Amsterdam University College, Amsterdam, The Netherlands.
Laboratory Medical Oncology, Amsterdam UMC, Vrije Universiteit Amsterdam location VUMC, Cancer Center Amsterdam, The Netherlands.
Expert Opin Drug Metab Toxicol. 2022 Jan;18(1):61-83. doi: 10.1080/17425255.2022.2049234. Epub 2022 Apr 6.
The pentose phosphate pathway (PPP) branches from glycolysis and is crucial for cell growth, since it provides necessary compounds for anabolic reactions, nucleotide synthesis, and detoxification of reactive-oxygen-species (ROS). Overexpression of PPP enzymes has been reported in multiple cancer types and linked to therapy resistance, making their inhibition interesting targets for anti-cancer therapies.
This review summarizes the extent of PPP upregulation across different cancer types, and the non-metabolic functions that PPP-enzymes might contribute to cancer initiation and maintenance. The effects of PPP-inhibition and their combinations with chemotherapeutics are summarized. We searched the databases provided by the University of Amsterdam to characterize the altered expression of the PPP across different cancer types, and to identify the effects of PPP-inhibition.
It can be concluded that there are synergistic and additive effects of PPP-inhibition and various classes of chemotherapeutics. These effects may be attributed to the increased susceptibility to ROS. However, the toxicity, low efficacy, and off-target effects of PPP-inhibitors make application in clinical practice challenging. Novel inhibitors are currently being developed, which could make PPP-inhibition a potential therapeutic strategy in the future, especially in combination with conventional chemotherapeutics and the inhibition of other metabolic pathways.
戊糖磷酸途径(PPP)从糖酵解分支出来,对细胞生长至关重要,因为它为合成代谢反应、核苷酸合成和活性氧物质(ROS)解毒提供必要的化合物。PPP 酶在多种癌症类型中过度表达,并与治疗耐药性相关,使其抑制成为癌症治疗的有趣靶点。
本综述总结了 PPP 在不同癌症类型中的上调程度,以及 PPP 酶可能对癌症发生和维持做出的非代谢功能贡献。总结了 PPP 抑制及其与化疗药物联合应用的效果。我们搜索了阿姆斯特丹大学提供的数据库,以描述 PPP 在不同癌症类型中的改变表达,并确定 PPP 抑制的效果。
可以得出结论,PPP 抑制与各种类别的化疗药物具有协同和相加作用。这些效果可能归因于对 ROS 的敏感性增加。然而,PPP 抑制剂的毒性、低疗效和脱靶效应使得在临床实践中应用具有挑战性。目前正在开发新型抑制剂,这可能使 PPP 抑制成为未来的潜在治疗策略,特别是与传统化疗药物和其他代谢途径的抑制相结合时。