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1. 3D multicellular models to study the regulation and roles of acid–base transporters in breast cancer

2. 3D multicellular models to study the regulation and roles of acid–base transporters in breast cancer

5. NHE1 regulation in NAFLD in vitro contributes to hepatocyte injury and HSC crosstalk.

6. Adaptation to an acid microenvironment promotes pancreatic cancer organoid growth and drug resistance.

7. Dynamic localization of the Na+-HCO3- co-transporter NBCn1 to the plasma membrane, centrosomes, spindle and primary cilia.

8. Crosstalk between tumor acidosis, p53 and extracellular matrix regulates pancreatic cancer aggressiveness.

9. Metabolic reprogramming by driver mutation-tumor microenvironment interplay in pancreatic cancer: new therapeutic targets.

10. MET-Pyk2 Axis Mediates Acquired Resistance to FGFR Inhibition in Cancer Cells.

11. Cancer Cell Acid Adaptation Gene Expression Response Is Correlated to Tumor-Specific Tissue Expression Profiles and Patient Survival.

12. 3D multicellular models to study the regulation and roles of acid-base transporters in breast cancer.

13. RSK1 promotes murine breast cancer growth and metastasis.

14. FGFR2-Driven Signaling Counteracts Tamoxifen Effect on ERα-Positive Breast Cancer Cells.

15. Simplified, serine-rich theta-defensin analogues as antitumour peptides.

16. Fibroblast growth factor signalling induces loss of progesterone receptor in breast cancer cells.

17. Interactions between FGFR2 and RSK2-implications for breast cancer prognosis.

18. Phosphorylation of RSK2 at Tyr529 by FGFR2-p38 enhances human mammary epithelial cells migration.

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