ArticleMolecular cancer2016
Roles of acid-extruding ion transporters in regulation of breast cancer cell growth in a 3-dimensional microenvironment.
Article in Molecular cancer, 2016. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 38 papers.
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Who cites it
38 citing papers in PubMed, 62 citations in OpenAlex.
- Sodium accumulation in breast cancer predicts malignancy and treatment response.British journal of cancer · 2022Trial
- SLC16A3 links tumor metabolism to therapeutic opportunities in hepatocellular carcinoma.Translational cancer research · 2026Review
- Lactate metabolism and lactylation in cancer: from pathogenesis to therapeutic advances.Signal transduction and targeted therapy · 2026Review
- Intracellular pH dynamics respond to extracellular matrix stiffening and mediate vasculogenic mimicry through β-catenin.Cell death & disease · 2025Article
- Loss of NaActa physiologica (Oxford, England) · 2025Article
- Intracellular pH dynamics respond to extracellular matrix stiffening and mediate vasculogenic mimicry through β-catenin.bioRxiv : the preprint server for biology · 2025Article
- Lactic acid metabolism: gynecological cancer's Achilles' heel.Discover oncology · 2025Review
- Lactate and lactylation in intervertebral disc degeneration.Frontiers in molecular biosciences · 2025Review
- Intracellular pH differentially regulates transcription of metabolic and signaling pathways in normal epithelial cells.The Journal of biological chemistry · 2024Article
- Acid-base transporters in the context of tumor heterogeneity.Pflugers Archiv : European journal of physiology · 2024Review
- The Pivotal Function of SLC16A1 and SLC16A1-AS1 in Cancer Progress: Molecular Pathogenesis and Prognosis.Mini reviews in medicinal chemistry · 2024Article
- Lactate receptor GPR81 drives breast cancer growth and invasiveness through regulation of ECM properties and Notch ligand DLL4.BMC cancer · 2023Article
- Crosstalk between tumor acidosis, p53 and extracellular matrix regulates pancreatic cancer aggressiveness.International journal of cancer · 2023Article
- Targeting hypoxia regulated sodium driven bicarbonate transporters reduces triple negative breast cancer metastasis.Neoplasia (New York, N.Y.) · 2022Article
- Research Progress on Improving the Efficiency of CDT by Exacerbating Tumor Acidification.International journal of nanomedicine · 2022Review
- Role of pH Regulatory Proteins and Dysregulation of pH in Prostate Cancer.Reviews of physiology, biochemistry and pharmacology · 2022Article
- Energy Metabolism and Intracellular pH Alteration in Neural Spheroids Carrying Down Syndrome.Biomedicines · 2021Article
- More Than Meets the Eye Regarding Cancer Metabolism.International journal of molecular sciences · 2021Review
- Sodium bicarbonate transporter NBCe1 regulates proliferation and viability of human prostate cancer cells LNCaP and PC3.Oncology reports · 2021Article
- Metabolic changes in triple negative breast cancer-focus on aerobic glycolysis.Molecular biology reports · 2021Review
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Authors and funding
6 authors at 1 institution in 1 country.
Funding
No grant is acknowledged in the PubMed record.
Abstract
backgroundThe 3-dimensional (3D) microenvironment of breast carcinomas is characterized by profoundly altered pH homeostasis, reflecting increased metabolic acid production and a confined extracellular space characterized by poor diffusion, yet the relative contributions of specific pH-regulatory transporters to 3D growth are poorly understood. The aim of this work was to determine how 3D spheroid growth of breast cancer cells impacts the expression and spatial organization of major acid extruding proteins, and how these proteins in turn are required for spheroid growth.
methodsMCF-7 (Luminal-A) and MDA-MB-231 (Triple-negative) human breast cancer cells were grown as ~700-950 μm diameter spheroids, which were subjected to Western blotting for relevant transporters (2- and 3D growth), quantitative immunohistochemical analysis, and spheroid growth assays. Individual transporter contributions were assessed (i) pharmacologically, (ii) by stable shRNA- and transient siRNA-mediated knockdown, and (iii) by CRISPR/Cas9 knockout.
resultsIn MCF-7 spheroids, expression of the lactate-H(+) cotransporter MCT1 (SLC16A1) increased from the spheroid periphery to its core, the Na(+),HCO3 (-) cotransporter NBCn1 (SLC4A7) was most highly expressed at the periphery, and the Na(+)/H(+) exchanger NHE1 (SLC9A1) and MCT4 (SLC16A3) were evenly distributed. A similar pattern was seen in MDA-MB-231 spheroids, except that these cells do not express MCT1. The relative total expression of NBCn1 and NHE1 was decreased in 3D compared to 2D, while that of MCT1 and MCT4 was unaltered. Inhibition of MCT1 (AR-C155858) attenuated MCF-7 spheroid growth and this was exacerbated by addition of S0859, an inhibitor of Na(+),HCO3 (-) cotransporters and MCTs. The pharmacological data was recapitulated by stable knockdown of MCT1 or NBCn1, whereas knockdown of MCT4 had no effect. CRISPR/Cas9 knockout of NHE1, but neither partial NHE1 knockdown nor the NHE1 inhibitor cariporide, inhibited MCF-7 spheroid growth. In contrast, growth of MDA-MB-231 spheroids was inhibited by stable or transient NHE1 knockdown and by NHE1 knockout, but not by knockdown of NBCn1 or MCT4.
conclusionsThis work demonstrates the distinct expression and localization patterns of four major acid-extruding transporters in 3D spheroids of human breast cancer cells and reveals that 3D growth is dependent on these transporters in a cell type-dependent manner, with potentially important implications for breast cancer therapy.
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