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ZnCl2 sustains the adriamycin-induced cell death inhibited by high glucose

Academic Article
Publication Date:
2016
abstract:
Hyperglycemia, the condition of high blood glucose, is typical of diabetes and obesity and represents a significant clinical problem. The relationship between hyperglycemia and cancer risk has been established by several studies. Moreover, hyperglycemia has been shown to reduce cancer cell response to therapies, conferring resistance to drug-induced cell death. Therefore, counteracting the negative effects of hyperglycemia may positively improve the cancer cell death induced by chemotherapies. Recent studies showed that zinc supplementation may have beneficial effects on glycemic control. Here we aimed at evaluating whether ZnCl could counteract the high-glucose (HG) effects and consequently restore the drug-induced cancer cell death. At the molecular level we found that the HG-induced expression of genes known to be involved in chemoresistance (such as HIF-1?, GLUT1, and HK2 glycolytic genes, as well as NF-?B activity) was reduced by ZnCl treatment. In agreement, the adryamicin (ADR)-induced apoptotic cancer cell death was significantly impaired by HG and efficiently re-established by ZnCl cotreatment. Mechanistically, the ADR-induced c-Jun N-terminal kinase/stress-activated protein kinase (JNK/SAPK) phosphorylation, inhibited by HG, was efficiently restored by ZnCl. The JNK involvement in apoptotic cell death was assessed by the use of JNK dominant-negative expression vector that indeed impaired the ZnCl ability to restore drug-induced cell death in HG condition. Altogether, these findings indicate that ZnCl supplementation efficiently restored the drug-induced cancer cell death, inhibited by HG, by both sustaining JNK activation and counteracting the glycolytic pathway.
Iris type:
01.01 Articolo in rivista
Keywords:
zn; cell death; p53; cancer
List of contributors:
Trisciuoglio, Daniela
Authors of the University:
TRISCIUOGLIO DANIELA
Handle:
https://iris.cnr.it/handle/20.500.14243/395341
Published in:
CELL DEATH & DISEASE
Journal
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http://www.scopus.com/record/display.url?eid=2-s2.0-84992671844&origin=inward
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