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Caralluma fimbriata extract activity involves the 5‐HT2c receptor in PWS Snord116 deletion mouse model

INTRODUCTION: In Prader–Willi syndrome (PWS), nonprotein coding small nucleolar (sno) RNAs are involved in the paternally deleted region of chromosome 15q11.2‐q13, which is believed to cause the hyperphagic phenotype of PWS. Central to this is SnoRNA116. The supplement Caralluma fimbriata extract (C...

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Autores principales: Griggs, Joanne L., Mathai, Michael L., Sinnayah, Puspha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6305914/
https://www.ncbi.nlm.nih.gov/pubmed/30353709
http://dx.doi.org/10.1002/brb3.1102
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author Griggs, Joanne L.
Mathai, Michael L.
Sinnayah, Puspha
author_facet Griggs, Joanne L.
Mathai, Michael L.
Sinnayah, Puspha
author_sort Griggs, Joanne L.
collection PubMed
description INTRODUCTION: In Prader–Willi syndrome (PWS), nonprotein coding small nucleolar (sno) RNAs are involved in the paternally deleted region of chromosome 15q11.2‐q13, which is believed to cause the hyperphagic phenotype of PWS. Central to this is SnoRNA116. The supplement Caralluma fimbriata extract (CFE) has been shown to decrease appetite behavior in some individuals with PWS. We therefore investigated the mechanism underpinning the effect of CFE on food intake in the Snord116del mouse. Experiments utilized appetite stimulants which included a 5‐hydroxytryptamine (5‐HT) 2c receptor antagonist (SB242084), as the 5‐HT2cR is implicated in central signaling of satiety. METHODS: After 9‐week chronic CFE treatment (33 mg or 100 mg kg(−1) day(−1)) or placebo, the 14‐week‐old Snord116del (SNO) and wild‐type mice (n = 72) were rotated through intraperitoneal injections of (a) isotonic saline; (b) 400 mg/kg of 2‐deoxyglucose (2DG) (glucose deprivation); (c) 100 mglkg beta‐mercaptoacetate (MA), fatty acid signaling; and (d) SB242084 (a selective 5HT2cR antagonist), with 5 days between reagents. Assessments of food intake were from baseline to 4 hr, followed by immunohistochemistry of neural activity utilizing c‐Fos, neuropeptide Y, and alpha‐melanocyte‐stimulating hormone within hypothalamic appetite pathways. RESULTS: Caralluma fimbriata extract administration decreased food intake more strongly in the SNO100CFE group with significantly stimulated food intake demonstrated during coadministration with SB242084. Though stimulatory deprivation was expected to stimulate food intake, 2DG and MA resulted in lower intake in the snord116del mice compared to the WT animals (p = <0.001). Immunohistochemical mapping of hypothalamic neural activity was consistent with the behavioral studies. CONCLUSIONS: This study identifies a role for the 5‐HT2cR in CFE‐induced appetite suppression and significant stimulatory feeding disruptions in the snord116del mouse model.
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spelling pubmed-63059142019-01-02 Caralluma fimbriata extract activity involves the 5‐HT2c receptor in PWS Snord116 deletion mouse model Griggs, Joanne L. Mathai, Michael L. Sinnayah, Puspha Brain Behav Original Research INTRODUCTION: In Prader–Willi syndrome (PWS), nonprotein coding small nucleolar (sno) RNAs are involved in the paternally deleted region of chromosome 15q11.2‐q13, which is believed to cause the hyperphagic phenotype of PWS. Central to this is SnoRNA116. The supplement Caralluma fimbriata extract (CFE) has been shown to decrease appetite behavior in some individuals with PWS. We therefore investigated the mechanism underpinning the effect of CFE on food intake in the Snord116del mouse. Experiments utilized appetite stimulants which included a 5‐hydroxytryptamine (5‐HT) 2c receptor antagonist (SB242084), as the 5‐HT2cR is implicated in central signaling of satiety. METHODS: After 9‐week chronic CFE treatment (33 mg or 100 mg kg(−1) day(−1)) or placebo, the 14‐week‐old Snord116del (SNO) and wild‐type mice (n = 72) were rotated through intraperitoneal injections of (a) isotonic saline; (b) 400 mg/kg of 2‐deoxyglucose (2DG) (glucose deprivation); (c) 100 mglkg beta‐mercaptoacetate (MA), fatty acid signaling; and (d) SB242084 (a selective 5HT2cR antagonist), with 5 days between reagents. Assessments of food intake were from baseline to 4 hr, followed by immunohistochemistry of neural activity utilizing c‐Fos, neuropeptide Y, and alpha‐melanocyte‐stimulating hormone within hypothalamic appetite pathways. RESULTS: Caralluma fimbriata extract administration decreased food intake more strongly in the SNO100CFE group with significantly stimulated food intake demonstrated during coadministration with SB242084. Though stimulatory deprivation was expected to stimulate food intake, 2DG and MA resulted in lower intake in the snord116del mice compared to the WT animals (p = <0.001). Immunohistochemical mapping of hypothalamic neural activity was consistent with the behavioral studies. CONCLUSIONS: This study identifies a role for the 5‐HT2cR in CFE‐induced appetite suppression and significant stimulatory feeding disruptions in the snord116del mouse model. John Wiley and Sons Inc. 2018-10-23 /pmc/articles/PMC6305914/ /pubmed/30353709 http://dx.doi.org/10.1002/brb3.1102 Text en © 2018 The Authors. Brain and Behavior published by Wiley Periodicals, Inc. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Griggs, Joanne L.
Mathai, Michael L.
Sinnayah, Puspha
Caralluma fimbriata extract activity involves the 5‐HT2c receptor in PWS Snord116 deletion mouse model
title Caralluma fimbriata extract activity involves the 5‐HT2c receptor in PWS Snord116 deletion mouse model
title_full Caralluma fimbriata extract activity involves the 5‐HT2c receptor in PWS Snord116 deletion mouse model
title_fullStr Caralluma fimbriata extract activity involves the 5‐HT2c receptor in PWS Snord116 deletion mouse model
title_full_unstemmed Caralluma fimbriata extract activity involves the 5‐HT2c receptor in PWS Snord116 deletion mouse model
title_short Caralluma fimbriata extract activity involves the 5‐HT2c receptor in PWS Snord116 deletion mouse model
title_sort caralluma fimbriata extract activity involves the 5‐ht2c receptor in pws snord116 deletion mouse model
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6305914/
https://www.ncbi.nlm.nih.gov/pubmed/30353709
http://dx.doi.org/10.1002/brb3.1102
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