小胶质细胞
CX3CR1型
细胞生物学
神经科学
免疫系统
炎症
病理
生物
免疫学
医学
趋化因子
趋化因子受体
作者
Kanchan Bisht,Kenneth A. Okojie,Kaushik Sharma,Dennis H. Lentferink,Yu Sun,Hong‐Ru Chen,Joseph O. Uweru,Saipranusha Amancherla,Zainab Calcuttawala,Antony Brayan Campos-Salazar,Bruce A. Corliss,Lara Jabbour,Jordan Benderoth,Bria Friestad,William A. Mills,Brant E. Isakson,Marie‐Ève Tremblay,Chia-Yi Kuan,Ukpong B. Eyo
标识
DOI:10.1038/s41467-021-25590-8
摘要
Microglia are brain-resident immune cells with a repertoire of functions in the brain. However, the extent of their interactions with the vasculature and potential regulation of vascular physiology has been insufficiently explored. Here, we document interactions between ramified CX3CR1 + myeloid cell somata and brain capillaries. We confirm that these cells are bona fide microglia by molecular, morphological and ultrastructural approaches. Then, we give a detailed spatio-temporal characterization of these capillary-associated microglia (CAMs) comparing them with parenchymal microglia (PCMs) in their morphological activities including during microglial depletion and repopulation. Molecularly, we identify P2RY12 receptors as a regulator of CAM interactions under the control of released purines from pannexin 1 (PANX1) channels. Furthermore, microglial elimination triggered capillary dilation, blood flow increase, and impaired vasodilation that were recapitulated in P2RY12-/- and PANX1-/- mice suggesting purines released through PANX1 channels play important roles in activating microglial P2RY12 receptors to regulate neurovascular structure and function.
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