Location and Number of Astrocytes Determine Dopaminergic Neuron Survival and Function Under 6-OHDA Stress Mediated Through Differential BDNF Release

被引:29
作者
Datta, Indrani [1 ]
Ganapathy, Kavina [2 ]
Razdan, Rema [3 ]
Bhonde, Ramesh [2 ]
机构
[1] Natl Inst Mental Hlth & Neurosci, Dept Biophys, PB 2900,Hosur Rd, Bengaluru 560029, Karnataka, India
[2] Al Ameen Coll Pharm, Dept Pharmacol, Bengaluru, Karnataka, India
[3] Manipal Univ, Sch Regenerat Med, Bengaluru, Karnataka, India
关键词
Astrocytes; Dopaminergic neurons; BDNF; Number; Region-specificity; Nitric oxide; NITRIC-OXIDE; SUBSTANTIA-NIGRA; NEUROTROPHIC FACTOR; RAT HIPPOCAMPAL; GENE-EXPRESSION; MOTOR-NEURONS; DISEASE; BRAIN; INVOLVEMENT; GLUTAMATE;
D O I
10.1007/s12035-017-0767-0
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
While astrocytes throughout the CNS share many common traits, they exhibit significant differences in function and number among brain regions. The aim of the present study is to assess the effect of region-specificity and number of astrocytes on the survival of dopaminergic neurons under stress, and to understand the possible mechanism by which these astrocytes extend neuroprotection to dopaminergic neurons. Purified astrocytes obtained from forebrain, midbrain, and hindbrain region were characterized through FACS and immunofluorescence. Co-culture experiments (using trans-wells) were then performed to measure the effect of region-specificities and numbers of astrocytes on primary midbrain culture under 6-OHDA stress. Cell survival augmented with an increase in astrocyte seeding number and total cell survival was comparable among the different region-specific astrocytes for all numbers. However, striking differences were observed in dopaminergic neuronal (TH) cell survival in the presence of midbrain astrocytes in comparison to forebrain and hindbrain astrocytes at all seeding numbers. At 75 mu M 6-OHDA insult, while cell survival was comparable in purified astrocytes from the different brain regions, a distinct increase in BDNF secretion (significantly higher than its constitutive release) was noted for midbrain astrocytes compared to forebrain and hindbrain astrocytes. The TH immunopositive population decreased when TrkB inhibitor was added to the co-culture under 6-OHDA toxicity, suggesting that BDNF released by co-cultured astrocytes plays a key role in the survival of dopaminergic neurons. This BDNF release decreased in presence of NO inhibitor and increased in the presence of NO donor (DETA/NO). We conclude that the BDNF released from astrocytes under 6-OHDA toxicity is mediated through NO release through both autocrine and paracrine signaling, and this BDNF release is primarily responsible for the differential effect of region-specific astrocytes on TH neuron survival under these conditions.
引用
收藏
页码:5505 / 5525
页数:21
相关论文
共 57 条
[1]   Heterogeneity of reactive astrocytes [J].
Anderson, Mark A. ;
Ao, Yan ;
Sofroniew, Michael V. .
NEUROSCIENCE LETTERS, 2014, 565 :23-29
[2]   Involvement of glutamate and reactive oxygen species in methylmercury neurotoxicity [J].
Aschner, M. ;
Syversen, T. ;
Souza, D. O. ;
Rocha, J. B. T. ;
Farina, M. .
BRAZILIAN JOURNAL OF MEDICAL AND BIOLOGICAL RESEARCH, 2007, 40 (03) :285-291
[3]   Nitric oxide induces rapid, calcium-dependent release of vesicular glutamate and ATP from cultured rat astrocytes [J].
Bal-Price, A ;
Moneer, Z ;
Brown, GC .
GLIA, 2002, 40 (03) :312-323
[4]   Brain-derived neurotrophic factor is required for the establishment of the proper number of dopaminergic neurons in the substantia nigra pars compacta [J].
Baquet, ZC ;
Bickford, PC ;
Jones, KR .
JOURNAL OF NEUROSCIENCE, 2005, 25 (26) :6251-6259
[5]   BDNF signaling and survival of striatal neurons [J].
Baydyuk, Maryna ;
Xu, Baoji .
FRONTIERS IN CELLULAR NEUROSCIENCE, 2014, 8
[6]   Selective neuronal vulnerability and specific glial reactions in hippocampal and neocortical organotypic cultures submitted to ischemia [J].
Bernaudin, M ;
Nouvelot, A ;
MacKenzie, ET ;
Petit, E .
EXPERIMENTAL NEUROLOGY, 1998, 150 (01) :30-39
[7]   Distinct pharmacological properties of ET-1 and ET-3 on astroglial gap junctions and Ca2+ signaling [J].
Blomstrand, F ;
Giaume, C ;
Hansson, E ;
Rönnbäck, L .
AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY, 1999, 277 (04) :C616-C627
[8]  
Bordey A, 2000, GLIA, V30, P27, DOI 10.1002/(SICI)1098-1136(200003)30:1<27::AID-GLIA4>3.0.CO
[9]  
2-#
[10]   Astrocytic iNOS-Dependent Enhancement of Synaptic Release in Mouse Neocortex [J].
Buskila, Yossi ;
Amitai, Yael .
JOURNAL OF NEUROPHYSIOLOGY, 2010, 103 (03) :1322-1328