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The LepR-mediated leptin transport across brain barriers controls food reward

OBJECTIVE: Leptin is a key hormone in the control of appetite and body weight. Predominantly produced by white adipose tissue, it acts on the brain to inhibit homeostatic feeding and food reward. Leptin has free access to circumventricular organs, such as the median eminence, but entry into other br...

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Autores principales: Di Spiezio, Alessandro, Sandin, Elvira Sonia, Dore, Riccardo, Müller-Fielitz, Helge, Storck, Steffen E., Bernau, Mareike, Mier, Walter, Oster, Henrik, Jöhren, Olaf, Pietrzik, Claus U., Lehnert, Hendrik, Schwaninger, Markus
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5985039/
https://www.ncbi.nlm.nih.gov/pubmed/29254602
http://dx.doi.org/10.1016/j.molmet.2017.12.001
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author Di Spiezio, Alessandro
Sandin, Elvira Sonia
Dore, Riccardo
Müller-Fielitz, Helge
Storck, Steffen E.
Bernau, Mareike
Mier, Walter
Oster, Henrik
Jöhren, Olaf
Pietrzik, Claus U.
Lehnert, Hendrik
Schwaninger, Markus
author_facet Di Spiezio, Alessandro
Sandin, Elvira Sonia
Dore, Riccardo
Müller-Fielitz, Helge
Storck, Steffen E.
Bernau, Mareike
Mier, Walter
Oster, Henrik
Jöhren, Olaf
Pietrzik, Claus U.
Lehnert, Hendrik
Schwaninger, Markus
author_sort Di Spiezio, Alessandro
collection PubMed
description OBJECTIVE: Leptin is a key hormone in the control of appetite and body weight. Predominantly produced by white adipose tissue, it acts on the brain to inhibit homeostatic feeding and food reward. Leptin has free access to circumventricular organs, such as the median eminence, but entry into other brain centers is restricted by the blood–brain and blood–CSF barriers. So far, it is unknown for which of its central effects leptin has to penetrate brain barriers. In addition, the mechanisms mediating the transport across barriers are unclear although high expression in brain barriers suggests an important role of the leptin receptor (LepR). METHODS: We selectively deleted LepR in brain endothelial and epithelial cells of mice (LepR(beKO)). The expression of LepR in fenestrated vessels of the periphery and the median eminence as well as in tanycytes was not affected. RESULTS: Perfusion studies showed that leptin uptake by the brain depended on LepR in brain barriers. When being fed with a rewarding high-fat diet LepR(beKO) mice gained more body weight than controls. The aggravated obesity of LepR(beKO) mice was due to hyperphagia and a higher sensitivity to food reward. CONCLUSIONS: The LepR-mediated transport of leptin across brain barriers in endothelial cells lining microvessels and in epithelial cells of the choroid plexus controls food reward but is apparently not involved in homeostatic control of feeding.
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spelling pubmed-59850392018-06-04 The LepR-mediated leptin transport across brain barriers controls food reward Di Spiezio, Alessandro Sandin, Elvira Sonia Dore, Riccardo Müller-Fielitz, Helge Storck, Steffen E. Bernau, Mareike Mier, Walter Oster, Henrik Jöhren, Olaf Pietrzik, Claus U. Lehnert, Hendrik Schwaninger, Markus Mol Metab Original Article OBJECTIVE: Leptin is a key hormone in the control of appetite and body weight. Predominantly produced by white adipose tissue, it acts on the brain to inhibit homeostatic feeding and food reward. Leptin has free access to circumventricular organs, such as the median eminence, but entry into other brain centers is restricted by the blood–brain and blood–CSF barriers. So far, it is unknown for which of its central effects leptin has to penetrate brain barriers. In addition, the mechanisms mediating the transport across barriers are unclear although high expression in brain barriers suggests an important role of the leptin receptor (LepR). METHODS: We selectively deleted LepR in brain endothelial and epithelial cells of mice (LepR(beKO)). The expression of LepR in fenestrated vessels of the periphery and the median eminence as well as in tanycytes was not affected. RESULTS: Perfusion studies showed that leptin uptake by the brain depended on LepR in brain barriers. When being fed with a rewarding high-fat diet LepR(beKO) mice gained more body weight than controls. The aggravated obesity of LepR(beKO) mice was due to hyperphagia and a higher sensitivity to food reward. CONCLUSIONS: The LepR-mediated transport of leptin across brain barriers in endothelial cells lining microvessels and in epithelial cells of the choroid plexus controls food reward but is apparently not involved in homeostatic control of feeding. Elsevier 2017-12-07 /pmc/articles/PMC5985039/ /pubmed/29254602 http://dx.doi.org/10.1016/j.molmet.2017.12.001 Text en © 2017 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Di Spiezio, Alessandro
Sandin, Elvira Sonia
Dore, Riccardo
Müller-Fielitz, Helge
Storck, Steffen E.
Bernau, Mareike
Mier, Walter
Oster, Henrik
Jöhren, Olaf
Pietrzik, Claus U.
Lehnert, Hendrik
Schwaninger, Markus
The LepR-mediated leptin transport across brain barriers controls food reward
title The LepR-mediated leptin transport across brain barriers controls food reward
title_full The LepR-mediated leptin transport across brain barriers controls food reward
title_fullStr The LepR-mediated leptin transport across brain barriers controls food reward
title_full_unstemmed The LepR-mediated leptin transport across brain barriers controls food reward
title_short The LepR-mediated leptin transport across brain barriers controls food reward
title_sort lepr-mediated leptin transport across brain barriers controls food reward
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5985039/
https://www.ncbi.nlm.nih.gov/pubmed/29254602
http://dx.doi.org/10.1016/j.molmet.2017.12.001
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