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:The Immunogenomic Landscape of Peripheral High-Dose IL-2 Pharmacodynamics in Patients with Metastatic Renal Cell Carcinoma: A Benchmark for Next-Generation IL-2-Based Immunotherapies.
The Immunogenomic Landscape of Peripheral High-Dose IL-2 Pharmacodynamics in Patients with Metastatic Renal Cell Carcinoma: A Benchmark for Next-Generation IL-2-Based Immunotherapies.
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高剂量(HD)IL-2 是首个获批用于治疗晚期肾细胞癌和转移性黑色素瘤的免疫肿瘤药物,但由于毒性显著,其应用受到限制。目前正在开发多种新一代 IL-2 药物,以提高耐受性。
然而,对于界定 HD IL-2 本身靶向药理作用的基因组标志物,仍存在知识空白。本回顾性观察研究收集了 23 例于 2009 至 2015 年间接受 HD IL-2 治疗的转移性肾细胞癌患者的外周血单个核细胞(PBMC)样本。
我们此前已报告流式细胞术分析结果。本研究报告 RNA 测序免疫基因组学调查结果:在首次疗程第 1 和/或第 2 周期的治疗前(第 1 天)、治疗期间(第 3 天)及治疗后(第 5 天),对全体 PBMC 样本进行了分析。作为 HD IL-2 治疗免疫基因组学反应详细分析的一部分,我们考察了单个基因及免疫基因特征的变化。至第 3 天,大多数淋巴细胞类型短暂减少,而髓系转录本增加。尽管多数基因和/或特征到第 5 天通常恢复至治疗前表达水平,但代表 B 细胞、NK 细胞和 T 细胞增殖及效应功能的某些基因和特征仍持续升高,并伴有 B 细胞(而非 T 细胞)寡克隆扩增。调节性 T 细胞在治疗期间及治疗后逐步扩增,并与髓系效应细胞呈强负相关。这项对 IL-2 药理学进行的详细 RNA 测序免疫基因组学调查补充了既往流式细胞术分析结果。这些数据为评估目前正在开发的 IL-2 相关化合物给药患者的 PBMC 基因表达数据,提供了有价值的药理学背景。
High-dose (HD) IL-2 was the first immuno-oncology agent approved for treating advanced renal cell carcinoma and metastatic melanoma, but its use was limited because of substantial toxicities. Multiple next-generation IL-2 agents are being developed to improve tolerability.
However, a knowledge gap still exists for the genomic markers that define the target pharmacology for HD IL-2 itself. In this retrospective observational study, we collected PBMC samples from 23 patients with metastatic renal cell carcinoma who were treated with HD IL-2 between 2009 and 2015.
We previously reported the results of flow cytometry analyses. In this study, we report the results of our RNA-sequencing immunogenomic survey, which was performed on bulk PBMC samples from immediately before (day 1), during (day 3), and after treatment (day 5) in cycle 1 and/or cycle 2 of the first course of HD IL-2. As part of a detailed analysis of immunogenomic response to HD IL-2 treatment, we analyzed the changes in individual genes and immune gene signatures. By day 3, most lymphoid cell types had transiently decreased, whereas myeloid transcripts increased.
Although most genes and/or signatures generally returned to pretreatment expression levels by day 5, certain ones representative of B cell, NK cell, and T cell proliferation and effector functions continued to increase, along with B cell (but not T cell) oligoclonal expansion. Regulatory T cells progressively expanded during and after treatment.
They showed strong negative correlation with myeloid effector cells. This detailed RNA-sequencing immunogenomic survey of IL-2 pharmacology complements results of prior flow cytometry analyses. These data provide valuable pharmacological context for assessing PBMC gene expression data from patients dosed with IL-2-related compounds that are currently in development.
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