RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Bistable dynamics of TAN-NK cells in tumor growth and control of radiotherapy-induced neutropenia in lung cancer treatment.
Bistable dynamics of TAN-NK cells in tumor growth and control of radiotherapy-induced neutropenia in lung cancer treatment.
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中性粒细胞在先天免疫反应中作为许多疾病(包括癌症)的第一道防线发挥着关键作用。肿瘤相关中性粒细胞(TANs)在癌症进展的各个阶段,通过与复杂肿瘤微环境(TME)中癌细胞的相互作用,既可以促进也可以抑制肿瘤生长。
在本研究中,我们开发并分析了数学模型,以研究NK 细胞(NK细胞)的作用以及N1和N2 TAN表型之间通过关键信号网络杀伤癌细胞的动态转换,以及如何将放射辅助治疗联合使用以提高抗肿瘤疗效。
我们研究了N1/N2 TANs、NK细胞和肿瘤细胞之间复杂的免疫-肿瘤动力学,它们通过关键细胞外介质(转化生长因子(TGF-$ \beta $)、干扰素γ(IFN-$ \gamma $))和凋亡信号网络中的细胞内调控进行通讯。
我们开发了多种肿瘤预防策略以根除肿瘤,包括联合(IFN-$ \gamma $、外源性NK、TGF-$ \beta $抑制剂)治疗以及在复杂TME中优化控制的电离辐射。利用该模型,我们研究了辐射诱导TME变化的基本机制,以及内部和外部免疫组成对肿瘤细胞命运及其对不同治疗方案反应的影响。
Neutrophils play a crucial role in the innate immune response as a first line of defense in many diseases, including cancer. Tumor-associated neutrophils (TANs) can either promote or inhibit tumor growth in various steps of cancer progression via mutual interactions with cancer cells in a complex tumor microenvironment (TME).
In this study, we developed and analyzed mathematical models to investigate the role of natural killer cells (NK cells) and the dynamic transition between N1 and N2 TAN phenotypes in killing cancer cells through key signaling networks and how adjuvant therapy with radiation can be used in combination to increase anti-tumor efficacy.
We examined the complex immune-tumor dynamics among N1/N2 TANs, NK cells, and tumor cells, communicating through key extracellular mediators (Transforming growth factor (TGF-$ \beta $), Interferon gamma (IFN-$ \gamma $)) and intracellular regulation in the apoptosis signaling network.
We developed several tumor prevention strategies to eradicate tumors, including combination (IFN-$ \gamma $, exogenous NK, TGF-$ \beta $ inhibitor) therapy and optimally-controlled ionizing radiation in a complex TME. Using this model, we investigated the fundamental mechanism of radiation-induced changes in the TME and the impact of internal and external immune composition on the tumor cell fate and their response to different treatment schedules.
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