Wang Wenxin, Li Tong, Wu Kui
BGI Genomics, Shenzhen, 518083, China.
Guangdong Provincial Key Laboratory of Human Disease Genomics, Shenzhen Key Laboratory of Genomics, BGI Research, Shenzhen, 518083, China.
Cell Death Discov. 2025 Mar 10;11(1):93. doi: 10.1038/s41420-025-02376-1.
Cell death is critical in tumor biology. The common cancer therapies can cause cell death and alleviate tumor, while the cancer cells can develop a resistance to cell death and survive from the therapies. Thus, not only observing the alternative mechanisms of tumor cells resistant to cell death, but also understanding the intricate dynamics of cell death processes within the tumor microenvironment (TME), are essential for tailoring effective therapeutic strategies. High-throughput sequencing technologies have revolutionized cancer research by enabling comprehensive molecular profiling. Recent advances in single cell sequencing have unraveled the heterogeneity of TME components, shedding light on their complex interactions. In this review, we explored the interplay between cell death signaling and the TME, summarised the potential drugs inducing cell death in pre-clinical stage, reviewed some studies applying next-generation sequencing technologies in cancer death research, and discussed the future utilization of updated sequencing platforms in screening novel treatment methods targeted cell death. In conclusion, leveraging multi-omics technologies to dissect cell death signaling in the context of the TME holds great promise for advancing cancer research and therapy development.
细胞死亡在肿瘤生物学中至关重要。常见的癌症治疗方法可导致细胞死亡并缓解肿瘤,然而癌细胞能够对细胞死亡产生抗性并在治疗中存活下来。因此,不仅要观察肿瘤细胞对细胞死亡产生抗性的替代机制,还要了解肿瘤微环境(TME)中细胞死亡过程的复杂动态,这对于制定有效的治疗策略至关重要。高通量测序技术通过实现全面的分子谱分析彻底改变了癌症研究。单细胞测序的最新进展揭示了TME成分的异质性,阐明了它们之间的复杂相互作用。在本综述中,我们探讨了细胞死亡信号与TME之间的相互作用,总结了临床前阶段诱导细胞死亡的潜在药物,回顾了一些在癌症死亡研究中应用下一代测序技术的研究,并讨论了更新的测序平台在筛选靶向细胞死亡的新型治疗方法中的未来应用。总之,利用多组学技术在TME背景下剖析细胞死亡信号对于推进癌症研究和治疗发展具有巨大潜力。