The long term goal of our research is twofold 1) to understand how basal forebrain cholinergic neurons (BFC) together with other local non-cholinergic neurons participate in specific basal forebrain circuits and 2) to understand the fundamental mechanisms of transneuronal interactions between BFC neurons and their afferents. To achieve this goal, we will continue the anatomical and chemical characterization of afferents to specific subpopulations of BFC neurons. Specific attempts will be made to assess whether projections from different brainstem monoaminergic nuclei, the midbrain reticular formation and from the prefrontal cortex terminate on cholinergic forebrain neurons. As a logical extension of these experiments we will identify the sources of afferents to local GABAergic and peptidergic neurons which are connected with the cholinergic neurons. These studies will be aided by using in vivo and in vitro (anterograde and retrograde) tracer techniques (PHA-L, Lucifer Yellow, etc), and double immunolabeling methods in various combinations at both the light and electron microscopic level. We will also characterize how the disruption of monoaminergic afferent systems affects neurotransmitter regulation in the BFC and other basal forebrain neuronal populations. Specifically, we will study how gene expression for monoaminergic and NGF receptors, neurotransmitter enzymes (GAD, ChAT) and neuropeptides (NPY, somatostatin) is regulated through removal of monoaminergic afferents. Furthermore. we will test the hypothesis whether the decrease of ChAT activity after monoaminergic depletion Is mediated through the forebrain GABAergic system by monitoring GABAergic activity. Defining the precise Input-output relations of the BFC will provide the necessary database for pharmacological, behavioral or clinical studies designed to understand the specific role of BFC in cortical activation or reward related events, functions in which the BFC has been implicated. Moreover, our study may provide additional clues to the mechanism of monoaminergic/cholinergic inerteractions in the basal forebrain. Such interactions may also be important in learning and memory processes, and their loss may contribute to the cognitive decline seen in aging and in dementing diseases.

Agency
National Institute of Health (NIH)
Institute
National Institute of Neurological Disorders and Stroke (NINDS)
Type
Research Project (R01)
Project #
7R01NS023945-06
Application #
3408064
Study Section
Neurology B Subcommittee 2 (NEUB)
Project Start
1986-08-01
Project End
1994-11-30
Budget Start
1993-06-01
Budget End
1993-11-30
Support Year
6
Fiscal Year
1993
Total Cost
Indirect Cost
Name
Rutgers University
Department
Type
Organized Research Units
DUNS #
130029205
City
Newark
State
NJ
Country
United States
Zip Code
07102
Ovsepian, Saak V; O'Leary, Valerie B; Zaborszky, Laszlo et al. (2018) Amyloid Plaques of Alzheimer's Disease as Hotspots of Glutamatergic Activity. Neuroscientist :1073858418791128
Lammers, Florian; Borchers, Friedrich; Feinkohl, Insa et al. (2018) Basal forebrain cholinergic system volume is associated with general cognitive ability in the elderly. Neuropsychologia 119:145-156
Yuan, Rui; Biswal, Bharat B; Zaborszky, Laszlo (2018) Functional Subdivisions of Magnocellular Cell Groups in Human Basal Forebrain: Test-Retest Resting-State Study at Ultra-high Field, and Meta-analysis. Cereb Cortex :
Záborszky, Laszlo; Gombkoto, Peter; Varsanyi, Peter et al. (2018) Specific Basal Forebrain-Cortical Cholinergic Circuits Coordinate Cognitive Operations. J Neurosci 38:9446-9458
Gielow, Matthew R; Zaborszky, Laszlo (2017) The Input-Output Relationship of the Cholinergic Basal Forebrain. Cell Rep 18:1817-1830
Cantero, Jose L; Zaborszky, Laszlo; Atienza, Mercedes (2017) Volume Loss of the Nucleus Basalis of Meynert is Associated with Atrophy of Innervated Regions in Mild Cognitive Impairment. Cereb Cortex 27:3881-3889
Bardóczi, Zsuzsanna; Pál, Balázs; K?szeghy, Áron et al. (2017) Glycinergic Input to the Mouse Basal Forebrain Cholinergic Neurons. J Neurosci 37:9534-9549
Chavez, Candice; Zaborszky, Laszlo (2017) Basal Forebrain Cholinergic-Auditory Cortical Network: Primary Versus Nonprimary Auditory Cortical Areas. Cereb Cortex 27:2335-2347
Zhang, Sheng; Hu, Sien; Fucito, Lisa M et al. (2017) Resting-State Functional Connectivity of the Basal Nucleus of Meynert in Cigarette Smokers: Dependence Level and Gender Differences. Nicotine Tob Res 19:452-459
Ovsepian, Saak V; O'Leary, Valerie B; Zaborszky, Laszlo (2016) Cholinergic Mechanisms in the Cerebral Cortex: Beyond Synaptic Transmission. Neuroscientist 22:238-51

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