Cancer Biology and Evolution Program, Department of Integrated Mathematical Oncology, Moffitt Cancer Center, Tampa, USA.
The Brady Urological Institute, Johns Hopkins School of Medicine, Baltimore, USA.
Sci Rep. 2022 Aug 12;12(1):13713. doi: 10.1038/s41598-022-18137-4.
Therapeutic resistance is one of the main reasons for treatment failure in cancer patients. The polyaneuploid cancer cell (PACC) state has been shown to promote resistance by providing a refuge for cancer cells from the effects of therapy and by helping them adapt to a variety of environmental stressors. This state is the result of aneuploid cancer cells undergoing whole genome doubling and skipping mitosis, cytokinesis, or both. In this paper, we create a novel mathematical framework for modeling the eco-evolutionary dynamics of state-structured populations and use this framework to construct a model of cancer populations with an aneuploid and a PACC state. Using in silico simulations, we explore how the PACC state allows cancer cells to (1) survive extreme environmental conditions by exiting the cell cycle after S phase and protecting genomic material and (2) aid in adaptation to environmental stressors by increasing the cancer cell's ability to generate heritable variation (evolvability) through the increase in genomic content that accompanies polyploidization. In doing so, we demonstrate the ability of the PACC state to allow cancer cells to persist under therapy and evolve therapeutic resistance. By eliminating cells in the PACC state through appropriately-timed PACC-targeted therapies, we show how we can prevent the emergence of resistance and promote cancer eradication.
治疗抵抗是癌症患者治疗失败的主要原因之一。多倍体癌细胞(PACC)状态已被证明可通过为癌细胞提供免受治疗影响的避难所并帮助它们适应各种环境胁迫来促进耐药性。这种状态是由于非整倍体癌细胞经历全基因组加倍并跳过有丝分裂、胞质分裂或两者同时发生而产生的。在本文中,我们创建了一个用于对具有状态结构的群体的生态进化动力学进行建模的新数学框架,并使用该框架构建了一个具有非整倍体和 PACC 状态的癌症群体模型。通过计算机模拟,我们探讨了 PACC 状态如何使癌细胞 (1) 在 S 期后退出细胞周期并保护基因组物质,从而在极端环境条件下存活,以及 (2) 通过增加伴随多倍化而来的基因组含量来提高癌细胞产生可遗传变异(可进化性)的能力,从而帮助适应环境胁迫。通过这样做,我们证明了 PACC 状态使癌细胞能够在治疗下持续存在并进化出治疗抵抗的能力。通过对 PACC 状态的细胞进行适时的 PACC 靶向治疗,我们展示了如何防止耐药性的出现并促进癌症的根除。