Karimpur-Zahmatkesh Arezu, Khalaj-Kondori Mohammad
Department of Animal Biology, Faculty of Natural Sciences, University of Tabriz, Tabriz, Iran.
Mol Biol Rep. 2025 Apr 9;52(1):375. doi: 10.1007/s11033-025-10472-9.
Cancer cells are considered the most adaptable for their metabolic status, which supports growth, survival, rapid proliferation, invasiveness, and metastasis in a nutrient-deficient microenvironment. Since the discovery of altered glucose metabolism (aerobic glycolysis), which is generally known as a part of metabolic reprogramming and an innate trait of cancer cells, in 1930 via Dr. Otto Warburg, numerous studies have endeavored to recognize various aspects of cancer cell metabolism and find new methods for efficiently eradicating described cells by targeting their energy metabolism. In this way, the outcomes have mainly been promising. Accordingly, outlining the related results will indeed assist us in making a definitive path for developing targeted therapy strategies based on cancer cell-altered metabolism. The present study reviews the key features of cancer cell metabolism and treatment strategies based on them. It emphasizes the importance of targeting cancer cell dysregulated metabolic pathways that influence the cell energy supply and manage cancer cell growth and survival. This trial also introduces a multimodal therapeutic strategy hypothesis, a potential next-generation combination therapy approach, and suggests interdisciplinary research to recognize the complexities of cancer metabolism and exploit them for designing more efficacious cancer therapeutic strategies.
癌细胞被认为是对其代谢状态适应性最强的细胞,这种代谢状态在营养缺乏的微环境中支持细胞生长、存活、快速增殖、侵袭和转移。自1930年奥托·瓦伯格博士发现葡萄糖代谢改变(有氧糖酵解)以来,这一现象被普遍认为是代谢重编程的一部分以及癌细胞的固有特征,众多研究致力于认识癌细胞代谢的各个方面,并寻找通过靶向癌细胞能量代谢来有效根除癌细胞的新方法。通过这种方式,研究结果主要是很有前景的。因此,概述相关结果确实将有助于我们为基于癌细胞代谢改变制定靶向治疗策略确定明确的方向。本研究回顾了癌细胞代谢的关键特征以及基于这些特征的治疗策略。它强调了靶向影响细胞能量供应并控制癌细胞生长和存活的癌细胞失调代谢途径的重要性。本试验还提出了一种多模态治疗策略假说,这是一种潜在的下一代联合治疗方法,并建议进行跨学科研究,以认识癌症代谢的复杂性,并利用这些复杂性设计更有效的癌症治疗策略。