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1.
Neuroscience ; 303: 569-76, 2015 Sep 10.
Article in English | MEDLINE | ID: mdl-26166725

ABSTRACT

Previous studies have shown that glial cell line-derived neurotrophic factor (GDNF) exerts significant neuroprotective effects on substantia nigra (SN) neurons in the rat 6-hydroxydopamine (6-OHDA) model of Parkinson's disease (PD). In this study we used enzyme-linked immunosorbent assay (ELISA) to determine GDNF brain levels and distribution to target regions (i.e. striatum and SN) following intranasal administration of GDNF at different time points after administration. Brain levels increased significantly within 1h following a single 50-µg dose of GDNF in a liposomal formulation, returning to baseline by 24h. In a second study, different doses of GDNF (10-150 µg) in phosphate-buffered saline (PBS) were studied at the 1-h time point. Dose-dependent increases in brain GDNF levels were observed with apparent saturation of uptake at doses above 100 µg. Liposomes delivered 10-fold more GDNF to brain than PBS despite yielding similar neuroprotective efficacy in the 6-OHDA model, suggesting incomplete release of GDNF from liposomes in tissue. In a third study, autoradiography was performed on brain sections taken 1h after intranasal (125)I-labeled GDNF. Radioactivity was detected throughout the brain along the rostral-to-caudal axis, indicating that nasally administered GDNF can reach target areas. Collectively, these results demonstrate that intranasal administration of GDNF in liposomes or PBS achieves significant increases in GDNF in target brain areas, supporting use of intranasal administration as a non-invasive means of delivering GDNF to the brain to protect dopamine neurons and arrest disease progression in PD.


Subject(s)
Brain/drug effects , Brain/metabolism , Glial Cell Line-Derived Neurotrophic Factor/administration & dosage , Glial Cell Line-Derived Neurotrophic Factor/metabolism , Administration, Intranasal , Analysis of Variance , Animals , Autoradiography , Dose-Response Relationship, Drug , Drug Delivery Systems , Enzyme-Linked Immunosorbent Assay , Iodine Isotopes/pharmacokinetics , Male , Rats , Rats, Sprague-Dawley , Time Factors
2.
Genes Brain Behav ; 10(2): 186-98, 2011 Mar.
Article in English | MEDLINE | ID: mdl-20860702

ABSTRACT

Brain-derived neurotrophic factor (BDNF) is critical in synaptic plasticity and in the survival and function of midbrain dopamine neurons. In this study, we assessed the effects of a partial genetic deletion of BDNF on motor function and dopamine (DA) neurotransmitter measures by comparing Bdnf(+/-) with wildtype mice (WT) at different ages. Bdnf(+/-) and WT mice had similar body weights until 12 months of age; however, at 21 months, Bdnf(+/-) mice were significantly heavier than WT mice. Horizontal and vertical motor activity was reduced for Bdnf(+/-) compared to WT mice, but was not influenced by age. Performance on an accelerating rotarod declined with age for both genotypes and was exacerbated for Bdnf(+/-) mice. Body weight did not correlate with any of the three behavioral measures studied. Dopamine neurotransmitter markers indicated no genotypic difference in striatal tyrosine hydroxylase, DA transporter (DAT) or vesicular monoamine transporter 2 (VMAT2) immunoreactivity at any age. However, DA transport via DAT (starting at 12 months) and VMAT2 (starting at 3 months) as well as KCl-stimulated DA release were reduced in Bdnf(+/-) mice and declined with age suggesting an increasingly important role for BDNF in the release and uptake of DA with the aging process. These findings suggest that a BDNF expression deficit becomes more critical to dopaminergic dynamics and related behavioral activities with increasing age.


Subject(s)
Aging/physiology , Brain-Derived Neurotrophic Factor/genetics , Brain-Derived Neurotrophic Factor/physiology , Dopamine/physiology , Motor Activity/physiology , Animals , Body Weight/physiology , Chromatography, High Pressure Liquid , Corpus Striatum/physiology , Dopamine Plasma Membrane Transport Proteins/metabolism , Enzyme-Linked Immunosorbent Assay , Extracellular Space/physiology , Immunohistochemistry , Mice , Mice, Inbred C57BL , Mice, Knockout , Microdialysis , Postural Balance/physiology , Potassium/pharmacology , Substantia Nigra/physiology , Synaptic Vesicles/metabolism , Synaptosomes/drug effects , Synaptosomes/metabolism , Vesicular Monoamine Transport Proteins/metabolism
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