An In Vivo Definition of Brain Histamine Dynamics Reveals Critical Neuromodulatory Roles for This Elusive Messenger.

dc.contributor.author

Berger, Shane N

dc.contributor.author

Baumberger, Beatrice

dc.contributor.author

Samaranayake, Srimal

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Hersey, Melinda

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Mena, Sergio

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Bain, Ian

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Duncan, William

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Reed, Michael C

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Nijhout, H Frederik

dc.contributor.author

Best, Janet

dc.contributor.author

Hashemi, Parastoo

dc.date.accessioned

2022-12-17T18:39:19Z

dc.date.available

2022-12-17T18:39:19Z

dc.date.issued

2022-11

dc.date.updated

2022-12-17T18:39:17Z

dc.description.abstract

Histamine is well known for mediating peripheral inflammation; however, this amine is also found in high concentrations in the brain where its roles are much less known. In vivo chemical dynamics are difficult to measure, thus fundamental aspects of histamine's neurochemistry remain undefined. In this work, we undertake the first in-depth characterization of real time in vivo histamine dynamics using fast electrochemical tools. We find that histamine release is sensitive to pharmacological manipulation at the level of synthesis, packaging, autoreceptors and metabolism. We find two breakthrough aspects of histamine modulation. First, differences in H3 receptor regulation between sexes show that histamine release in female mice is much more tightly regulated than in male mice under H3 or inflammatory drug challenge. We hypothesize that this finding may contribute to hormone-mediated neuroprotection mechanisms in female mice. Second, a high dose of a commonly available antihistamine, the H1 receptor inverse agonist diphenhydramine, rapidly decreases serotonin levels. This finding highlights the sheer significance of pharmaceuticals on neuromodulation. Our study opens the path to better understanding and treating histamine related disorders of the brain (such as neuroinflammation), emphasizing that sex and modulation (of serotonin) are critical factors to consider when studying/designing new histamine targeting therapeutics.

dc.identifier

ijms232314862

dc.identifier.issn

1422-0067

dc.identifier.issn

1422-0067

dc.identifier.uri

https://hdl.handle.net/10161/26373

dc.language

eng

dc.publisher

MDPI AG

dc.relation.ispartof

International journal of molecular sciences

dc.relation.isversionof

10.3390/ijms232314862

dc.subject

FSCV

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inflammation

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sex differences

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thioperamide

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voltammetry

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Female

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Animals

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Male

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Mice

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Histamine

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Serotonin

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Receptors, Histamine H3

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Histamine Agonists

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Histamine Antagonists

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Brain

dc.title

An In Vivo Definition of Brain Histamine Dynamics Reveals Critical Neuromodulatory Roles for This Elusive Messenger.

dc.type

Journal article

duke.contributor.orcid

Nijhout, H Frederik|0000-0001-5436-5345

pubs.begin-page

14862

pubs.issue

23

pubs.organisational-group

Duke

pubs.organisational-group

Trinity College of Arts & Sciences

pubs.organisational-group

Mathematics

pubs.publication-status

Published

pubs.volume

23

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