Microglial control of neuronal death and synaptic properties

被引:338
作者
Bessis, Alain [1 ]
Bechade, Catherine [1 ]
Bernard, Delphine [1 ]
Roumier, Anne [1 ]
机构
[1] Ecole Normale Super, Inserm U789, F-75005 Paris, France
关键词
microglia; apoptosis; synapse;
D O I
10.1002/glia.20459
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Microglia have long been characterized by their Immune function in the nervous system and are still mainly considered in a beneficial versus detrimental dialectic. However a review of literature enables to shed novel lights on microglial function under physiological conditions. It is now relevant to position these cells as full time partners of neuronal function and more specifically of synaptogenesis and developmental apoptosis. Indeed, microglia can actively control neuronal death. It has actually been shown in retina that microglial nerve growth factor (NGF) is necessary for the developmental apoptosis to occur. Similarly, in cerebellum, microglia induces developmental Purkinje cells death through respiratory burst. Furthermore, in spinal cord, microglial TNF alpha commits motoneurons to a neurotrophic dependent developmental apoptosis. Microglia can also control synaptogenesis. This is suggested by the fact that a mutation in KARAP/DAP12, a key protein of microglial activation impacts synaptic functions in hippocampus, and synapses protein content. In addition it has been now demonstrated that microglial brain-derived neurotrophin factor (BDNF) directly regulates synaptic properties in spinal cord. In conclusion, microglia can control neuronal function under physiological conditions and it is known that neuronal activity reciprocally controls microglial activation. We will discuss the importance of this cross-talk which allows microglia to orchestrate the balance between synaptogenesis and neuronal death occurring during development or injuries. (c) 2006 Wiley-Liss, Inc.
引用
收藏
页码:233 / 238
页数:6
相关论文
共 85 条
[1]   Immune function of microglia [J].
Aloisi, F .
GLIA, 2001, 36 (02) :165-179
[2]   CD200 and membrane protein E interactions in the control of myeloid cells [J].
Barclay, AN ;
Wright, GJ ;
Brooke, G ;
Brown, MH .
TRENDS IN IMMUNOLOGY, 2002, 23 (06) :285-290
[3]   Activation of microglia by secreted amyloid precursor protein evokes release of glutamate by cystine exchange and attenuates synaptic function [J].
Barger, SW ;
Basile, AS .
JOURNAL OF NEUROCHEMISTRY, 2001, 76 (03) :846-854
[4]   A new class of membrane-bound chemokine with a CX(3)C motif [J].
Bazan, JF ;
Bacon, KB ;
Hardiman, G ;
Wang, W ;
Soo, K ;
Rossi, D ;
Greaves, DR ;
Zlotnik, A ;
Schall, TJ .
NATURE, 1997, 385 (6617) :640-644
[5]   CXCR4-activated astrocyte glutamate release via TNFa: amplification by microglia triggers neurotoxicity [J].
Bezzi, P ;
Domercq, M ;
Brambilla, L ;
Galli, R ;
Schols, D ;
De Clercq, E ;
Vescovi, A ;
Bagetta, G ;
Kollias, G ;
Meldolesi, J ;
Volterra, A .
NATURE NEUROSCIENCE, 2001, 4 (07) :702-710
[6]   DISPLACEMENT OF SYNAPTIC TERMINALS FROM REGENERATING MOTONEURONS BY MICROGLIAL CELLS [J].
BLINZING.K ;
KREUTZBE.G .
ZEITSCHRIFT FUR ZELLFORSCHUNG UND MIKROSKOPISCHE ANATOMIE, 1968, 85 (02) :145-&
[7]   Vagus nerve stimulation attenuates the systemic inflammatory response to endotoxin [J].
Borovikova, LV ;
Ivanova, S ;
Zhang, MH ;
Yang, H ;
Botchkina, GI ;
Watkins, LR ;
Wang, HC ;
Abumrad, N ;
Eaton, JW ;
Tracey, KJ .
NATURE, 2000, 405 (6785) :458-462
[8]   Control of microglial neurotoxicity by the fractalkine receptor [J].
Cardona, Astrid E. ;
Pioro, Erik P. ;
Sasse, Margaret E. ;
Kostenko, Volodymyr ;
Cardona, Sandra M. ;
Dijkstra, Ineke M. ;
Huang, DeRen ;
Kidd, Grahame ;
Dombrowski, Stephen ;
Dutta, RanJan ;
Lee, Jar-Chi ;
Cook, Donald N. ;
Jung, Steffen ;
Lira, Sergio A. ;
Littman, Dan R. ;
Ransohoff, Richard M. .
NATURE NEUROSCIENCE, 2006, 9 (07) :917-924
[9]   Cell fate determination in the vertebrate retina [J].
Cepko, CL ;
Austin, CP ;
Yang, XJ ;
Alexiades, M .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1996, 93 (02) :589-595
[10]   IMMUNOHISTOCHEMICAL DETECTION OF THROMBOSPONDIN IN MICROGLIA IN THE DEVELOPING RAT-BRAIN [J].
CHAMAK, B ;
DOBBERTIN, A ;
MALLAT, M .
NEUROSCIENCE, 1995, 69 (01) :177-187