Nontropic actions of neurotrophins: Subcortical nerve growth factor gene delivery reverses age-related degeneration of primate cortical cholinergic innervation
Open Access
- 13 February 2001
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 98 (4) , 1941-1946
- https://doi.org/10.1073/pnas.98.4.1941
Abstract
Normal aging is associated with a significant reduction in cognitive function across primate species. However, the structural and molecular basis for this age-related decline in neural function has yet to be defined clearly. Extensive cell loss does not occur as a consequence of normal aging in human and nonhuman primate species. More recent studies have demonstrated significant reductions in functional neuronal markers in subcortical brain regions in primates as a consequence of aging, including dopaminergic and cholinergic systems, although corresponding losses in cortical innervation from these neurons have not been investigated. In the present study, we report that aging is associated with a significant 25% reduction in cortical innervation by cholinergic systems in rhesus monkeys (P < 0.001). Further, these age-related reductions are ameliorated by cellular delivery of human nerve growth factor to cholinergic somata in the basal forebrain, restoring levels of cholinergic innervation in the cortex to those of young monkeys (P = 0.89). Thus, (i) aging is associated with a significant reduction in cortical cholinergic innervation; (ii) this reduction is reversible by growth-factor delivery; and (iii) growth factors can remodel axonal terminal fields at a distance, representing a nontropic action of growth factors in modulating adult neuronal structure and function (i.e., administration of growth factors to cholinergic somata significantly increases axon density in terminal fields). These findings are relevant to potential clinical uses of growth factors to treat neurological disorders.Keywords
This publication has 61 references indexed in Scilit:
- Trks: Signal transduction and intracellular pathwaysMicroscopy Research and Technique, 1999
- Memory, language, and ageingPhilosophical Transactions Of The Royal Society B-Biological Sciences, 1997
- Decreased trkA gene expression within basal forebrain neurons in Alzheimerʼs diseaseNeuroReport, 1996
- Intracellular Signaling Pathways Activated by Neuropathic FactorsAnnual Review of Neuroscience, 1996
- Systematic Regional Variations in the Loss of Cortical Cholinergic Fibers in Alzheimer's DiseaseCerebral Cortex, 1996
- Reversal of age-dependent cognitive impairments and cholinergic neuron atrophy by NGF-secreting neural progenitors grafted to the basal forebrainNeuron, 1995
- Nerve growth factor in Alzheimerʼs disease: defective retrograde transport to nucleus basalisNeuroReport, 1995
- Somatic gene transfer to the adult primate central nervous system:in vitroandin vivocharacterization of cells genetically modified to secrete nerve growth factorNeurobiology of Disease, 1994
- Nerve Growth Factor and Alzheimer's DiseaseReviews in the Neurosciences, 1994
- Cholinergic innervation of cortex by the basal forebrain: Cytochemistry and cortical connections of the septal area, diagonal band nuclei, nucleus basalis (Substantia innominata), and hypothalamus in the rhesus monkeyJournal of Comparative Neurology, 1983