Characterization of Chemoresistance in Pancreatic Cancer: A Look at MDR-1 Polymorphisms and Expression in Cancer Cells and Patients.
Giulia GirolimettiBarbara BalenaPaola CordellaTiziano VerriLeonardo Henry Umberto EusebiMaria Pia BozzettiCecilia BucciFlora GuerraPublished in: International journal of molecular sciences (2024)
Pancreatic malignancy is the fourth cause of cancer-related death in Western countries and is predicted to become the second leading cause of cancer-related mortality by 2030. The standard therapies (FOLFIRINOX and gemcitabine with nab-paclitaxel) are not resolutive because this type of cancer is also characterized by a high chemoresistance, due in part to the activity of the ATP Binding Cassette (ABC) pumps accounting for the reduction in the intracellular concentration of the drugs. In this work, we analyze the occurrence of single-nucleotide polymorphisms (SNPs) in the MDR-1 gene, in different pancreatic cancer cell lines, and in tissues from pancreatic cancer patients by DNA sequencing, as well as the expression levels of MDR-1 mRNA and protein, by qRT-PCR and Western Blot analysis. We found that gemcitabine-resistant cells, in conjunction with homozygosis of analyzed SNPs, showed high MDR-1 basal levels with further increases after gemcitabine treatment. Nevertheless, we did not observe in the human PDAC samples a correlation between the level of MDR-1 mRNA and protein expression and SNPs. Preliminary, we conclude that in our small cohort, these SNPs cannot be used as molecular markers for predicting the levels of MDR-1 mRNA/protein levels and drug responses in patients with PDAC.
Keyphrases
- multidrug resistant
- binding protein
- genome wide
- poor prognosis
- locally advanced
- end stage renal disease
- gene expression
- chronic kidney disease
- south africa
- newly diagnosed
- induced apoptosis
- ejection fraction
- single molecule
- type diabetes
- cardiovascular events
- long non coding rna
- single cell
- copy number
- peritoneal dialysis
- risk factors
- emergency department
- cardiovascular disease
- cell cycle arrest
- papillary thyroid
- cell death
- genome wide association
- signaling pathway
- drug induced
- induced pluripotent stem cells
- circulating tumor cells
- combination therapy
- childhood cancer