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:Capecitabine combined with fecal microbiota transplantation prevents colorectal cancer progression through correction of microbial dysbiosis and immune regulation.
Capecitabine combined with fecal microbiota transplantation prevents colorectal cancer progression through correction of microbial dysbiosis and immune regulation.
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结直肠癌(CRC)巨大的经济负担迫切需要开发创新的治疗方法。肠道微生物群在 CRC 中作用的研究兴趣日益增加。卡培他滨作为一种化疗药物,可能会破坏肠道微生物群的平衡。
本研究探讨了卡培他滨联合粪菌移植(FMT)在氧化偶氮甲烷和葡聚糖硫酸钠诱导的 CRC 小鼠模型中的抗癌效果。FMT 通过灌肠方式使用健康小鼠的粪便微生物群实现。卡培他滨减少了 CRC 小鼠癌灶的数量和直径,而 FMT 补充产生了更显著的影响,表现为体重和生存率的增加。卡培他滨显著降低了 CRC 小鼠中病原菌的丰度,如 Bacteroides、Enterorhabdus、Monoglobus、Rodentibacter、uncultured_rumen_bacterium、Turicibacter 和 Streptococcus。FMT 的补充更有效地逆转了 CRC 小鼠的肠道微生物群失调,如 ACE 和 Chao 1 指数、PCoA 分析以及增强的正常生物学通路所证明。微生物失调诱导了 CRC 小鼠的免疫功能障碍,表现为免疫细胞募集异常和细胞因子产生过多。卡培他滨治疗减少了免疫细胞浸润,包括 CD3+ T 细胞、CD4+ T 细胞和 CD49b+ NK 细胞,因为化疗通常会抑制免疫系统。FMT 的补充增加了 CD4+ T 细胞、CD49b+ NK 细胞、CD8+ T 细胞和 LY6G+ 中性粒细胞的比例,表明针对 CRC 的免疫反应得到改善。
此外,单独卡培他滨治疗降低了 IL1a、IL6、IL12a、IL12b、IL17、IL22、FOXP3、STAT3、IFN-γ、TNF-α、TGF-β、GZMA、CXCR4、OPN、PD-1 和 PD-L1 的过表达。FMT补充对CRC产生了更高的免疫反应,因为它对炎症细胞因子的过度表达具有更强的抑制作用,并增强了IL10、IFN-γ和CXCR4的产生。这些细胞因子与Azospirillum_sp._47_25、Romboutsia、Lactococcus、Rikenella_sp._Marseille_P3215和Turicibacter呈正相关,与Parabacteroids、unclassified_Oscillospiraceae、Marvinbryantia、unclassified_Clostridia_vadinBB60_group、unclassified_Erysipelatoclostridiaceae、A2、Roseburia、Rikenellaceae_RC9_gut_group、Acetatifactor和unclassified_Clostridia呈负相关。卡培他滨与FMT联合在预防CRC方面比单用卡培他滨更有效,因为它可逆转肠道微生物异常并增强对CRC的免疫反应。
The significant economic burden of colorectal cancer (CRC) necessitates the development of innovative therapeutic approaches. Interest in the gut microbiota’s role in CRC has increased. Capecitabine, as a chemotherapy, may disrupt the balance of the intestinal microbiota.
This study investigated the anticancer effects of capecitabine combined with fecal microbiota transplantation (FMT) in a CRC mouse model caused by azoxymethane and dextran sodium sulfate. FMT was achieved with fecal microbiota from healthy mice through enema. Capecitabine decreased the number and diameter of cancer foci in CRC mice, while FMT supplementation had a more noticeable impact, indicated by increased body weight and survival rate. Capecitabine significantly reduced the abundance of pathogenic bacteria in mice with CRC, such as Bacteroides, Enterorhabdus, Monoglobus, Rodentibacter, uncultured_rumen_bacterium, Turicibacter, and Streptococcus.
The supplementation of FMT more effectively reversed the gut microbiota dysbiosis in CRC mice, as demonstrated by the ACE and Chao 1 indices, PCoA analysis, and enhanced normal biological pathways. Microbial dysbiosis induced immunological dysfunction in CRC mice, indicated by abnormal immune cell recruitment and excessive cytokine production.
Capecitabine treatment reduced immune cell infiltration, including CD3+ T cells, CD4+ T cells, and CD49b+ NK cells, as chemotherapy often suppresses the immune system. The supplement of FMT increased the proportion of CD4+ T cells, CD49b+ NK cells, CD8+ T cells, and LY6G+ neutrophils, indicating improved immune responses against CRC.
Moreover, capecitabine therapy alone reduced the overexpression of IL1a, IL6, IL12a, IL12b, IL17, IL22, FOXP3, STAT3, IFN-γ, TNF-α, TGF-β, GZMA, CXCR4, OPN, PD-1 and PD-L1. FMT supplementation resulted in a higher immune response to CRC, as it had a greater inhibitory effect on the overexpression of inflammatory cytokines and enhanced the production of IL10, IFN-γ, and CXCR4. These cytokines were positively correlated with Azospirillum_sp. _47_25, Romboutsia, Lactococcus, Rikenella_sp.
_Marseille_P3215 and Turicibacter and negatively correlated with Parabacteroids, unclassified_Oscillospiraceae, Marvinbryantia, unclassified_Clostridia_vadinBB60_group, unclassified_Erysipelatoclostridiaceae, A2, Roseburia, Rikenellaceae_RC9_gut_group, Acetatifactor and unclassified_Clostridia. The combination of capecitabine and FMT is more effective at preventing CRC than capecitabine alone, as it reverses gut microbial abnormalities and boosts immune responses to CRC.
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