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周细胞介导的毛细血管直径调节:健康与疾病中神经血管耦合的一个组成部分。

Pericyte-mediated regulation of capillary diameter: a component of neurovascular coupling in health and disease.

作者信息

Hamilton Nicola B, Attwell David, Hall Catherine N

机构信息

Department of Neuroscience, Physiology and Pharmacology, University College London London, UK.

出版信息

Front Neuroenergetics. 2010 May 21;2. doi: 10.3389/fnene.2010.00005. eCollection 2010.

Abstract

Because regional blood flow increases in association with the increased metabolic demand generated by localized increases in neural activity, functional imaging researchers often assume that changes in blood flow are an accurate read-out of changes in underlying neural activity. An understanding of the mechanisms that link changes in neural activity to changes in blood flow is crucial for assessing the validity of this assumption, and for understanding the processes that can go wrong during disease states such as ischaemic stroke. Many studies have investigated the mechanisms of neurovascular regulation in arterioles but other evidence suggests that blood flow regulation can also occur in capillaries, because of the presence of contractile cells, pericytes, on the capillary wall. Here we review the evidence that pericytes can modulate capillary diameter in response to neuronal activity and assess the likely importance of neurovascular regulation at the capillary level for functional imaging experiments. We also discuss evidence suggesting that pericytes are particularly sensitive to damage during pathological insults such as ischaemia, Alzheimer's disease and diabetic retinopathy, and consider the potential impact that pericyte dysfunction might have on the development of therapeutic interventions and on the interpretation of functional imaging data in these disorders.

摘要

由于局部神经活动增加所产生的代谢需求增加会导致局部血流量增加,功能成像研究人员通常认为血流量的变化是潜在神经活动变化的准确反映。了解将神经活动变化与血流量变化联系起来的机制,对于评估这一假设的有效性以及理解诸如缺血性中风等疾病状态下可能出现问题的过程至关重要。许多研究已经探讨了小动脉中神经血管调节的机制,但其他证据表明,由于毛细血管壁上存在收缩细胞——周细胞,血流量调节也可能发生在毛细血管中。在这里,我们回顾了周细胞可响应神经元活动调节毛细血管直径的证据,并评估了毛细血管水平的神经血管调节在功能成像实验中的可能重要性。我们还讨论了一些证据,这些证据表明周细胞在诸如缺血、阿尔茨海默病和糖尿病视网膜病变等病理损伤期间对损伤特别敏感,并考虑了周细胞功能障碍可能对治疗干预的发展以及这些疾病中功能成像数据的解释产生的潜在影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92b3/2912025/e191316c2dec/fnene-02-00005-g001.jpg

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