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代谢重编程、恶性转化与转移:来自慢性淋巴细胞白血病和前列腺癌的经验教训

Metabolic reprogramming, malignant transformation and metastasis: Lessons from chronic lymphocytic leukaemia and prostate cancer.

作者信息

Hindes Madison T, McElligott Anthony M, Best Oliver G, Ward Mark P, Selemidis Stavros, Miles Mark A, Nturubika Bukuru D, Gregory Philip A, Anderson Paul H, Logan Jessica M, Butler Lisa M, Waugh David J, O'Leary John J, Hickey Shane M, Thurgood Lauren A, Brooks Douglas A

机构信息

Clinical and Health Sciences, University of South Australia, Adelaide, Australia.

Discipline of Haematology, School of Medicine, Trinity Translational Medicine Institute, St. James's Hospital and Trinity College, Dublin, Ireland.

出版信息

Cancer Lett. 2025 Jan 2;611:217441. doi: 10.1016/j.canlet.2025.217441.

Abstract

Metabolic reprogramming is a hallmark of cancer, crucial for malignant transformation and metastasis. Chronic lymphocytic leukaemia (CLL) and prostate cancer exhibit similar metabolic adaptations, particularly in glucose and lipid metabolism. Understanding this metabolic plasticity is crucial for identifying mechanisms contributing to metastasis. This review considers glucose and lipid metabolism in CLL and prostate cancer, exploring their roles in healthy and malignant states and during disease progression. In CLL, lipid metabolism supports cell survival and migration, with aggressive disease characterised by increased fatty acid oxidation and altered sphingolipids. Richter's transformation and aggressive lymphoma, however, exhibit a metabolic shift towards increased glycolysis. Similarly, prostate cell metabolism is unique, relying on citrate production in the healthy state and undergoing metabolic reprogramming during malignant transformation. Early-stage prostate cancer cells increase lipid synthesis and uptake, and decrease glycolysis, whereas metastatic cells re-adopt glucose metabolism, likely driven by interactions with the tumour microenvironment. Genetic drivers including TP53 and ATM mutations connect metabolic alterations to disease severity in these two malignancies. The bone microenvironment supports the metabolic demands of these malignancies, serving as an initiation niche for CLL and a homing site for prostate cancer metastases. By comparing these malignancies, this review underscores the importance of metabolic plasticity in cancer progression and highlights how CLL and prostate cancer may be models of circulating and solid tumours more broadly. The metabolic phenotypes throughout cancer cell transformation and metastasis, and the microenvironment in which these processes occur, present opportunities for interventions that could disrupt metastatic processes and improve patient outcomes.

摘要

代谢重编程是癌症的一个标志,对恶性转化和转移至关重要。慢性淋巴细胞白血病(CLL)和前列腺癌表现出相似的代谢适应性,尤其是在葡萄糖和脂质代谢方面。了解这种代谢可塑性对于确定促成转移的机制至关重要。本综述探讨了CLL和前列腺癌中的葡萄糖和脂质代谢,研究它们在健康和恶性状态以及疾病进展过程中的作用。在CLL中,脂质代谢支持细胞存活和迁移,侵袭性疾病的特征是脂肪酸氧化增加和鞘脂改变。然而,Richter转化和侵袭性淋巴瘤表现出向糖酵解增加的代谢转变。同样,前列腺细胞代谢是独特的,在健康状态下依赖柠檬酸盐生成,在恶性转化过程中经历代谢重编程。早期前列腺癌细胞增加脂质合成和摄取,并减少糖酵解,而转移细胞重新采用葡萄糖代谢,这可能是由与肿瘤微环境的相互作用驱动的。包括TP53和ATM突变在内的遗传驱动因素将这两种恶性肿瘤中的代谢改变与疾病严重程度联系起来。骨微环境支持这些恶性肿瘤的代谢需求,是CLL的起始微环境和前列腺癌转移的归巢部位。通过比较这些恶性肿瘤,本综述强调了代谢可塑性在癌症进展中的重要性,并突出了CLL和前列腺癌如何更广泛地成为循环肿瘤和实体肿瘤的模型。癌细胞转化和转移过程中的代谢表型以及这些过程发生的微环境,为可能破坏转移过程并改善患者预后的干预措施提供了机会。

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