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D-allose enhances the efficacy of hydroxychloroquine against Lewis lung carcinoma cell growth by inducing autophagy

Various cancer cells require massive amounts of glucose as an energy source for their dysregulated growth. Although D-allose, a rare sugar, inhibits tumor cell growth via inhibition of glucose uptake, a few cells can survive after treatment. However, the mechanism by which D-allose-resistant cells a...

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Autores principales: Yamazaki, Kyoka, Hoshi, Masato, Tezuka, Hiroyuki, Morita, Nanaka, Hirayama, Masaya, Sato, Fumiaki, Yoshida, Sayaka, Saito, Kuniaki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: D.A. Spandidos 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9115634/
https://www.ncbi.nlm.nih.gov/pubmed/35543153
http://dx.doi.org/10.3892/or.2022.8328
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author Yamazaki, Kyoka
Hoshi, Masato
Tezuka, Hiroyuki
Morita, Nanaka
Hirayama, Masaya
Sato, Fumiaki
Yoshida, Sayaka
Saito, Kuniaki
author_facet Yamazaki, Kyoka
Hoshi, Masato
Tezuka, Hiroyuki
Morita, Nanaka
Hirayama, Masaya
Sato, Fumiaki
Yoshida, Sayaka
Saito, Kuniaki
author_sort Yamazaki, Kyoka
collection PubMed
description Various cancer cells require massive amounts of glucose as an energy source for their dysregulated growth. Although D-allose, a rare sugar, inhibits tumor cell growth via inhibition of glucose uptake, a few cells can survive after treatment. However, the mechanism by which D-allose-resistant cells are generated remains unclear. Here, we investigated the properties of D-allose-resistant cells and evaluated the efficacy of combined treatment with this rare sugar and antitumor drugs. To this end, we established a D-allose-resistant tumor cell line and prepared a C57BL/6J mouse tumor xenograft model using Lewis lung carcinoma (LLC) cells. Xenograft-bearing mice were treated with D-allose (9 g/kg) and/or hydroxychloroquine (HCQ, 60 mg/kg), an autophagy inhibitor, for two weeks. Although D-allose inhibited LLC cell growth in a dose-dependent manner, a few cells survived. The upregulation of LC3-II, a classical autophagy marker, and the downregulation of mTOR and its downstream molecule Beclin1 were observed in established D-allose-resistant LLC cells, which were more sensitive to cell death induced by HCQ. Similarly, in the tumor xenograft model, the tumor volume in mice co-treated with D-allose and HCQ was considerably smaller than that in untreated or HCQ-treated mice. Importantly, the administration of D-allose induced autophagy selectively at the tumor site of the xenograft-bearing mice. These results provide a new therapeutic strategy targeting autophagy which is induced in tumor cells by D-allose administration, and may be used to improve therapies for lung cancer.
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spelling pubmed-91156342022-05-25 D-allose enhances the efficacy of hydroxychloroquine against Lewis lung carcinoma cell growth by inducing autophagy Yamazaki, Kyoka Hoshi, Masato Tezuka, Hiroyuki Morita, Nanaka Hirayama, Masaya Sato, Fumiaki Yoshida, Sayaka Saito, Kuniaki Oncol Rep Articles Various cancer cells require massive amounts of glucose as an energy source for their dysregulated growth. Although D-allose, a rare sugar, inhibits tumor cell growth via inhibition of glucose uptake, a few cells can survive after treatment. However, the mechanism by which D-allose-resistant cells are generated remains unclear. Here, we investigated the properties of D-allose-resistant cells and evaluated the efficacy of combined treatment with this rare sugar and antitumor drugs. To this end, we established a D-allose-resistant tumor cell line and prepared a C57BL/6J mouse tumor xenograft model using Lewis lung carcinoma (LLC) cells. Xenograft-bearing mice were treated with D-allose (9 g/kg) and/or hydroxychloroquine (HCQ, 60 mg/kg), an autophagy inhibitor, for two weeks. Although D-allose inhibited LLC cell growth in a dose-dependent manner, a few cells survived. The upregulation of LC3-II, a classical autophagy marker, and the downregulation of mTOR and its downstream molecule Beclin1 were observed in established D-allose-resistant LLC cells, which were more sensitive to cell death induced by HCQ. Similarly, in the tumor xenograft model, the tumor volume in mice co-treated with D-allose and HCQ was considerably smaller than that in untreated or HCQ-treated mice. Importantly, the administration of D-allose induced autophagy selectively at the tumor site of the xenograft-bearing mice. These results provide a new therapeutic strategy targeting autophagy which is induced in tumor cells by D-allose administration, and may be used to improve therapies for lung cancer. D.A. Spandidos 2022-06 2022-05-10 /pmc/articles/PMC9115634/ /pubmed/35543153 http://dx.doi.org/10.3892/or.2022.8328 Text en Copyright: © Yamazaki et al. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made.
spellingShingle Articles
Yamazaki, Kyoka
Hoshi, Masato
Tezuka, Hiroyuki
Morita, Nanaka
Hirayama, Masaya
Sato, Fumiaki
Yoshida, Sayaka
Saito, Kuniaki
D-allose enhances the efficacy of hydroxychloroquine against Lewis lung carcinoma cell growth by inducing autophagy
title D-allose enhances the efficacy of hydroxychloroquine against Lewis lung carcinoma cell growth by inducing autophagy
title_full D-allose enhances the efficacy of hydroxychloroquine against Lewis lung carcinoma cell growth by inducing autophagy
title_fullStr D-allose enhances the efficacy of hydroxychloroquine against Lewis lung carcinoma cell growth by inducing autophagy
title_full_unstemmed D-allose enhances the efficacy of hydroxychloroquine against Lewis lung carcinoma cell growth by inducing autophagy
title_short D-allose enhances the efficacy of hydroxychloroquine against Lewis lung carcinoma cell growth by inducing autophagy
title_sort d-allose enhances the efficacy of hydroxychloroquine against lewis lung carcinoma cell growth by inducing autophagy
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9115634/
https://www.ncbi.nlm.nih.gov/pubmed/35543153
http://dx.doi.org/10.3892/or.2022.8328
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