Optogenetic mapping of feeding and self-stimulation within the lateral hypothalamus of the rat.

The lateral hypothalamus (LH) includes several anatomical subregions involved in eating and reward motivation. This study explored localization of function across different LH subregions in controlling food intake stimulated by optogenetic channelrhodopsin excitation, and in supporting laser self-st...

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Main Authors: Kevin R Urstadt, Kent C Berridge
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2020-01-01
Series:PLoS ONE
Online Access:https://storage.googleapis.com/plos-corpus-prod/10.1371/journal.pone.0224301/1/pone.0224301.pdf?X-Goog-Algorithm=GOOG4-RSA-SHA256&X-Goog-Credential=wombat-sa%40plos-prod.iam.gserviceaccount.com%2F20210221%2Fauto%2Fstorage%2Fgoog4_request&X-Goog-Date=20210221T071415Z&X-Goog-Expires=3600&X-Goog-SignedHeaders=host&X-Goog-Signature=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author Kevin R Urstadt
Kent C Berridge
author_facet Kevin R Urstadt
Kent C Berridge
author_sort Kevin R Urstadt
collection DOAJ
description The lateral hypothalamus (LH) includes several anatomical subregions involved in eating and reward motivation. This study explored localization of function across different LH subregions in controlling food intake stimulated by optogenetic channelrhodopsin excitation, and in supporting laser self-stimulation. We particularly compared the tuberal LH subregion, the posterior LH subregion, and the lateral preoptic area. Local diameters of tissue optogenetically stimulated within the LH were assessed by measuring laser-induced Fos plumes and Jun plumes via immunofluorescence surrounding optic fiber tips. Those plume diameters were used to map localization of function for behavioral effects elicited by LH optogenetic stimulation. Optogenetic stimulation of the tuberal subsection of the LH produced the most robust eating behavior and food intake initially, but produced only mild laser self-stimulation in the same rats. However, after repeated exposures to optogenetic stimulation, tuberal LH behavioral profiles shifted toward more self-stimulation and less food intake. By contrast, stimulation of the lateral preoptic area produced relatively little food intake or self-stimulation, either initially or after extended stimulation experience. Stimulation in the posterior LH subregion supported moderate self-stimulation, but not food intake, and at higher laser intensity shifted valence to evoke escape behaviors. We conclude that the tuberal LH subregion may best mediate stimulation-bound increases in food intake stimulated by optogenetic excitation. However, incentive motivational effects of tuberal LH stimulation may shift toward self-stimulation behavior after repeated stimulation. By contrast, the lateral preoptic area and posterior LH do not as readily elicit either eating behavior or laser self-stimulation, and may be more prone to higher-intensity aversive effects.
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spelling doaj-art-d543dc326aa048c4aec66b8f79b83d252025-08-20T02:00:45ZengPublic Library of Science (PLoS)PLoS ONE1932-62032020-01-01151e022430110.1371/journal.pone.0224301Optogenetic mapping of feeding and self-stimulation within the lateral hypothalamus of the rat.Kevin R UrstadtKent C BerridgeThe lateral hypothalamus (LH) includes several anatomical subregions involved in eating and reward motivation. This study explored localization of function across different LH subregions in controlling food intake stimulated by optogenetic channelrhodopsin excitation, and in supporting laser self-stimulation. We particularly compared the tuberal LH subregion, the posterior LH subregion, and the lateral preoptic area. Local diameters of tissue optogenetically stimulated within the LH were assessed by measuring laser-induced Fos plumes and Jun plumes via immunofluorescence surrounding optic fiber tips. Those plume diameters were used to map localization of function for behavioral effects elicited by LH optogenetic stimulation. Optogenetic stimulation of the tuberal subsection of the LH produced the most robust eating behavior and food intake initially, but produced only mild laser self-stimulation in the same rats. However, after repeated exposures to optogenetic stimulation, tuberal LH behavioral profiles shifted toward more self-stimulation and less food intake. By contrast, stimulation of the lateral preoptic area produced relatively little food intake or self-stimulation, either initially or after extended stimulation experience. Stimulation in the posterior LH subregion supported moderate self-stimulation, but not food intake, and at higher laser intensity shifted valence to evoke escape behaviors. We conclude that the tuberal LH subregion may best mediate stimulation-bound increases in food intake stimulated by optogenetic excitation. However, incentive motivational effects of tuberal LH stimulation may shift toward self-stimulation behavior after repeated stimulation. By contrast, the lateral preoptic area and posterior LH do not as readily elicit either eating behavior or laser self-stimulation, and may be more prone to higher-intensity aversive effects.https://storage.googleapis.com/plos-corpus-prod/10.1371/journal.pone.0224301/1/pone.0224301.pdf?X-Goog-Algorithm=GOOG4-RSA-SHA256&X-Goog-Credential=wombat-sa%40plos-prod.iam.gserviceaccount.com%2F20210221%2Fauto%2Fstorage%2Fgoog4_request&X-Goog-Date=20210221T071415Z&X-Goog-Expires=3600&X-Goog-SignedHeaders=host&X-Goog-Signature=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
spellingShingle Kevin R Urstadt
Kent C Berridge
Optogenetic mapping of feeding and self-stimulation within the lateral hypothalamus of the rat.
PLoS ONE
title Optogenetic mapping of feeding and self-stimulation within the lateral hypothalamus of the rat.
title_full Optogenetic mapping of feeding and self-stimulation within the lateral hypothalamus of the rat.
title_fullStr Optogenetic mapping of feeding and self-stimulation within the lateral hypothalamus of the rat.
title_full_unstemmed Optogenetic mapping of feeding and self-stimulation within the lateral hypothalamus of the rat.
title_short Optogenetic mapping of feeding and self-stimulation within the lateral hypothalamus of the rat.
title_sort optogenetic mapping of feeding and self stimulation within the lateral hypothalamus of the rat
url https://storage.googleapis.com/plos-corpus-prod/10.1371/journal.pone.0224301/1/pone.0224301.pdf?X-Goog-Algorithm=GOOG4-RSA-SHA256&X-Goog-Credential=wombat-sa%40plos-prod.iam.gserviceaccount.com%2F20210221%2Fauto%2Fstorage%2Fgoog4_request&X-Goog-Date=20210221T071415Z&X-Goog-Expires=3600&X-Goog-SignedHeaders=host&X-Goog-Signature=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