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Use of Metabolic Control Analysis to Design a New Strategy for Gancer Therapy

机译:代谢控制分析的使用设计了一种危机疗法的新策略

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The synthesis of nucleic acids is much more active in cancer than in normal cells, and is a process of the utmost importance in tumour proliferation. At present, conventional cancer treatment is directed only at the inhibition of synthesis of the purine and pyrimidine bases. Antimetabolites and alkylating agents are cancer chemotherapeutic agents that inhibit nucleic acid synthesis by preventing the synthesis of substrates for only half of the nucleic acid molecule, namely the purine and pyrimidine bases. It has been well known since the 1930s that glucose metabolism is increased in malignant tissues (Warburg, 1930, 1956). The increase in glucose metabolism is accompanied not only by an increase of lactate production but also by an increase in pentose production for RNA and DNA synthesis (Eigenbrodt et al., 1985). However, the importance of the pentose phosphate pathway in tumours has been overlooked.
机译:核酸的合成在癌症中比在正常细胞中更为活跃,并且是在肿瘤增殖中至关重要的过程。目前,常规的癌症治疗仅在抑制嘌呤和嘧啶碱基的抑制下。抗体代谢物和烷基化剂是癌症化学治疗剂,其通过防止仅用于核酸分子的一半的底物,即嘌呤和嘧啶碱基来抑制核酸合成。自20世纪30年代以来,它已经众所周知,恶性组织(Warburg,1956年)增加葡萄糖代谢。葡萄糖代谢的增加不仅可以通过增加乳酸生产而且通过对RNA和DNA合成的戊糖产生的增加(Eigenbrodt等,1985)。然而,肿瘤中戊糖磷酸途径的重要性被忽略了。

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