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Critical changes in hypothalamic gene networks in response to pancreatic cancer as found by single-cell RNA sequencing

OBJECTIVE: Cancer cachexia is a devastating chronic condition characterized by involuntary weight loss, muscle wasting, abnormal fat metabolism, anorexia, and fatigue. However, the molecular mechanisms underlying this syndrome remain poorly understood. In particular, the hypothalamus may play a cent...

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Autores principales: Huisman, Christian, Norgard, Mason A., Levasseur, Peter R., Krasnow, Stephanie M., van der Wijst, Monique G.P., Olson, Brennan, Marks, Daniel L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8851272/
https://www.ncbi.nlm.nih.gov/pubmed/35031523
http://dx.doi.org/10.1016/j.molmet.2022.101441
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author Huisman, Christian
Norgard, Mason A.
Levasseur, Peter R.
Krasnow, Stephanie M.
van der Wijst, Monique G.P.
Olson, Brennan
Marks, Daniel L.
author_facet Huisman, Christian
Norgard, Mason A.
Levasseur, Peter R.
Krasnow, Stephanie M.
van der Wijst, Monique G.P.
Olson, Brennan
Marks, Daniel L.
author_sort Huisman, Christian
collection PubMed
description OBJECTIVE: Cancer cachexia is a devastating chronic condition characterized by involuntary weight loss, muscle wasting, abnormal fat metabolism, anorexia, and fatigue. However, the molecular mechanisms underlying this syndrome remain poorly understood. In particular, the hypothalamus may play a central role in cachexia, given that it has direct access to peripheral signals because of its anatomical location and attenuated blood–brain barrier. Furthermore, this region has a critical role in regulating appetite and metabolism. METHODS: To provide a detailed analysis of the hypothalamic response to cachexia, we performed single-cell RNA-seq combined with RNA-seq of the medial basal hypothalamus (MBH) in a mouse model for pancreatic cancer. RESULTS: We found many cell type-specific changes, such as inflamed endothelial cells, stressed oligodendrocyes and both inflammatory and moderating microglia. Lcn2, a newly discovered hunger suppressing hormone, was the highest induced gene. Interestingly, cerebral treatment with LCN2 not only induced many of the observed molecular changes in cachexia but also affected gene expression in food-intake decreasing POMC neurons. In addition, we found that many of the cachexia-induced molecular changes found in the hypothalamus mimic those at the primary tumor site. CONCLUSION: Our data reveal that multiple cell types in the MBH are affected by tumor-derived factors or host factors that are induced by tumor growth, leading to a marked change in the microenvironment of neurons critical for behavioral, metabolic, and neuroendocrine outputs dysregulated during cachexia. The mechanistic insights provided in this study explain many of the clinical features of cachexia and will be useful for future therapeutic development.
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spelling pubmed-88512722022-02-22 Critical changes in hypothalamic gene networks in response to pancreatic cancer as found by single-cell RNA sequencing Huisman, Christian Norgard, Mason A. Levasseur, Peter R. Krasnow, Stephanie M. van der Wijst, Monique G.P. Olson, Brennan Marks, Daniel L. Mol Metab Original Article OBJECTIVE: Cancer cachexia is a devastating chronic condition characterized by involuntary weight loss, muscle wasting, abnormal fat metabolism, anorexia, and fatigue. However, the molecular mechanisms underlying this syndrome remain poorly understood. In particular, the hypothalamus may play a central role in cachexia, given that it has direct access to peripheral signals because of its anatomical location and attenuated blood–brain barrier. Furthermore, this region has a critical role in regulating appetite and metabolism. METHODS: To provide a detailed analysis of the hypothalamic response to cachexia, we performed single-cell RNA-seq combined with RNA-seq of the medial basal hypothalamus (MBH) in a mouse model for pancreatic cancer. RESULTS: We found many cell type-specific changes, such as inflamed endothelial cells, stressed oligodendrocyes and both inflammatory and moderating microglia. Lcn2, a newly discovered hunger suppressing hormone, was the highest induced gene. Interestingly, cerebral treatment with LCN2 not only induced many of the observed molecular changes in cachexia but also affected gene expression in food-intake decreasing POMC neurons. In addition, we found that many of the cachexia-induced molecular changes found in the hypothalamus mimic those at the primary tumor site. CONCLUSION: Our data reveal that multiple cell types in the MBH are affected by tumor-derived factors or host factors that are induced by tumor growth, leading to a marked change in the microenvironment of neurons critical for behavioral, metabolic, and neuroendocrine outputs dysregulated during cachexia. The mechanistic insights provided in this study explain many of the clinical features of cachexia and will be useful for future therapeutic development. Elsevier 2022-01-11 /pmc/articles/PMC8851272/ /pubmed/35031523 http://dx.doi.org/10.1016/j.molmet.2022.101441 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Original Article
Huisman, Christian
Norgard, Mason A.
Levasseur, Peter R.
Krasnow, Stephanie M.
van der Wijst, Monique G.P.
Olson, Brennan
Marks, Daniel L.
Critical changes in hypothalamic gene networks in response to pancreatic cancer as found by single-cell RNA sequencing
title Critical changes in hypothalamic gene networks in response to pancreatic cancer as found by single-cell RNA sequencing
title_full Critical changes in hypothalamic gene networks in response to pancreatic cancer as found by single-cell RNA sequencing
title_fullStr Critical changes in hypothalamic gene networks in response to pancreatic cancer as found by single-cell RNA sequencing
title_full_unstemmed Critical changes in hypothalamic gene networks in response to pancreatic cancer as found by single-cell RNA sequencing
title_short Critical changes in hypothalamic gene networks in response to pancreatic cancer as found by single-cell RNA sequencing
title_sort critical changes in hypothalamic gene networks in response to pancreatic cancer as found by single-cell rna sequencing
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8851272/
https://www.ncbi.nlm.nih.gov/pubmed/35031523
http://dx.doi.org/10.1016/j.molmet.2022.101441
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