Literature DB >> 16478623

BDNF heterozygous mice demonstrate age-related changes in striatal and nigral gene expression.

Alicia J Saylor1, Gloria E Meredith, Michael S Vercillo, Daniel S Zahm, Jacqueline F McGinty.   

Abstract

TrkB receptors mediate the effects of BDNF on striatal medium spiny neurons and mesencephalic dopamine neurons. The effect of partial BDNF gene deletion on locomotor activity and the gene expression of these neurons was evaluated at 3, 12, and 24 months of age in BDNF heterozygous (BDNF(LacZ/neo+)) and wildtype mice. BDNF(LacZ/neo+) mice displayed less spontaneous horizontal activity than wildtypes at 3 and 24 months of age. Whereas striatal preproenkephalin and preprodynorphin mRNA and mesencephalic tyrosine hydroxylase mRNA levels were significantly lower at all ages in BDNF(LacZ/neo+) mice, GAD67 mRNA was only lower at 24 months. In contrast, BDNF(LacZ/neo+) mice expressed more trkB mRNA in the striatum at 3 months and less at 24 months of age than wildtypes. Total striatal cell number in the two genotypes was not different at 12 months of age, whereas Golgi staining revealed that the spine density on distal dendrites of medium spiny neurons was less in BDNF(LacZ/neo+) mice than in wildtypes at 24 months of age. These data indicate that endogenous BDNF is required to maintain the normal phenotype and functioning of striatal projection neurons and mesencephalic dopamine neurons and that exaggerated dysfunction of these neurons and a concomitant decline in locomotor behavior occurs during aging.

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Year:  2006        PMID: 16478623     DOI: 10.1016/j.expneurol.2006.01.004

Source DB:  PubMed          Journal:  Exp Neurol        ISSN: 0014-4886            Impact factor:   5.330


  18 in total

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2.  Age and facial nerve axotomy-induced T cell trafficking: relation to microglial and motor neuron status.

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Review 3.  Translating neurobehavioural endpoints of developmental neurotoxicity tests into in vitro assays and readouts.

Authors:  Christoph van Thriel; Remco H S Westerink; Christian Beste; Ambuja S Bale; Pamela J Lein; Marcel Leist
Journal:  Neurotoxicology       Date:  2011-10-12       Impact factor: 4.294

4.  BDNF may play a differential role in the protective effect of the mGluR2/3 agonist LY379268 on striatal projection neurons in R6/2 Huntington's disease mice.

Authors:  A Reiner; H B Wang; N Del Mar; K Sakata; W Yoo; Y P Deng
Journal:  Brain Res       Date:  2012-07-20       Impact factor: 3.252

5.  The TrkB-positive dopaminergic neurons are less sensitive to MPTP insult in the substantia nigra of adult C57/BL mice.

Authors:  Yin-Xiu Ding; Yi Xia; Xi-Ying Jiao; Li Duan; Jun Yu; Xi Wang; Liang-Wei Chen
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6.  The Role of BDNF in Age-Dependent Changes of Excitatory and Inhibitory Synaptic Markers in the Human Prefrontal Cortex.

Authors:  Hyunjung Oh; David A Lewis; Etienne Sibille
Journal:  Neuropsychopharmacology       Date:  2016-07-15       Impact factor: 7.853

7.  BDNF in the Aged Brain: Translational Implications for Parkinson's Disease.

Authors:  N M Mercado; T J Collier; C E Sortwell; K Steece-Collier
Journal:  Austin Neurol Neurosci       Date:  2017-09-19

8.  Amphetamine-induced locomotion and gene expression are altered in BDNF heterozygous mice.

Authors:  A J Saylor; J F McGinty
Journal:  Genes Brain Behav       Date:  2008-08-04       Impact factor: 3.449

9.  Evidence that BDNF regulates heart rate by a mechanism involving increased brainstem parasympathetic neuron excitability.

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Review 10.  Regulation of psychostimulant-induced signaling and gene expression in the striatum.

Authors:  Jacqueline F McGinty; Xiangdang D Shi; Marek Schwendt; Alicia Saylor; Shigenobu Toda
Journal:  J Neurochem       Date:  2008-01-21       Impact factor: 5.372

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