Jeeyavudeen Mohammad Sadiq, Mathiyalagan Navin, Fernandez James Cornelius, Pappachan Joseph M
Department of Endocrinology & Metabolism, University Hospitals of Edinburgh, EH16 4SA Edinburgh, UK.
Department of Medical Oncology, Nottingham University Hospitals NHS Trust, NG5 1PB Nottingham, UK.
Explor Target Antitumor Ther. 2024;5(2):349-373. doi: 10.37349/etat.2024.00222. Epub 2024 Apr 24.
Pheochromocytomas and paragangliomas (PPGLs) have emerged as one of the most common endocrine tumors. It epitomizes fascinating crossroads of genetic, metabolic, and endocrine oncology, providing a canvas to explore the molecular intricacies of tumor biology. Predominantly rooted in the aberration of metabolic pathways, particularly the Krebs cycle and related enzymatic functionalities, PPGLs manifest an intriguing metabolic profile, highlighting elevated levels of oncometabolites like succinate and fumarate, and furthering cellular malignancy and genomic instability. This comprehensive review aims to delineate the multifaceted aspects of tumor metabolism in PPGLs, encapsulating genetic factors, oncometabolites, and potential therapeutic avenues, thereby providing a cohesive understanding of metabolic disturbances and their ramifications in tumorigenesis and disease progression. Initial investigations into PPGLs metabolomics unveiled a stark correlation between specific genetic mutations, notably in the succinate dehydrogenase complex () genes, and the accumulation of oncometabolites, establishing a pivotal role in epigenetic alterations and hypoxia-inducible pathways. By scrutinizing voluminous metabolic studies and exploiting technologies, novel insights into the metabolic and genetic aspects of PPGLs are perpetually being gathered elucidating complex interactions and molecular machinations. Additionally, the exploration of therapeutic strategies targeting metabolic abnormalities has burgeoned harboring potential for innovative and efficacious treatment modalities. This review encapsulates the profound metabolic complexities of PPGLs, aiming to foster an enriched understanding and pave the way for future investigations and therapeutic innovations in managing these metabolically unique tumors.
嗜铬细胞瘤和副神经节瘤(PPGLs)已成为最常见的内分泌肿瘤之一。它是遗传、代谢和内分泌肿瘤学中引人入胜的交叉领域的缩影,为探索肿瘤生物学的分子复杂性提供了一个平台。PPGLs主要源于代谢途径的异常,特别是三羧酸循环和相关酶功能,表现出一种有趣的代谢特征,突出了琥珀酸和富马酸等致癌代谢物水平的升高,并进一步加剧了细胞恶性肿瘤和基因组不稳定性。这篇综述旨在阐述PPGLs肿瘤代谢的多方面内容,包括遗传因素、致癌代谢物和潜在的治疗途径,从而对代谢紊乱及其在肿瘤发生和疾病进展中的影响提供一个连贯的理解。对PPGLs代谢组学的初步研究揭示了特定基因突变,特别是琥珀酸脱氢酶复合体()基因的突变与致癌代谢物积累之间的明显关联,在表观遗传改变和缺氧诱导途径中发挥了关键作用。通过仔细研究大量的代谢研究并利用相关技术,对PPGLs的代谢和遗传方面的新见解不断被收集,阐明了复杂的相互作用和分子机制。此外,针对代谢异常的治疗策略的探索也蓬勃发展,具有创新和有效治疗方式的潜力。这篇综述概括了PPGLs深刻的代谢复杂性,旨在促进更深入的理解,并为未来管理这些代谢独特肿瘤的研究和治疗创新铺平道路。