Combinatorial Effect of DCA and Let-7a on Triple-Negative MDA-MB-231 Cells: A Metabolic Approach of Treatment

Dichloroacetate (DCA) is a metabolic modulator that inhibits pyruvate dehydrogenase activity and promotes the influx of pyruvate into the tricarboxylic acid cycle for complete oxidation of glucose. DCA stimulates oxidative phosphorylation (OXPHOS) more than glycolysis by altering the morphology of t...

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Main Authors: Praveen Sharma MSc, Sandeep Singh PhD
Format: Article
Language:English
Published: SAGE Publishing 2020-04-01
Series:Integrative Cancer Therapies
Online Access:https://doi.org/10.1177/1534735420911437
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spelling doaj-d5589651e6dd4b688e3f63716c53a3af2020-11-25T03:19:50ZengSAGE PublishingIntegrative Cancer Therapies1534-73541552-695X2020-04-011910.1177/1534735420911437Combinatorial Effect of DCA and Let-7a on Triple-Negative MDA-MB-231 Cells: A Metabolic Approach of TreatmentPraveen Sharma MSc0Sandeep Singh PhD1Central University of Punjab, Bathinda, Punjab, IndiaCentral University of Punjab, Bathinda, Punjab, IndiaDichloroacetate (DCA) is a metabolic modulator that inhibits pyruvate dehydrogenase activity and promotes the influx of pyruvate into the tricarboxylic acid cycle for complete oxidation of glucose. DCA stimulates oxidative phosphorylation (OXPHOS) more than glycolysis by altering the morphology of the mitochondria and supports mitochondrial apoptosis. As a consequence, DCA induces apoptosis in cancer cells and inhibits the proliferation of cancer cells. Recently, the role of miRNAs has been reported in regulating gene expression at the transcriptional level and also in reprogramming energy metabolism. In this article, we indicate that DCA treatment leads to the upregulation of let-7a expression, but DCA-induced cancer cell death is independent of let-7a. We observed that the combined effect of DCA and let-7a induces apoptosis, reduces reactive oxygen species generation and autophagy, and stimulates mitochondrial biogenesis. This was later accompanied by stimulation of OXPHOS in combined treatment and was thus involved in metabolic reprogramming of MDA-MB-231 cells.https://doi.org/10.1177/1534735420911437
collection DOAJ
language English
format Article
sources DOAJ
author Praveen Sharma MSc
Sandeep Singh PhD
spellingShingle Praveen Sharma MSc
Sandeep Singh PhD
Combinatorial Effect of DCA and Let-7a on Triple-Negative MDA-MB-231 Cells: A Metabolic Approach of Treatment
Integrative Cancer Therapies
author_facet Praveen Sharma MSc
Sandeep Singh PhD
author_sort Praveen Sharma MSc
title Combinatorial Effect of DCA and Let-7a on Triple-Negative MDA-MB-231 Cells: A Metabolic Approach of Treatment
title_short Combinatorial Effect of DCA and Let-7a on Triple-Negative MDA-MB-231 Cells: A Metabolic Approach of Treatment
title_full Combinatorial Effect of DCA and Let-7a on Triple-Negative MDA-MB-231 Cells: A Metabolic Approach of Treatment
title_fullStr Combinatorial Effect of DCA and Let-7a on Triple-Negative MDA-MB-231 Cells: A Metabolic Approach of Treatment
title_full_unstemmed Combinatorial Effect of DCA and Let-7a on Triple-Negative MDA-MB-231 Cells: A Metabolic Approach of Treatment
title_sort combinatorial effect of dca and let-7a on triple-negative mda-mb-231 cells: a metabolic approach of treatment
publisher SAGE Publishing
series Integrative Cancer Therapies
issn 1534-7354
1552-695X
publishDate 2020-04-01
description Dichloroacetate (DCA) is a metabolic modulator that inhibits pyruvate dehydrogenase activity and promotes the influx of pyruvate into the tricarboxylic acid cycle for complete oxidation of glucose. DCA stimulates oxidative phosphorylation (OXPHOS) more than glycolysis by altering the morphology of the mitochondria and supports mitochondrial apoptosis. As a consequence, DCA induces apoptosis in cancer cells and inhibits the proliferation of cancer cells. Recently, the role of miRNAs has been reported in regulating gene expression at the transcriptional level and also in reprogramming energy metabolism. In this article, we indicate that DCA treatment leads to the upregulation of let-7a expression, but DCA-induced cancer cell death is independent of let-7a. We observed that the combined effect of DCA and let-7a induces apoptosis, reduces reactive oxygen species generation and autophagy, and stimulates mitochondrial biogenesis. This was later accompanied by stimulation of OXPHOS in combined treatment and was thus involved in metabolic reprogramming of MDA-MB-231 cells.
url https://doi.org/10.1177/1534735420911437
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AT sandeepsinghphd combinatorialeffectofdcaandlet7aontriplenegativemdamb231cellsametabolicapproachoftreatment
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