Literature DB >> 23412992

Cardiotonic steroids-mediated Na+/K+-ATPase targeting could circumvent various chemoresistance pathways.

Tatjana Mijatovic1, Robert Kiss.   

Abstract

Many cancer patients fail to respond to chemotherapy because of the intrinsic resistance of their cancer to pro-apoptotic stimuli or the acquisition of the multidrug resistant phenotype during chronic treatment. Previous data from our groups and from others point to the sodium/potassium pump (the Na+/K+-ATPase, i.e., NaK) with its highly specific ligands (i.e., cardiotonic steroids) as a new target for combating cancers associated with dismal prognoses, including gliomas, melanomas, non-small cell lung cancers, renal cell carcinomas, and colon cancers. Cardiotonic steroid-mediated Na+/K+-ATPase targeting could circumvent various resistance pathways. The most probable pathways include the involvement of Na+/K+-ATPase β subunits in invasion features and Na+/K+-ATPase α subunits in chemosensitisation by specific cardiotonic steroid-mediated apoptosis and anoïkis-sensitisation; the regulation of the expression of multidrug resistant-related genes; post-translational regulation, including glycosylation and ubiquitinylation of multidrug resistant-related proteins; c-Myc downregulation; hypoxia-inducible factor downregulation; NF-κB downregulation and deactivation; the inhibition of the glycolytic pathway with a reduction of intra-cellular ATP levels and an induction of non-apoptotic cell death. The aims of this review are to examine the various molecular pathways by which the NaK targeting can be more deleterious to biologically aggressive cancer cells than to normal cells. Georg Thieme Verlag KG Stuttgart · New York.

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Year:  2013        PMID: 23412992     DOI: 10.1055/s-0032-1328243

Source DB:  PubMed          Journal:  Planta Med        ISSN: 0032-0943            Impact factor:   3.352


  27 in total

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2.  Modular Total Synthesis and Cell-Based Anticancer Activity Evaluation of Ouabagenin and Other Cardiotonic Steroids with Varying Degrees of Oxygenation.

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4.  Cytotoxic effects of the cardenolide convallatoxin and its Na,K-ATPase regulation.

Authors:  Naira Fernanda Zanchett Schneider; Izabella Thais Silva; Lara Persich; Annelise de Carvalho; Sayonarah C Rocha; Lucas Marostica; Ana Carolina Pacheco Ramos; Alex G Taranto; Rodrigo M Pádua; Wolfgang Kreis; Leandro A Barbosa; Fernão C Braga; Cláudia M O Simões
Journal:  Mol Cell Biochem       Date:  2017-02-07       Impact factor: 3.396

5.  Analysis of proliferation and apoptotic induction by 20 steroid glycosides in 143B osteosarcoma cells in vitro.

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Authors:  Marco Túlio C Pessôa; Jéssica M M Valadares; Sayonarah C Rocha; Simone C Silva; Jeff P McDermott; Gladis Sánchez; Fernando P Varotti; Cristóforo Scavone; Rosy I M A Ribeiro; José A F P Villar; Gustavo Blanco; Leandro A Barbosa
Journal:  Steroids       Date:  2019-12-06       Impact factor: 2.668

7.  Involvement of general control nonderepressible kinase 2 in cancer cell apoptosis by posttranslational mechanisms.

Authors:  Chen Wei; Ma Lin; Bian Jinjun; Feng Su; Cao Dan; Chen Yan; Yang Jie; Zhang Jin; Hua Zi-Chun; Yin Wu
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8.  Implications of Synthetic Modifications of the Cardiotonic Steroid Lactone Ring on Cytotoxicity.

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Journal:  J Membr Biol       Date:  2021-06-14       Impact factor: 1.843

9.  Reevesioside A, a cardenolide glycoside, induces anticancer activity against human hormone-refractory prostate cancers through suppression of c-myc expression and induction of G1 arrest of the cell cycle.

Authors:  Wohn-Jenn Leu; Hsun-Shuo Chang; She-Hung Chan; Jui-Ling Hsu; Chia-Chun Yu; Lih-Ching Hsu; Ih-Sheng Chen; Jih-Hwa Guh
Journal:  PLoS One       Date:  2014-01-27       Impact factor: 3.240

10.  FXYD6 Regulates Chemosensitivity by Mediating the Expression of Na+/K+-ATPase α1 and Affecting Cell Autophagy and Apoptosis in Colorectal Cancer.

Authors:  Wen Luo; Qingan Liu; Xinwen Chen; Haijun Liu; Bin Quan; Jinli Lu; Ke Zhang; Xiangling Wang
Journal:  Biomed Res Int       Date:  2021-06-09       Impact factor: 3.411

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