Homeostatic and injury-induced microglia behavior in the aging brain

被引:230
作者
Hefendehl, Jasmin K. [1 ]
Neher, Jonas J. [1 ]
Suehs, Rafael B. [1 ]
Kohsaka, Shinichi [2 ]
Skodras, Angelos [1 ,3 ]
Jucker, Mathias [1 ,3 ]
机构
[1] Univ Tubingen, Dept Cellular Neurol, Hertie Inst Clin Brain Res, D-72076 Tubingen, Germany
[2] Natl Inst Neurosci, Dept Neurochem, Kodaira, Tokyo 1878502, Japan
[3] DZNE, German Ctr Neurodegenerat Dis, D-72076 Tubingen, Germany
关键词
aging; in vivo imaging; microglia; neocortex; neurodegeneration; IN-VIVO; CELLS; MICE; MAINTENANCE; PHYSIOLOGY; MODEL;
D O I
10.1111/acel.12149
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Microglia cells are essential for brain homeostasis and have essential roles in neurodegenerative diseases. Aging is the main risk factor for most neurodegenerative diseases, and age-related changes in microglia may contribute to the susceptibility of the aging brain to dysfunction and neurodegeneration. We have analyzed morphology and dynamic behavior of neocortical microglia in their physiological environment in young adult (3-month-old), adult (11- to 12-month-old), and aged (26- to 27-month-old) C57BL/6J-Iba1-eGFP mice using in vivo 2-photon microscopy. Results show that surveying microglial cells in the neocortex exhibit age-related soma volume increase, shortening of processes, and loss of homogeneous tissue distribution. Furthermore, microglial process speed significantly decreased with age. While only a small population of microglia showed soma movement in adult mice, the microglia population with soma movement was increased in aged mice. However, in response to tissue injury, the dynamic microglial response was age-dependently diminished. These results provide novel insights into microglial behavior and indicate that microglial dysfunction in the aging brain may contribute to age-related cognitive decline and neurodegenerative diseases.
引用
收藏
页码:60 / 69
页数:10
相关论文
共 42 条
[1]  
Abramoff MD, 2002, IEEE T MED IMAGING, V21, P1
[2]   Local self-renewal can sustain CNS microglia maintenance and function throughout adult life [J].
Ajami, Bahareh ;
Bennett, Jami L. ;
Krieger, Charles ;
Tetzlaff, Wolfram ;
Rossi, Fabio M. V. .
NATURE NEUROSCIENCE, 2007, 10 (12) :1538-1543
[3]   Neural plasticity in the ageing brain [J].
Burke, SN ;
Barnes, CA .
NATURE REVIEWS NEUROSCIENCE, 2006, 7 (01) :30-40
[4]   Microglia in the aging brain [J].
Conde, Jessica R. ;
Streit, Wolfgang J. .
JOURNAL OF NEUROPATHOLOGY AND EXPERIMENTAL NEUROLOGY, 2006, 65 (03) :199-203
[5]   The immunology of neurodegeneration [J].
Czirr, Eva ;
Wyss-Coray, Tony .
JOURNAL OF CLINICAL INVESTIGATION, 2012, 122 (04) :1156-1163
[6]   Age-related alterations in the dynamic behavior of microglia [J].
Damani, Mausam R. ;
Zhao, Lian ;
Fontainhas, Aurora M. ;
Amaral, Juan ;
Fariss, Robert N. ;
Wong, Wai T. .
AGING CELL, 2011, 10 (02) :263-276
[7]   ATP mediates rapid microglial response to local brain injury in vivo [J].
Davalos, D ;
Grutzendler, J ;
Yang, G ;
Kim, JV ;
Zuo, Y ;
Jung, S ;
Littman, DR ;
Dustin, ML ;
Gan, WB .
NATURE NEUROSCIENCE, 2005, 8 (06) :752-758
[8]   Evidence that aging and amyloid promote microglial cell senescence [J].
Flanary, Barry E. ;
Sammons, Nicole W. ;
Nguyen, Cuong ;
Walker, Douglas ;
Streit, Wolfgang J. .
REJUVENATION RESEARCH, 2007, 10 (01) :61-74
[9]   Microglia: biology and pathology [J].
Graeber, Manuel B. ;
Streit, Wolfgang J. .
ACTA NEUROPATHOLOGICA, 2010, 119 (01) :89-105
[10]   Formation and maintenance of Alzheimer's disease β-amyloid plaques in the absence of microglia [J].
Grathwohl, Stefan A. ;
Kaelin, Roland E. ;
Bolmont, Tristan ;
Prokop, Stefan ;
Winkelmann, Georg ;
Kaeser, Stephan A. ;
Odenthal, Joerg ;
Radde, Rebecca ;
Eldh, Therese ;
Gandy, Sam ;
Aguzzi, Adriano ;
Staufenbiel, Matthias ;
Mathews, Paul M. ;
Wolburg, Hartwig ;
Heppner, Frank L. ;
Jucker, Mathias .
NATURE NEUROSCIENCE, 2009, 12 (11) :1361-1363