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:Murine fecal microbiota transfer models selectively colonize human microbes and reveal transcriptional programs associated with response to neoadjuvant checkpoint inhibitors.
Murine fecal microbiota transfer models selectively colonize human microbes and reveal transcriptional programs associated with response to neoadjuvant checkpoint inhibitors.
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已发现与免疫检查点抑制剂(ICI)临床应答相关的人肠道微生物种类,常通过粪菌移植(FMT)在小鼠中测试;受体小鼠的肿瘤应答可能重现人类对ICI的治疗应答。
然而,许多FMT研究对方法学、小鼠队列详情和统计方法描述有限。为考察影响ICI应答的肠道微生物种类是否可重复、结果是否稳健,本研究将非小细胞肺癌患者粪便样本移植至无菌小鼠,患者此前接受新辅助ICI治疗后分别出现病理学应答或无应答。与无应答患者来源FMT小鼠(NR-FMT)相比,应答患者来源FMT小鼠(R-FMT)联合抗PD-L1治疗后抗肿瘤应答更强,但效应大小因小鼠细胞系、性别和具体实验而异。研究利用16S rRNA扩增子测序详细分析FMT后小鼠微生物群,并建立模型分类和校正生物学变量。
结果显示,人源接种物和小鼠中均存在多种共同的优势分类群,但低丰度人源菌群经FMT后在小鼠中的定植差异较大。在单只接受抗PD-L1治疗的R-FMT小鼠中,多种梭菌属也与肿瘤结局相关。RNA测序发现,无论FMT来源如何,应答肿瘤中T细胞和NK细胞相关通路均存在差异表达,免疫组化也证实这些细胞富集。
本研究识别出多种可能参与ICI临床应答的人肠道微生物,并提示需关注生物学变量,以提高重复性并减少不同小鼠队列间结果差异。
Human gut microbial species found to associate with clinical responses to immune checkpoint inhibitors (ICIs) are often tested in mice using fecal microbiota transfer (FMT), wherein tumor responses in recipient mice may recapitulate human responses to ICI treatment.
However, many FMT studies have reported only limited methodological description, details of murine cohorts, and statistical methods. To investigate the reproducibility and robustness of gut microbial species that impact ICI responses, we performed human to germ-free mouse FMT using fecal samples from patients with non-small cell lung cancer who had a pathological response or nonresponse after neoadjuvant ICI treatment. R-FMT mice yielded greater anti-tumor responses in combination with anti-PD-L1 treatment compared to NR-FMT, although the magnitude varied depending on mouse cell line, sex, and individual experiment.
Detailed investigation of post-FMT mouse microbiota using 16S rRNA amplicon sequencing, with models to classify and correct for biological variables, revealed a shared presence of the most highly abundant taxa between the human inocula and mice, though low abundance human taxa colonized mice more variably after FMT.
Multiple Clostridium species also correlated with tumor outcome in individual anti-PD-L1-treated R-FMT mice. RNAseq analysis revealed differential expression of T and NK cell-related pathways in responding tumors, irrespective of FMT source, with enrichment of these cell types confirmed by immunohistochemistry.
This study identifies several human gut microbial species that may play a role in clinical responses to ICIs and suggests attention to biological variables is needed to improve reproducibility and limit variability across experimental murine cohorts.
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