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      Inhibition of exosome release by ketotifen enhances sensitivity of cancer cells to doxorubicin

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          ABSTRACT

          Exosomes released from cancer cells support metastasis and growth of recipient cells and increase their resistance to chemotherapy. Therapeutic targeting of exosomes is a promising area in cancer research. Our aim is to test the effect of the mast cell stabilizer ketotifen on exosomes release from cancer cells and how this can modify their response to doxorubicin. Exosomes release from three cancer cell lines (MCF7, HeLa and BT549) was assessed by scan electron microscope and exosomes quantification kit. Doxorubicin export within exosomes was monitored flurometrically and cellular sensitivity to doxorubicin ± ketotifen was measured by sulphorhodamine-B and colony formation assays. The three cell lines release different amounts of exosome s with the highest quantity released from BT549 followed by MCF7 and then HeLa. Ketotifen (10 µmol L −1) reduced exosomes release in all three cell lines with different efficiency (HeLa>MCF7>BT549). Doxorubicin export via exosomes was highest in BT549, lower in HeLa and lowest in MCF7 cells. Pretreatment with ketotifen sensitized the cells to doxorubicin (HeLa>MCF7>BT549) with a sensitization factor of 27, 8 and 1.25 respectively. Increased sensitivity of cells to doxorubicin by ketotifen was proportional to its effect on exosome s release. Our data is the first report of ketotifen modulating exosome s release from cancer cells and opens the avenue for exosome s-targeting cancer therapy. The differential effects of ketotifen on doxorubicin exosomal export in the cell lines studied, suggests an opportunity of pharmacological enhancement of doxorubicin anti-tumor activity in some but not all cancer types.

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          Author and article information

          Journal
          Cancer Biol Ther
          Cancer Biol. Ther
          KCBT
          kcbt20
          Cancer Biology & Therapy
          Taylor & Francis
          1538-4047
          1555-8576
          2018
          15 December 2017
          : 19
          : 1
          : 25-33
          Affiliations
          [a ] Department of Pharmacy Practice & Pharmacotherapeutics, College of Pharmacy & Sharjah Institute for Medical Research, University of Sharjah , Sharjah, United Arab Emirates
          [b ] Cancer Biology department, National Cancer Institute, Cairo University , Cairo, Egypt
          [c ] Department of Physics, Center for Advanced Materials Research, University of Sharjah , Sharjah, United Arab Emirates
          [d ] Institute of Pharmacology and Toxicology, University Medical Center , Göttingen, Germany
          [e ] DZHK (German Center for Cardiovascular Research), partner site Göttingen , Germany
          Author notes
          CONTACT El-Awady, RA. relawady@ 123456sharjah.ac.ae College of Pharmacy, University of Sharjah
          Article
          PMC5790333 PMC5790333 5790333 1394544
          10.1080/15384047.2017.1394544
          5790333
          29244610
          a174de2a-6013-4630-8e4d-a7161dda11ed
          © 2018 Taylor & Francis Group, LLC
          History
          : 5 July 2017
          : 4 September 2017
          : 15 October 2017
          Page count
          Figures: 6, Tables: 0, Equations: 0, References: 30, Pages: 9
          Funding
          Funded by: AlJalila Foundation Research Center
          Award ID: AJF201612
          AlJalila Foundation Research Center. [grant number. AJF201612]
          Categories
          Article

          doxorubicin efflux,exosomes,chemotherapy resistance,Ketotifen,doxorubicin

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