Upregulation of thymidine phosphorylase in rectal cancer tissues by mitomycin C |
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Authors: | Ogata Yutaka Matono Keiko Sasatomi Teruo Ishibashi Nobuya Torigoe Shojiro Fukumitsu Takamasa Mizobe Tomoaki Yamashita Natsumi Yanagawa Takashi Shirouzu Kazuo |
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Affiliation: | Department of Surgery, Kurume University School of Medicine, Kurume, Fukuoka, Japan. yogata@med.kurume-u.ac.jp |
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Abstract: | BACKGROUND AND OBJECTIVES: We have investigated the regulation by mitomycin C (MMC) of thymidine phosphorylase (dThdPase) and dihydropyrimidine dehydrogenase (DPD), which enhances or reduces the efficacy of capecitabine and its metabolite 5'-deoxy-5-fluorouridine (5'-DFUR), in rectal cancer tissues. MATERIALS AND METHODS: In 31 patients with a rectal cancer, tumor biopsies were performed before and after pre-operative venous administration of 4 mg/m2, 6 mg/m2, or 10 mg/m2 of MMC. The dThdPase and DPD levels in the biopsy and surgical specimens were measured using ELISA, and immunostaining for dThdPase was performed. RESULTS: The fitting multiple linear regression models indicated that the dThdPase levels increased after MMC administration, in particular in the patients with a pre-treatment dThdPase level less than 56.2 U/mg protein (median value). The time course analysis indicated that the increase in the dThdPase level by 4 mg/m2 of MMC administration continued for 3 weeks. The dThdPase/DPD ratio was increased after MMC administration in patients with a pre-treatment dThdPase/DPD ratio less than 1.79 (median value). MMC enhanced the expression of dThdPase protein both in the tumor cells and in the stromal cells. The disease free-survival rate in the Dukes B or C patients with a high dThdPase/DPD ratio in surgical specimen who received 5'-DFUR based adjuvant chemotherapy tended to be higher than that in those with a low dThdPase/DPD ratio. CONCLUSION: MMC may upregulate the dThdPase level and the dThdPase/DPD ratio in rectal cancer tissues. Combined use of MMC with capecitabine or 5'-DFUR may offer a more effective colorectal cancer therapy. |
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Keywords: | dihydropyrimidine dehydrogenase (DPD) capecitabine dThdPase/DPD ratio 5′‐deoxy‐floorouridine (5′‐DFUR) biochemical modulation fitting multiple linear regression models |
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