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Inhibition of lipid metabolism exerts antitumor effects on rhabdomyosarcoma

Rhabdomyosarcoma exhibits tumor‐specific energy metabolic changes that include the Warburg effect. Since targeting cancer metabolism is a promising therapeutic approach, we examined the antitumor effects of suppressing lipid metabolism in rhabdomyosarcoma. We suppressed lipid metabolism in rhabdomyo...

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Autores principales: Miyagaki, Satoshi, Kikuchi, Ken, Mori, Jun, Lopaschuk, Gary D., Iehara, Tomoko, Hosoi, Hajime
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8446407/
https://www.ncbi.nlm.nih.gov/pubmed/34472721
http://dx.doi.org/10.1002/cam4.4185
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author Miyagaki, Satoshi
Kikuchi, Ken
Mori, Jun
Lopaschuk, Gary D.
Iehara, Tomoko
Hosoi, Hajime
author_facet Miyagaki, Satoshi
Kikuchi, Ken
Mori, Jun
Lopaschuk, Gary D.
Iehara, Tomoko
Hosoi, Hajime
author_sort Miyagaki, Satoshi
collection PubMed
description Rhabdomyosarcoma exhibits tumor‐specific energy metabolic changes that include the Warburg effect. Since targeting cancer metabolism is a promising therapeutic approach, we examined the antitumor effects of suppressing lipid metabolism in rhabdomyosarcoma. We suppressed lipid metabolism in rhabdomyosarcoma cells in vitro by administering an inhibitor of malonyl‐CoA decarboxylase, which increases malonyl‐CoA and decreases fatty acid oxidation. Suppression of lipid metabolism in rhabdomyosarcoma cells decreased cell proliferation by inducing cell cycle arrest. Metabolomic analysis showed an increase in glycolysis and inactivation of the pentose phosphate pathway. Immunoblotting analysis revealed upregulated expression of the autophagy marker LC3A/B‐II due to increased phosphorylation of AMP‐activated protein kinase, a nutrient sensor. p21 protein expression level also increased. Inhibition of both lipid metabolism and autophagy suppressed tumor proliferation and increased apoptosis. In vivo studies involved injection of human Rh30 cells into the gastrocnemius muscle of 6‐week‐old female nude mice, which were divided into normal chow and low‐fat diet groups. The mice fed a low‐fat diet for 21 days showed reduced tumor growth compared to normal chow diet‐fed mice. Suppression of lipid metabolism disrupted the equilibrium of the cancer‐specific metabolism in rhabdomyosarcoma, resulting in a tumor growth‐inhibition effect. Therefore, the development of treatments focusing on the lipid dependence of rhabdomyosarcoma is highly promising.
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spelling pubmed-84464072021-09-22 Inhibition of lipid metabolism exerts antitumor effects on rhabdomyosarcoma Miyagaki, Satoshi Kikuchi, Ken Mori, Jun Lopaschuk, Gary D. Iehara, Tomoko Hosoi, Hajime Cancer Med Cancer Biology Rhabdomyosarcoma exhibits tumor‐specific energy metabolic changes that include the Warburg effect. Since targeting cancer metabolism is a promising therapeutic approach, we examined the antitumor effects of suppressing lipid metabolism in rhabdomyosarcoma. We suppressed lipid metabolism in rhabdomyosarcoma cells in vitro by administering an inhibitor of malonyl‐CoA decarboxylase, which increases malonyl‐CoA and decreases fatty acid oxidation. Suppression of lipid metabolism in rhabdomyosarcoma cells decreased cell proliferation by inducing cell cycle arrest. Metabolomic analysis showed an increase in glycolysis and inactivation of the pentose phosphate pathway. Immunoblotting analysis revealed upregulated expression of the autophagy marker LC3A/B‐II due to increased phosphorylation of AMP‐activated protein kinase, a nutrient sensor. p21 protein expression level also increased. Inhibition of both lipid metabolism and autophagy suppressed tumor proliferation and increased apoptosis. In vivo studies involved injection of human Rh30 cells into the gastrocnemius muscle of 6‐week‐old female nude mice, which were divided into normal chow and low‐fat diet groups. The mice fed a low‐fat diet for 21 days showed reduced tumor growth compared to normal chow diet‐fed mice. Suppression of lipid metabolism disrupted the equilibrium of the cancer‐specific metabolism in rhabdomyosarcoma, resulting in a tumor growth‐inhibition effect. Therefore, the development of treatments focusing on the lipid dependence of rhabdomyosarcoma is highly promising. John Wiley and Sons Inc. 2021-09-02 /pmc/articles/PMC8446407/ /pubmed/34472721 http://dx.doi.org/10.1002/cam4.4185 Text en © 2021 The Authors. Cancer Medicine published by John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Cancer Biology
Miyagaki, Satoshi
Kikuchi, Ken
Mori, Jun
Lopaschuk, Gary D.
Iehara, Tomoko
Hosoi, Hajime
Inhibition of lipid metabolism exerts antitumor effects on rhabdomyosarcoma
title Inhibition of lipid metabolism exerts antitumor effects on rhabdomyosarcoma
title_full Inhibition of lipid metabolism exerts antitumor effects on rhabdomyosarcoma
title_fullStr Inhibition of lipid metabolism exerts antitumor effects on rhabdomyosarcoma
title_full_unstemmed Inhibition of lipid metabolism exerts antitumor effects on rhabdomyosarcoma
title_short Inhibition of lipid metabolism exerts antitumor effects on rhabdomyosarcoma
title_sort inhibition of lipid metabolism exerts antitumor effects on rhabdomyosarcoma
topic Cancer Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8446407/
https://www.ncbi.nlm.nih.gov/pubmed/34472721
http://dx.doi.org/10.1002/cam4.4185
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