Glava-Obrovac Ljubica, Karner Ivan, Pavlak Marina, Radacić Marko, Kasnar-Samprec Jelena, Zinić Biserka
Clinical Hospital Osijek, Osijek, Croatia.
Nucleosides Nucleotides Nucleic Acids. 2005;24(5-7):557-69. doi: 10.1081/ncn-200061812.
Large-scale preparation of 5-bromo-1-mesyluracil (BMsU) 4 has been optimized. BMsU was synthesized by condensation of silylated 5-bromouracil and MsCl in acetonitrile or by the reaction of 5-bromouracil with MsCl in pyridine. The same product was obtained by bromination of 1-mesyluracil. The purpose of this study was to elucidate the effects of BMsU on the biosynthetic activity of tumor cell enzymes involved in DNA, RNA and protein syntheses, and in de novo and salvage pyrimidine and purine syntheses. Investigations were performed in vitro on human cervix carcinoma cells (HeLa). BMsU displayed inhibitory effects on DNA and RNA syntheses in HeLa cells after 24 h of treatment. De nova biosynthesis of pyrimidine and purine was also affected. Antitumor activity of BMsU is closely associated with its inhibitory activity on the enzymes that play an important role in the metabolism of tumor cells. In vivo antitumor activity of BMsU was also investigated. The model used in investigations was a mouse anaplastic mammary carcinoma transplanted into the thigh of the right leg of CBA mice. Significant reduction in tumor growth time was achieved with BmsU administered at a dose of 50 mg/kg.
5-溴-1-甲磺酰基尿嘧啶(BMsU)4的大规模制备已得到优化。BMsU可通过在乙腈中使硅烷基化的5-溴尿嘧啶与甲磺酰氯缩合,或通过5-溴尿嘧啶与甲磺酰氯在吡啶中反应来合成。通过1-甲磺酰基尿嘧啶的溴化反应也可得到相同产物。本研究的目的是阐明BMsU对参与DNA、RNA和蛋白质合成以及嘧啶和嘌呤从头合成与补救合成的肿瘤细胞酶的生物合成活性的影响。在体外对人宫颈癌细胞(HeLa)进行了研究。处理24小时后,BMsU对HeLa细胞中的DNA和RNA合成显示出抑制作用。嘧啶和嘌呤的从头生物合成也受到影响。BMsU的抗肿瘤活性与其对在肿瘤细胞代谢中起重要作用的酶的抑制活性密切相关。还研究了BMsU的体内抗肿瘤活性。研究中使用的模型是移植到CBA小鼠右腿大腿的小鼠间变性乳腺癌。以50mg/kg的剂量施用BmsU可显著缩短肿瘤生长时间。