Vasodilator oxyfedrine inhibits aldehyde metabolism and thereby sensitizes cancer cells to xCT-targeted therapy.


Journal

Cancer science
ISSN: 1349-7006
Titre abrégé: Cancer Sci
Pays: England
ID NLM: 101168776

Informations de publication

Date de publication:
Jan 2020
Historique:
received: 24 09 2019
revised: 23 10 2019
accepted: 24 10 2019
pubmed: 7 11 2019
medline: 14 1 2020
entrez: 7 11 2019
Statut: ppublish

Résumé

The major cellular antioxidant glutathione (GSH) protects cancer cells from oxidative damage that can lead to the induction of ferroptosis, an iron-dependent form of cell death triggered by the aberrant accumulation of lipid peroxides. Inhibitors of the cystine-glutamate antiporter subunit xCT, which mediates the uptake of extracellular cystine and thereby promotes GSH synthesis, are thus potential anticancer agents. However, the efficacy of xCT-targeted therapy has been found to be diminished by metabolic reprogramming that affects redox status in cancer cells. Identification of drugs for combination with xCT inhibitors that are able to overcome resistance to xCT-targeted therapy might thus provide the basis for effective cancer treatment. We have now identified the vasodilator oxyfedrine (OXY) as a sensitizer of cancer cells to GSH-depleting agents including the xCT inhibitor sulfasalazine (SSZ). Oxyfedrine contains a structural motif required for covalent inhibition of aldehyde dehydrogenase (ALDH) enzymes, and combined treatment with OXY and SSZ was found to induce accumulation of the cytotoxic aldehyde 4-hydroxynonenal and cell death in SSZ-resistant cancer cells both in vitro and in vivo. Microarray analysis of tumor xenograft tissue showed cyclooxygenase-2 expression as a potential biomarker for the efficacy of such combination therapy. Furthermore, OXY-mediated ALDH inhibition was found to sensitize cancer cells to GSH depletion induced by radiation therapy in vitro. Our findings thus establish a rationale for repurposing of OXY as a sensitizing drug for cancer treatment with agents that induce GSH depletion.

Identifiants

pubmed: 31692172
doi: 10.1111/cas.14224
pmc: PMC6942438
doi:

Substances chimiques

Aldehydes 0
Amino Acid Transport System y+ 0
Antineoplastic Agents 0
Antioxidants 0
Reactive Oxygen Species 0
SLC7A11 protein, human 0
Vasodilator Agents 0
Sulfasalazine 3XC8GUZ6CB
Oxyfedrine DWL616XF1K
Aldehyde Dehydrogenase EC 1.2.1.3
Glutathione GAN16C9B8O

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

127-136

Subventions

Organisme : Japan Agency for Medical Research and Development
ID : Project for Cancer Research and Therapeutic Evolut

Informations de copyright

© 2019 The Authors. Cancer Science published by John Wiley & Sons Australia, Ltd on behalf of Japanese Cancer Association.

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Auteurs

Yuji Otsuki (Y)

Division of Gene Regulation, Institute for Advanced Medical Research, Keio University School of Medicine, Tokyo, Japan.

Juntaro Yamasaki (J)

Division of Gene Regulation, Institute for Advanced Medical Research, Keio University School of Medicine, Tokyo, Japan.

Kentaro Suina (K)

Division of Gene Regulation, Institute for Advanced Medical Research, Keio University School of Medicine, Tokyo, Japan.

Shogo Okazaki (S)

Division of Development and Aging, Research Institute for Biomedical Sciences, Tokyo University of Science, Noda, Japan.

Naoyoshi Koike (N)

Department of Radiology, Keio University School of Medicine, Tokyo, Japan.

Hideyuki Saya (H)

Division of Gene Regulation, Institute for Advanced Medical Research, Keio University School of Medicine, Tokyo, Japan.

Osamu Nagano (O)

Division of Gene Regulation, Institute for Advanced Medical Research, Keio University School of Medicine, Tokyo, Japan.

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Classifications MeSH