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Relationships between resistance to cisplatin and antifolates in sensitive and resistant tumour cell lines
L R Kelland1, R Kimbell, A Hardcastle
1CRC Centre for Cancer Therapeutics, Institute of Cancer Research, Belmont, Sutton, Surrey, U.K.
Abstract:
Possible relationships between tumour resistance to cisplatin and the folate-based thymidylate synthase (TS) inhibitors, CB3717 and ZD1694 (tomudex), have been investigated in vitro using a panel of tumour cell lines (predominantly human ovarian), either parental or possessing acquired resistance to cisplatin or ZD1694. Across eight parent human tumour cell lines, ZD1694 was the most potent drug (mean IC50 of 1.9 x 10(-8) M), being over 250 times as potent as its prototype CB3717 (mean IC50 of 4.8 x 10(-6) M). In five pairs of acquired cisplatin-resistant human tumour cell lines (three ovarian, one cervical and one testicular) which encompass all of the main known mechanisms of platinum drug resistance, ZD1694, CB3717 and the DHFR inhibitor, methotrexate, all exhibited non-cross-resistance. The cervical line, HX/155cisR, showed collateral sensitivity to ZD1694, CB3717, 5-fluorouracil (FUra) and fluorodeoxyuridine (FdUrd). One cell line, A2780cisR, showed a low level of cross-resistance to FUra (resistance factor, RF, of 1.5) and FdUrd (RF of 3.8). A2780cisR, in common with two other cisplatin-resistant lines, did not possess elevated TS activity compared with its parent. Cisplatin retained activity in four acquired ZD1694-resistant cell lines (encompassing reduced folate transport, elevated TS and defective polyglutamation mechanisms of resistance). Furthermore, combinations of ZD1694 with each of the platinum-based drugs, cisplatin, carboplatin and the recently introduced orally administrable, JM216, all showed additive growth inhibitory effects by median effect analysis. These data suggest that the tumour inhibitory properties of the recently introduced highly potent TS inhibitor, ZD1694, and cisplatin, and, moreover, their respective mechanisms of resistance, do not overlap. Therefore, these drugs may be considered for combination in the clinic.
Insights
This study found that the thymidylate synthase inhibitor ZD1694 (tomudex) and cisplatin do not share resistance mechanisms. This suggests potential for combining these anti-cancer drugs in clinical treatments.
Area of Science:
- Pharmacology and Oncology
- Drug Resistance Mechanisms
- Cancer Therapeutics
Background:
- Investigating potential cross-resistance between cisplatin and folate-based thymidylate synthase (TS) inhibitors is crucial for optimizing combination cancer therapies.
- Understanding drug resistance mechanisms is key to developing effective treatment strategies, particularly for solid tumors like ovarian cancer.
Purpose of the Study:
- To evaluate the in vitro relationships between acquired resistance to cisplatin and sensitivity to folate-based TS inhibitors (CB3717, ZD1694).
- To determine if resistance mechanisms to cisplatin overlap with those of ZD1694 and other antifolates.
- To assess the potential for combining ZD1694 with platinum-based drugs like cisplatin.
Main Methods:
- Utilized a panel of parental and acquired cisplatin- or ZD1694-resistant human tumor cell lines, predominantly ovarian.
- Assessed drug potency using IC50 values and analyzed drug interactions using median effect analysis.
- Investigated mechanisms of resistance including elevated TS activity, altered folate transport, and defective polyglutamation.
Main Results:
- ZD1694 demonstrated high potency, significantly exceeding that of CB3717 across tested cell lines.
- No cross-resistance was observed between cisplatin-resistant cell lines and ZD1694, CB3717, or methotrexate, with some collateral sensitivity noted.
- Combinations of ZD1694 with cisplatin, carboplatin, and JM216 showed additive growth inhibitory effects.
Conclusions:
- Tumor resistance mechanisms for ZD1694 and cisplatin do not appear to overlap.
- ZD1694 exhibits potent anti-tumor activity and is effective even in cisplatin-resistant cell lines.
- The lack of overlapping resistance suggests that ZD1694 and cisplatin are suitable candidates for clinical combination therapy.