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PMID: 11102463 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Growth/differentiation factor-15/macrophage inhibitory cytokine-1 is a novel trophic factor for midbrain dopaminergic neurons in vivo.

Strelau J, Sullivan A, Böttner M, Lingor P, Falkenstein E, Suter-Crazzolara C, Galter D, Jaszai J, Krieglstein K, Unsicker K

Abstract

Transforming growth factor-betas (TGF-betas) constitute an expanding family of multifunctional cytokines with prominent roles in development, cell proliferation, differentiation, and repair. We have cloned, expressed, and raised antibodies against a distant member of the TGF-betas, growth/differentiation factor-15 (GDF-15). GDF-15 is identical to macrophage inhibitory cytokine-1 (MIC-1). GDF-15/MIC-1 mRNA and protein are widely distributed in the developing and adult CNS and peripheral nervous systems, including choroid plexus and CSF. GDF-15/MIC-1 is a potent survival promoting and protective factor for cultured and iron-intoxicated dopaminergic (DAergic) neurons cultured from the embryonic rat midbrain floor. The trophic effect of GDF-15/MIC-1 was not accompanied by an increase in cell proliferation and astroglial maturation, suggesting that GDF-15/MIC-1 probably acts directly on neurons. GDF-15/MIC-1 also protects 6-hydroxydopamine (6-OHDA)-lesioned nigrostriatal DAergic neurons in vivo. Unilateral injections of GDF-15/MIC-1 into the medial forebrain bundle just above the substantia nigra (SN) and into the left ventricle (20 microgram each) immediately before a 6-OHDA injection (8 microgram) prevented 6-OHDA-induced rotational behavior and significantly reduced losses of DAergic neurons in the SN. This protection was evident for at least 1 month. Administration of 5 microgram of GDF-15/MIC-1 in the same paradigm also provided significant neuroprotection. GDF-15/MIC-1 also promoted the serotonergic phenotype of cultured raphe neurons but did not support survival of rat motoneurons. Thus, GDF-15/MIC-1 is a novel neurotrophic factor with prominent effects on DAergic and serotonergic neurons. GDF-15/MIC-1 may therefore have a potential for the treatment of Parkinson's disease and disorders of the serotonergic system.

MeSH Terms
Animals Cell Survival/drug effects Cells, Cultured Cloning, Molecular Corpus Striatum/drug effects Cytokines/genetics,metabolism,pharmacology Dopamine/metabolism Female Growth Differentiation Factor 15 Humans Iron/pharmacology Kinesis/drug effects Mesencephalon/cytology,drug effects,embryology,metabolism Motor Neurons/cytology,drug effects Neurons/cytology,drug effects,metabolism Organ Specificity Oxidopamine/antagonists & inhibitors Raphe Nuclei/cytology,drug effects,embryology,metabolism Rats Rats, Sprague-Dawley Rats, Wistar Serotonin/metabolism Spinal Cord Substantia Nigra/drug effects Transforming Growth Factor beta/genetics,metabolism,pharmacology
Chemicals
Cytokines GDF15 protein, human Gdf15 protein, rat Growth Differentiation Factor 15 Transforming Growth Factor beta Serotonin Oxidopamine Iron Dopamine
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Strelau J
Neuroanatomy and Interdisciplinary Center for Neurosciences, University of Heidelberg, D-69120 Heidelberg, Germany.
Sullivan A
Böttner M
Lingor P
Falkenstein E
Suter-Crazzolara C
Galter D
Jaszai J
Krieglstein K
Unsicker K
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Article Info
Journal
The Journal of neuroscience : the official journal of the Society for Neuroscience
Abbr.
J Neurosci
ISSN
1529-2401
Published
2000-12-01
Pages
8597-603
Language
English
Region
United States
NLM ID
8102140
PMCID
PMC6773071
Subset
IM
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