引用次数: 0

摘要

神经血管研究在了解大脑神经血管单元如何在神经元激活后实现血流量的快速和空间增加方面取得了重大进展。在所用的实验模型中,体外脑切片制备提供了独特的信息,揭示了功能性高充血所涉及的潜在信号和细胞机制。然而,这种模型最关键的局限性在于研究的血管缺乏腔内压力和流量。此外,基础血管张力的差异导致了对神经元-胶质细胞刺激后血管反应极性的不同解释。鉴于星形胶质细胞诱导的神经血管反应的复杂性,我们建议使用一种改进的体外脑片制备方法,其中保留了管腔内动脉压力和流量。在这篇综述中,我们讨论了使用脑片进行神经血管研究时需要考虑的优缺点。我们还提出了克服当前局限性的潜在方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Vascular tone and neurovascular coupling: considerations toward an improved in vitro model.

Vascular tone and neurovascular coupling: considerations toward an improved in vitro model.

Neurovascular research has made significant strides toward understanding how the brain neurovascular unit accomplishes rapid and spatial increases in blood flow following neuronal activation. Among the experimental models used, the in vitro brain slice preparation provides unique information revealing the potential signals and cellular mechanisms involved in functional hyperemia. The most crucial limitation of this model, however, is the lack of intraluminal pressure and flow in the vessels being studied. Moreover, differences in basal vascular tone have led to varied interpretations regarding the polarity of vascular responses following neuron-to-glial stimulation. Given the complexity of astrocyte-induced neurovascular responses, we propose the use of a modified in vitro brain slice preparation, where intraluminal arteriolar pressure and flow are retained. Throughout this review, we discuss the advantages and disadvantages to be considered when using brain slices for neurovascular studies. Potential ways to overcome the current limitations are proposed.

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