Literature DB >> 31278786

The estrous cycle modulates rat caudate-putamen medium spiny neuron physiology.

Jaime A Willett1,2,3,4, Jinyan Cao1,2, Ashlyn Johnson1, Opal H Patel1, David M Dorris1, John Meitzen1,2,5,6.   

Abstract

The neuroendocrine environment in which the brain operates is both dynamic and differs by sex. How differences in neuroendocrine state affect neuron properties has been significantly neglected in neuroscience research. Behavioral data across humans and rodents indicate that natural cyclical changes in steroid sex hormone production affect sensorimotor and cognitive behaviors in both normal and pathological contexts. These behaviors are critically mediated by the caudate-putamen. In the caudate-putamen, medium spiny neurons (MSNs) are the predominant and primary output neurons. MSNs express membrane-associated estrogen receptors and demonstrate estrogen sensitivity. However, how the cyclical hormone changes across the estrous cycle may modulate caudate-putamen MSN electrophysiological properties remains unknown. Here, we performed whole-cell patch-clamp recordings on male, diestrus female, proestrus female, and estrus female caudate-putamen MSNs. Action potential, passive membrane, and miniature excitatory post-synaptic current properties were assessed. Numerous MSN electrical properties robustly differed by cycle state, including resting membrane potential, rheobase, action potential threshold, maximum evoked action potential firing rate, and inward rectification. Strikingly, when considered independent of estrous cycle phase, all but one of these properties do not significantly differ from male MSNs. These data indicate that female caudate-putamen MSNs are sensitive to the estrous cycle, and more broadly, the importance of considering neuroendocrine state in studies of neuron physiology.
© 2019 Federation of European Neuroscience Societies and John Wiley & Sons Ltd.

Entities:  

Keywords:  caudate-putamen; electrophysiology; estrous cycle; excitability; medium spiny neuron; sex differences

Mesh:

Year:  2019        PMID: 31278786      PMCID: PMC6943200          DOI: 10.1111/ejn.14506

Source DB:  PubMed          Journal:  Eur J Neurosci        ISSN: 0953-816X            Impact factor:   3.698


  117 in total

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6.  Perinatal activation of ERα and ERβ but not GPER-1 masculinizes female rat caudate-putamen medium spiny neuron electrophysiological properties.

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Review 7.  The estrous cycle and 17β-estradiol modulate the electrophysiological properties of rat nucleus accumbens core medium spiny neurons.

Authors:  Amanda A Krentzel; Stephanie B Proaño; David M Dorris; Beverly Setzer; John Meitzen
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  7 in total

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