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Fatty Acid Synthase Is a Key Target in Multiple Essential Tumor Functions of Prostate Cancer: Uptake of Radiolabeled Acetate as a Predictor of the Targeted Therapy Outcome

Fatty acid synthase (FASN) expression is elevated in several cancers, and this over-expression is associated with poor prognosis. Inhibitors of FASN, such as orlistat, reportedly show antitumor effects against cancers that over-express FASN, making FASN a promising therapeutic target. However, large...

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Autores principales: Yoshii, Yukie, Furukawa, Takako, Oyama, Nobuyuki, Hasegawa, Yoko, Kiyono, Yasushi, Nishii, Ryuichi, Waki, Atsuo, Tsuji, Atsushi B., Sogawa, Chizuru, Wakizaka, Hidekatsu, Fukumura, Toshimitsu, Yoshii, Hiroshi, Fujibayashi, Yasuhisa, Lewis, Jason S., Saga, Tsuneo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3669310/
https://www.ncbi.nlm.nih.gov/pubmed/23741342
http://dx.doi.org/10.1371/journal.pone.0064570
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author Yoshii, Yukie
Furukawa, Takako
Oyama, Nobuyuki
Hasegawa, Yoko
Kiyono, Yasushi
Nishii, Ryuichi
Waki, Atsuo
Tsuji, Atsushi B.
Sogawa, Chizuru
Wakizaka, Hidekatsu
Fukumura, Toshimitsu
Yoshii, Hiroshi
Fujibayashi, Yasuhisa
Lewis, Jason S.
Saga, Tsuneo
author_facet Yoshii, Yukie
Furukawa, Takako
Oyama, Nobuyuki
Hasegawa, Yoko
Kiyono, Yasushi
Nishii, Ryuichi
Waki, Atsuo
Tsuji, Atsushi B.
Sogawa, Chizuru
Wakizaka, Hidekatsu
Fukumura, Toshimitsu
Yoshii, Hiroshi
Fujibayashi, Yasuhisa
Lewis, Jason S.
Saga, Tsuneo
author_sort Yoshii, Yukie
collection PubMed
description Fatty acid synthase (FASN) expression is elevated in several cancers, and this over-expression is associated with poor prognosis. Inhibitors of FASN, such as orlistat, reportedly show antitumor effects against cancers that over-express FASN, making FASN a promising therapeutic target. However, large variations in FASN expression levels in individual tumors have been observed, and methods to predict FASN-targeted therapy outcome before treatment are required to avoid unnecessary treatment. In addition, how FASN inhibition affects tumor progression remains unclear. Here, we showed the method to predict FASN-targeted therapy outcome using radiolabeled acetate uptake and presented mechanisms of FASN inhibition with human prostate cancer cell lines, to provide the treatment strategy of FASN-targeted therapy. We revealed that tumor uptake of radiolabeled acetate reflected the FASN expression levels and sensitivity to FASN-targeted therapy with orlistat in vitro and in vivo. FASN-targeted therapy was noticeably effective against tumors with high FASN expression, which was indicated by high acetate uptake. To examine mechanisms, we established FASN knockdown prostate cancer cells by transduction of short-hairpin RNA against FASN and investigated the characteristics by analyses on morphology and cell behavior and microarray-based gene expression profiling. FASN inhibition not only suppressed cell proliferation but prevented pseudopodia formation and suppressed cell adhesion, migration, and invasion. FASN inhibition also suppressed genes involved in production of intracellular second messenger arachidonic acid and androgen hormones, both of which promote tumor progression. Collectively, our data demonstrated that uptake of radiolabeled acetate is a useful predictor of FASN-targeted therapy outcome. This suggests that [1-(11)C]acetate positron emission tomography (PET) could be a powerful tool to accomplish personalized FASN-targeted therapy by non-invasive visualization of tumor acetate uptake and selection of responsive tumors. FASN-targeted therapy could be an effective treatment to suppress multiple steps related to tumor progression in prostate cancers selected by [1-(11)C]acetate PET.
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spelling pubmed-36693102013-06-05 Fatty Acid Synthase Is a Key Target in Multiple Essential Tumor Functions of Prostate Cancer: Uptake of Radiolabeled Acetate as a Predictor of the Targeted Therapy Outcome Yoshii, Yukie Furukawa, Takako Oyama, Nobuyuki Hasegawa, Yoko Kiyono, Yasushi Nishii, Ryuichi Waki, Atsuo Tsuji, Atsushi B. Sogawa, Chizuru Wakizaka, Hidekatsu Fukumura, Toshimitsu Yoshii, Hiroshi Fujibayashi, Yasuhisa Lewis, Jason S. Saga, Tsuneo PLoS One Research Article Fatty acid synthase (FASN) expression is elevated in several cancers, and this over-expression is associated with poor prognosis. Inhibitors of FASN, such as orlistat, reportedly show antitumor effects against cancers that over-express FASN, making FASN a promising therapeutic target. However, large variations in FASN expression levels in individual tumors have been observed, and methods to predict FASN-targeted therapy outcome before treatment are required to avoid unnecessary treatment. In addition, how FASN inhibition affects tumor progression remains unclear. Here, we showed the method to predict FASN-targeted therapy outcome using radiolabeled acetate uptake and presented mechanisms of FASN inhibition with human prostate cancer cell lines, to provide the treatment strategy of FASN-targeted therapy. We revealed that tumor uptake of radiolabeled acetate reflected the FASN expression levels and sensitivity to FASN-targeted therapy with orlistat in vitro and in vivo. FASN-targeted therapy was noticeably effective against tumors with high FASN expression, which was indicated by high acetate uptake. To examine mechanisms, we established FASN knockdown prostate cancer cells by transduction of short-hairpin RNA against FASN and investigated the characteristics by analyses on morphology and cell behavior and microarray-based gene expression profiling. FASN inhibition not only suppressed cell proliferation but prevented pseudopodia formation and suppressed cell adhesion, migration, and invasion. FASN inhibition also suppressed genes involved in production of intracellular second messenger arachidonic acid and androgen hormones, both of which promote tumor progression. Collectively, our data demonstrated that uptake of radiolabeled acetate is a useful predictor of FASN-targeted therapy outcome. This suggests that [1-(11)C]acetate positron emission tomography (PET) could be a powerful tool to accomplish personalized FASN-targeted therapy by non-invasive visualization of tumor acetate uptake and selection of responsive tumors. FASN-targeted therapy could be an effective treatment to suppress multiple steps related to tumor progression in prostate cancers selected by [1-(11)C]acetate PET. Public Library of Science 2013-05-31 /pmc/articles/PMC3669310/ /pubmed/23741342 http://dx.doi.org/10.1371/journal.pone.0064570 Text en © 2013 Yoshii et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Yoshii, Yukie
Furukawa, Takako
Oyama, Nobuyuki
Hasegawa, Yoko
Kiyono, Yasushi
Nishii, Ryuichi
Waki, Atsuo
Tsuji, Atsushi B.
Sogawa, Chizuru
Wakizaka, Hidekatsu
Fukumura, Toshimitsu
Yoshii, Hiroshi
Fujibayashi, Yasuhisa
Lewis, Jason S.
Saga, Tsuneo
Fatty Acid Synthase Is a Key Target in Multiple Essential Tumor Functions of Prostate Cancer: Uptake of Radiolabeled Acetate as a Predictor of the Targeted Therapy Outcome
title Fatty Acid Synthase Is a Key Target in Multiple Essential Tumor Functions of Prostate Cancer: Uptake of Radiolabeled Acetate as a Predictor of the Targeted Therapy Outcome
title_full Fatty Acid Synthase Is a Key Target in Multiple Essential Tumor Functions of Prostate Cancer: Uptake of Radiolabeled Acetate as a Predictor of the Targeted Therapy Outcome
title_fullStr Fatty Acid Synthase Is a Key Target in Multiple Essential Tumor Functions of Prostate Cancer: Uptake of Radiolabeled Acetate as a Predictor of the Targeted Therapy Outcome
title_full_unstemmed Fatty Acid Synthase Is a Key Target in Multiple Essential Tumor Functions of Prostate Cancer: Uptake of Radiolabeled Acetate as a Predictor of the Targeted Therapy Outcome
title_short Fatty Acid Synthase Is a Key Target in Multiple Essential Tumor Functions of Prostate Cancer: Uptake of Radiolabeled Acetate as a Predictor of the Targeted Therapy Outcome
title_sort fatty acid synthase is a key target in multiple essential tumor functions of prostate cancer: uptake of radiolabeled acetate as a predictor of the targeted therapy outcome
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3669310/
https://www.ncbi.nlm.nih.gov/pubmed/23741342
http://dx.doi.org/10.1371/journal.pone.0064570
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