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Polyamine metabolism and cancer: treatments, challenges and opportunities

机译:多胺代谢和癌症:治疗,挑战和机遇

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Advances in our understanding of the metabolism and molecular functions of polyamines and their alterations in cancer have led to resurgence in the interest of targeting polyamine metabolism as an anticancer strategy. Increasing knowledge of the interplay between polyamine metabolism and other cancer-driving pathways, including the PTEN-PI3K-mTOR complex 1 (mTORC1), WNT signalling and RAS pathways, suggests potential combination therapies that will have considerable clinical promise. Additionally, an expanding number of promising clinical trials with agents targeting polyamines for both therapy and prevention are ongoing. New insights into molecular mechanisms linking dysregulated polyamine catabolism and carcinogenesis suggest additional strategies that can be used for cancer prevention in at-risk individuals. In addition, polyamine blocking therapy, a strategy that combines the inhibition of polyamine biosynthesis with the simultaneous blockade of polyamine transport, can be more effective than therapies based on polyamine depletion alone and may involve an antitumour immune response. These findings open up new avenues of research into exploiting aberrant polyamine metabolism for anticancer therapy.
机译:我们对多胺的新陈代谢和分子功能的理解进展及其在癌症的改变引起了靶向多胺代谢作为抗癌策略的兴趣的重新训练。增加对多胺代谢和其他癌症驾驶途径之间的相互作用的知识,包括Pten-PI3K-MTOR复合物1(MTORC1),WNT信号传导和RAS途径,表明潜在的组合疗法将具有相当大的临床承诺。另外,正在进行中靶向多胺的药剂的临床试验的扩大数量正在进行中。连接失调多胺分解代谢和致癌物质的分子机制的新见解表明额外的策略可用于患有风险中的癌症。此外,多胺阻断治疗,将多胺生物合成的抑制与同时封闭多胺转运相结合的策略可以比单独的多胺耗竭的疗法更有效,并且可能涉及抗肿瘤免疫应答。这些调查结果开辟了新的研究,以利用抗癌治疗的异常多胺代谢。

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