The goal of this proposal is to define the role of oligodendrocytes, the traditional myelinating cells of the central nervous system, as producers of trophic molecules during development. In this capacity, it is hypothesized that oligodendrocytes produce NGF, BDNF, and NT3, molecules that affect survival and function of oligodendrocytes, as well as local neurons. Local neurons, in turn, regulate oligodendrocyte function. It is suggested that critical autocrine and paracrine interactions may exist to optimize survival and function of oligodendrocytes and related neurons in specific brain regions. This issue will be addressed in oligodendrocyte populations associated with the basal forebrain, a region well-known to be sensitive to neurotrophins. Preliminary studies suggest that this oligodendrocyte population expresses and responds to neurotrophins and is regulated by neural signals. To investigate the role of oligodendrocytes as trophin producers the study will 1) examine the maturation of oligodendrocytes as trophin producers and trophin responders during development in culture, 2) investigate the effects of neurotrophin molecules on oligodendrocyte maturation, 3) define regulation of basal forebrain neurons by oligodendrocytes, 4) define the role of neural signaling on oligodendrocyte development, and 5) determine whether effects in culture are relevant in vivo. These studies are designed to explore the role of oligodendrocyte as providers of the trophic molecules, NGF, BDNF, and NT3. It is proposed that these neurotrophins provide trophic support for oligodendrocytes as well as local neuronal populations. The studies will identify factors that support oligodendrocyte function. As such, they promise to provide new insights into deficits that may occur in demyelinating diseases.

Agency
National Institute of Health (NIH)
Institute
National Institute of Neurological Disorders and Stroke (NINDS)
Type
Research Project (R01)
Project #
5R01NS036647-02
Application #
2892288
Study Section
Neurology B Subcommittee 2 (NEUB)
Program Officer
Kerza-Kwiatecki, a P
Project Start
1998-06-01
Project End
2001-05-31
Budget Start
1999-06-01
Budget End
2000-05-31
Support Year
2
Fiscal Year
1999
Total Cost
Indirect Cost
Name
University of Medicine & Dentistry of NJ
Department
Neurosciences
Type
Schools of Medicine
DUNS #
622146454
City
Piscataway
State
NJ
Country
United States
Zip Code
08854
Yu, Qili; Hui, Ryan; Park, Jiyoung et al. (2017) Strain differences in cuprizone induced demyelination. Cell Biosci 7:59
Huang, Yangyang; Dreyfus, Cheryl F (2016) The role of growth factors as a therapeutic approach to demyelinating disease. Exp Neurol 283:531-40
Tsiperson, Vladislav; Huang, Yangyang; Bagayogo, Issa et al. (2015) Brain-derived neurotrophic factor deficiency restricts proliferation of oligodendrocyte progenitors following cuprizone-induced demyelination. ASN Neuro 7:
Liu, Junli; Tian, Daishi; Murugan, Madhuvika et al. (2015) Microglial Hv1 proton channel promotes cuprizone-induced demyelination through oxidative damage. J Neurochem 135:347-56
Fulmer, Clifton G; VonDran, Melissa W; Stillman, Althea A et al. (2014) Astrocyte-derived BDNF supports myelin protein synthesis after cuprizone-induced demyelination. J Neurosci 34:8186-96
Fulmer, Clifton G; Dreyfus, Cheryl F (2013) Culturing oligodendrocyte lineage cells from neonatal rats. Methods Mol Biol 1018:81-91
VonDran, Melissa W; Singh, Harmandeep; Honeywell, Jean Z et al. (2011) Levels of BDNF impact oligodendrocyte lineage cells following a cuprizone lesion. J Neurosci 31:14182-90
Vondran, Melissa W; Clinton-Luke, Patricia; Honeywell, Jean Z et al. (2010) BDNF+/- mice exhibit deficits in oligodendrocyte lineage cells of the basal forebrain. Glia 58:848-56
Van't Veer, Ashlee; Du, Yangzhou; Fischer, Tanya Z et al. (2009) Brain-derived neurotrophic factor effects on oligodendrocyte progenitors of the basal forebrain are mediated through trkB and the MAP kinase pathway. J Neurosci Res 87:69-78
Dai, Xudong; Lercher, Lauren D; Clinton, Patricia M et al. (2003) The trophic role of oligodendrocytes in the basal forebrain. J Neurosci 23:5846-53