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https://doi.org/10.3390/ijms221910420
Title: | Nitro-deficient niclosamide confers reduced genotoxicity and retains mitochondrial uncoupling activity for cancer therapy | Authors: | Ngai, TW Elfar, GA PEARLYN MEI XIN YEO Phua, N Hor, JH Chen, S Ho, YS CHEOK CHIT FANG |
Keywords: | genotoxicity lipidomics mitochondrial uncoupling niclosamide p53 DNA Damage HCT116 Cells Humans Mitochondria Neoplasms Niclosamide |
Issue Date: | 1-Oct-2021 | Publisher: | MDPI AG | Citation: | Ngai, TW, Elfar, GA, PEARLYN MEI XIN YEO, Phua, N, Hor, JH, Chen, S, Ho, YS, CHEOK CHIT FANG (2021-10-01). Nitro-deficient niclosamide confers reduced genotoxicity and retains mitochondrial uncoupling activity for cancer therapy. International Journal of Molecular Sciences 22 (19) : 10420-10420. ScholarBank@NUS Repository. https://doi.org/10.3390/ijms221910420 | Abstract: | Niclosamide is an oral anthelmintic drug, approved for use against tapeworm infections. Recent studies suggest however that niclosamide may have broader clinical applications in cancers, spurring increased interest in the functions and mechanisms of niclosamide. Previously, we re-ported that niclosamide targets a metabolic vulnerability in p53-deficient tumours, providing a ba-sis for patient stratification and personalised treatment strategies. In the present study, we function-ally characterised the contribution of the aniline 4′-NO2 group on niclosamide to its cellular activi-ties. We demonstrated that niclosamide induces genome-wide DNA damage that is mechanistically uncoupled from its antitumour effects mediated through mitochondrial uncoupling. Elimination of the nitro group in ND-Nic analogue significantly reduced γH2AX signals and DNA breaks while preserving its antitumour mechanism mediated through a calcium signalling pathway and arachi-donic acid metabolism. Lipidomics profiling further revealed that ND-Nic-treated cells retained a metabolite profile characteristic of niclosamide-treated cells. Notably, quantitative scoring of drug sensitivity suggests that elimination of its nitro group enhanced the target selectivity of niclosamide against p53 deficiency. Importantly, the results also raise concern that niclosamide may impose a pleiotropic genotoxic effect, which limits its clinical efficacy and warrants further investigation into alternative drug analogues that may ameliorate any potential unwanted side effects. | Source Title: | International Journal of Molecular Sciences | URI: | https://scholarbank.nus.edu.sg/handle/10635/208057 | ISSN: | 1661-6596 1422-0067 |
DOI: | 10.3390/ijms221910420 |
Appears in Collections: | Staff Publications Elements |
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