4.3 Article

In silico identified targeted inhibitors of P-glycoprotein overcome multidrug resistance in human cancer cells in culture

期刊

出版社

JOHN WILEY & SONS LTD
DOI: 10.1002/prp2.170

关键词

In silico drug screens; MDR inhibitors; multidrug resistance; P-glycoprotein; reversing drug resistance

资金

  1. National Institute of General Medical Sciences, National Institutes of Health (NIH/NIGMS) [1R15GM094771 - 01A1]
  2. SMU University Research Council
  3. SMU Dedman College Dean's Research Council
  4. Dedman College Center for Drug Discovery, Design and Delivery (CD4)
  5. Communities Foundation of Texas, Dallas

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Failure of cancer chemotherapies is often linked to the over expression of ABC efflux transporters like the multidrug resistance P-glycoprotein (P-gp). P-gp expression in cells leads to the elimination of a variety of chemically unrelated, mostly cytotoxic compounds. Administration of chemotherapeutics during therapy frequently selects for cells that over express P-gp and are therefore capable of robustly exporting diverse compounds, including chemotherapeutics, from the cells. P-gp thus confers multidrug resistance to a majority of drugs currently available for the treatment of cancers and diseases like HIV/AIDS. The search for P-gp inhibitors for use as co-therapeutics to combat multidrug resistances has had little success to date. In a previous study (Brewer et al., Mol Pharmacol 86: 716-726, 2014), we described how ultrahigh throughput computational searches led to the identification of four drug-like molecules that specifically interfere with the energy harvesting steps of substrate transport and inhibit P-gp catalyzed ATP hydrolysis in vitro. In the present study, we demonstrate that three of these compounds reversed P-gp-mediated multidrug resistance of cultured prostate cancer cells to restore sensitivity comparable to naive prostate cancer cells to the chemotherapeutic drug, paclitaxel. Potentiation concentrations of the inhibitors were < 3 mu mol/L. The inhibitors did not exhibit significant toxicity to noncancerous cells at concentrations where they reversed multidrug resistance in cancerous cells. Our results indicate that these compounds with novel mechanisms of P-gp inhibition are excellent leads for the development of co-therapeutics for the treatment of multidrug resistances.

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