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:From air pollution to lung cancer: Microbiota as a mediator in the malignant transformation of pulmonary nodules.
From air pollution to lung cancer: Microbiota as a mediator in the malignant transformation of pulmonary nodules.
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空气污染促进肺结节的恶性转化和肺癌的发生发展。新出现的证据表明,肺并非无菌环境,空气污染诱导的菌群失调可能改变肺部微生物群的组成和多样性。本综述探讨了空气污染暴露可能导致呼吸道菌群失调的途径,进而可能改变肿瘤微环境、破坏免疫稳态,并最终参与肺结节的进展。提出了“空气污染-微生物群失调-免疫调节-PN恶性变”模型。关于肿瘤微环境的改变和免疫抑制,发现了多种细胞因子(IL-1、IL-6、IFN-γ、TGF-β)和信号通路(PI3K/AKT、NF-κB、ERK)的作用,以及免疫抑制对T细胞、NK 细胞和巨噬细胞的影响。
此外,“口腔-肺轴”促进PD-LC的进展,其中Porphyromonas gingivalis被确定为关键生物标志物和致病驱动因素。
此外,免疫检查点抑制、抗生素治疗、粪菌移植和益生菌治疗等治疗方法均显示出令人鼓舞的潜力。本综述强调了菌群失调在空气污染-PN-LC轴中的关键作用,为新的致病机制提供了见解,并突出了针对微生物群的肺癌预防和治疗方法。
Air pollution contributes to the malignant transformation of pulmonary nodules and the development of lung cancer. Emerging evidence suggests that the lung is not a sterile environment, and that air pollution-induced dysbiosis may alter the composition and diversity of the lung microbiota. This review explores the pathway by which exposure to air pollution may contribute to respiratory tract dysbiosis, which in turn may alter the tumor microenvironment, disrupt immune homeostasis, and ultimately be implicated in the progression of pulmonary nodules.
A model of "air pollution-microbiota dysbiosis-immune modulation-PN malignancy" is proposed. Regarding alterations in the tumor microenvironment and immune suppression, the roles of various cytokines (IL-1, IL-6, IFN-γ, TGF-β) and signaling pathways (PI3K/AKT, NF-κB, ERK) and the effects of immune suppression on T cells, natural killer cells, and macrophages were found.
Additionally, the "oral-lung axis" contributes to the progression of PD-LC, with Porphyromonas gingivalis identified as a key biomarker and pathogenic driver.
Additionally, treatment approaches such as immune checkpoint inhibition, antibiotic therapy, fecal microbiota transplantation, and probiotic therapy have all shown encouraging potential. This review highlights the pivotal role of dysbiosis in the air pollution-PN-LC axis, providing insights into novel pathogenic mechanisms and highlighting microbiota-targeted approaches for lung cancer prevention and treatment.
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