Literature DB >> 24174370

Differential sensitivities to lactate transport inhibitors of breast cancer cell lines.

Filipa Morais-Santos1, Vera Miranda-Gonçalves, Sílvia Pinheiro, André F Vieira, Joana Paredes, Fernando C Schmitt, Fátima Baltazar, Céline Pinheiro.   

Abstract

The tumour microenvironment is known to be acidic due to high glycolytic rates of tumour cells. Monocarboxylate transporters (MCTs) play a role in extracellular acidification, which is widely known to be involved in tumour progression. Recently, we have described the upregulation of MCT1 in breast carcinomas and its association with poor prognostic variables. Thus, we aimed to evaluate the effect of lactate transport inhibition in human breast cancer cell lines. The effects of α-cyano-4-hydroxycinnamate, quercetin and lonidamine on cell viability, metabolism, proliferation, apoptosis, migration and invasion were assessed in a panel of different breast cancer cell lines. MCT1, MCT4 and CD147 were differently expressed among the breast cancer cell lines and, as expected, different sensitivities were observed for the three inhibitors. Interestingly, in the most sensitive cell lines, lactate transport inhibition induced a decrease in cell proliferation, migration and invasion, as well as an increase in cell death. Results were validated by silencing MCT1 expression using siRNA. The results obtained here support targeting of lactate transport as a strategy to treat breast cancer, with a special emphasis on the basal-like subtype, which so far does not have a specific molecular therapy.

Entities:  

Keywords:  breast; carcinoma; molecular biology

Mesh:

Substances:

Year:  2013        PMID: 24174370     DOI: 10.1530/ERC-13-0132

Source DB:  PubMed          Journal:  Endocr Relat Cancer        ISSN: 1351-0088            Impact factor:   5.678


  22 in total

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9.  Targeting lactate transport suppresses in vivo breast tumour growth.

Authors:  Filipa Morais-Santos; Sara Granja; Vera Miranda-Gonçalves; António H J Moreira; Sandro Queirós; João L Vilaça; Fernando C Schmitt; Adhemar Longatto-Filho; Joana Paredes; Fátima Baltazar; Céline Pinheiro
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Review 10.  Hypoxia, cancer metabolism and the therapeutic benefit of targeting lactate/H(+) symporters.

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