Calcium transients in astrocyte endfeet cause cerebrovascular constrictions

被引:658
作者
Mulligan, SJ [1 ]
MacVicar, BA [1 ]
机构
[1] Univ British Columbia, Dept Psychiat, Brain Res Inst, Vancouver, BC V6T 2B5, Canada
基金
加拿大健康研究院; 英国惠康基金;
关键词
D O I
10.1038/nature02827
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Cerebral blood flow (CBF) is coupled to neuronal activity and is imaged in vivo to map brain activation(1). CBF is also modified by afferent projection fibres that release vasoactive neurotransmitters(2,3) in the perivascular region, principally on the astrocyte endfeet(4,5) that outline cerebral blood vessels(6). However, the role of astrocytes in the regulation of cerebrovascular tone remains uncertain. Here we determine the impact of intracellular Ca2+ concentrations ([Ca2+](i)) in astrocytes on the diameter of small arterioles by using two-photon Ca2+ uncaging(7,8) to increase [Ca2+](i). Vascular constrictions occurred when Ca2+ waves evoked by uncaging propagated into the astrocyte endfeet and caused large increases in [Ca2+](i). The vasoactive neurotransmitter noradrenaline(2,3) increased [Ca2+](i) in the astrocyte endfeet, the peak of which preceded the onset of arteriole constriction. Depressing increases in astrocyte [Ca2+](i) with BAPTA inhibited the vascular constrictions in noradrenaline. We find that constrictions induced in the cerebrovasculature by increased [Ca2+](i) in astrocyte endfeet are generated through the phospholipase A(2)-arachidonic acid pathway and 20-hydroxyeicosatetraenoic acid production. Vasoconstriction by astrocytes is a previously unknown mechanism for the regulation of CBF.
引用
收藏
页码:195 / 199
页数:5
相关论文
共 25 条
[1]  
Basarsky TA, 1998, J NEUROSCI, V18, P7189
[2]   Photolysis of caged calcium in femtoliter volumes using two-photon excitation [J].
Brown, EB ;
Shear, JB ;
Adams, SR ;
Tsien, RY ;
Webb, WW .
BIOPHYSICAL JOURNAL, 1999, 76 (01) :489-499
[3]   Two-photon imaging of capillary blood flow in olfactory bulb glomeruli [J].
Chaigneau, E ;
Oheim, M ;
Audinat, E ;
Charpak, S .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2003, 100 (22) :13081-13086
[4]  
Chillon J.M., 2002, CEREBRAL BLOOD FLOW, P395
[5]   Astroglial and vascular interactions of noradrenaline terminals in the rat cerebral cortex [J].
Cohen, Z ;
Molinatti, G ;
Hamel, E .
JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 1997, 17 (08) :894-904
[6]   Ischaemia triggered by spreading neuronal activation is inhibited by vasodilators in rats [J].
Dreier, JP ;
Petzold, G ;
Tille, K ;
Lindauer, U ;
Arnold, G ;
Heinemann, U ;
Einhäupl, KM ;
Dirnagl, U .
JOURNAL OF PHYSIOLOGY-LONDON, 2001, 531 (02) :515-526
[7]  
DUFFY S, 1995, J NEUROSCI, V15, P5535
[8]  
Duffy S, 1996, J NEUROSCI, V16, P71
[9]  
Farooqui AA, 1997, J NEUROCHEM, V69, P889
[10]   Production of 20-HETE and its role in autoregulation of cerebral blood flow [J].
Gebremedhin, D ;
Lange, AR ;
Lowry, TF ;
Taheri, MR ;
Birks, EK ;
Hudetz, AG ;
Narayanan, J ;
Falck, JR ;
Okamoto, H ;
Roman, RJ ;
Nithipatikom, K ;
Campbell, WB ;
Harder, DR .
CIRCULATION RESEARCH, 2000, 87 (01) :60-65