Astrocytes as Perspective Targets of Exercise- and Caloric Restriction‐Mimetics

被引:0
作者
Ulyana Lalo
Yuriy Pankratov
机构
[1] Immanuel Kant Baltic Federal University,School of Life Sciences
[2] University of Warwick,School of Life Sciences
来源
Neurochemical Research | 2021年 / 46卷
关键词
Caloric restriction; Exercise; Synaptic plasticity; Autophagy; Spemidine; Beclin 1; Glia-neuron interactions; Mitochondrial calcium; Aging;
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学科分类号
摘要
Enhanced mental and physical activity can have positive effects on the function of aging brain, both in the experimental animals and human patients, although cellular mechanisms underlying these effects are currently unclear. There is a growing evidence that pre-clinical stage of many neurodegenerative diseases involves changes in interactions between astrocytes and neurons. Conversely, astrocytes are strategically positioned to mediate the positive influence of physical activity and diet on neuronal function. Thus, development of therapeutic agents which could improve the astroglia-neuron communications in ageing brain is of crucial importance. Recent advances in studies of cellular mechanisms of brain longevity suggest that astrocyte-neuron communications have a vital role in the beneficial effects of caloric restriction, physical exercise and their pharmacological mimetics on synaptic homeostasis and cognitive function. In particular, our recent data indicate that noradrenaline uptake inhibitor atomoxetine can enhance astrocytic Ca2+-signaling and astroglia-driven modulation of synaptic plasticity. Similar effects were exhibited by caloric restriction-mimetics metformin and resveratrol. The emerged data also suggest that astrocytes could be involved in the modulatory action of caloric restriction and its mimetics on neuronal autophagy. Still, the efficiency of astrocyte-targeting compounds in preventing age-related cognitive decline is yet to be fully explored, in particular in the animal models of neurodegenerative diseases and autophagy impairment.
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页码:2746 / 2759
页数:13
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[31]  
Cogger VC(2019)Astroglial atrophy in Alzheimer’s disease Pflug Arch: Eur J Physiol 42 1275-202
[32]  
Fontana L(2020)Astroglial asthenia and loss of function, rather than reactivity, contribute to the ageing of the brain Pflug Arch: Eur J Physiol 35 15-285
[33]  
Simpson SJ(2011)Age-dependent remodelling of ionotropic signalling in cortical astroglia Aging Cell 82 1263-394
[34]  
Le Couteur DG(2014)Exocytosis of gliotransmitters from cortical astrocytes: implications for synaptic plasticity and aging  Biochem Soc Trans 11 208-101
[35]  
Ribeiro RV(2014)Complex and region-specific changes in astroglial markers in the aging brain Neurobiol Aging 2 153-640
[36]  
Lopez-Otin C(2014)Norepinephrine controls astroglial responsiveness to local circuit activity Neuron 18 103-27
[37]  
Galluzzi L(2020)Caloric restriction triggers morphofunctional remodeling of astrocytes and enhances synaptic plasticity in the mouse hippocampus Cell Death Dis 18 649-818
[38]  
Freije JM(2017)Exercise in a pill: the latest on exercise-mimetics Brain Plast 93 1015-159
[39]  
Madeo F(2019)Mimicking exercise: what matters most and where to next? J Physiol 101 188-257
[40]  
Kroemer G(2011)Endurance factors improve hippocampal neurogenesis and spatial memory in mice Learn Mem 11 254-1997