不适合移植的大 B 细胞淋巴瘤二线使用 axicabtagene ciloleucel:ALYCANTE 最终分析
Second-line axicabtagene ciloleucel in large B-cell lymphoma ineligible for transplantation: ALYCANTE final analysis.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Unravelling NK cell subset dynamics and specific gene signatures post-ibrutinib therapy in chronic lymphocytic leukaemia via single-cell transcriptomics.
Unravelling NK cell subset dynamics and specific gene signatures post-ibrutinib therapy in chronic lymphocytic leukaemia via single-cell transcriptomics.
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CLL_NK 亚群在 CLL 的发生与进展中起关键作用。
作为先天免疫系统的一部分,NK细胞有助于优化癌症免疫治疗策略,正成为癌症研究重点。但目前对伊布替尼治疗后慢性淋巴细胞白血病(CLL)患者NK细胞亚群及关键基因变化的研究有限。
收集单克隆B细胞淋巴细胞增多症(MBL)、初诊CLL、伊布替尼治疗后达到完全缓解(CR)或部分缓解(PR)的患者,以及Richter转化综合征(RS)患者外周血。开展单细胞转录组测序,并结合伪时间分析和功能富集,以表征NK细胞亚群;通过孟德尔随机化和共定位分析鉴定关键基因;采用多种算法分析免疫浸润,并开展药物敏感性分析以寻找潜在治疗药物。
鉴定出3种不同NK细胞亚群:CD56bright_NK细胞、CD56dim_NK细胞及高度细胞毒性的CLL_NK亚群。通过孟德尔随机化和共定位分析阐明了CLL_NK亚群的核心基因。基于这些核心基因构建了亚群特异性新指标(CNI),并显示其能够预测免疫治疗应答。癌症预测算法和分子对接筛选进一步确定semaxanib和ulixertinib可能是CLL的候选治疗药物。
CLL_NK亚群在CLL发生和进展中发挥关键作用。由其关键基因构建的CNI有望预测免疫治疗应答,凸显了CLL_NK亚群动态变化及其遗传基础对CLL管理的重要性。
As part of the innate immune system, NK cells contribute to optimizing cancer immunotherapy strategies and are becoming a focal point in cancer research. However, limited research has been conducted to further investigate changes in NK cell subsets and their critical genes following ibrutinib treatment in CLL patients.
Peripheral blood samples from patients clinically and pathologically diagnosed with monoclonal B-cell lymphocytosis (MBL), newly diagnosed with CLL (ND-CLL), postibrutinib-treated patients who achieved a complete response (CR) or partial response (PR), and those with Richter's syndrome (RS) were collected. Single-cell transcriptome sequencing was performed, followed by pseudotemporal analysis and functional enrichment to characterize the NK cell subsets. Mendelian randomization analysis and colocalization analysis were employed to identify key genes. Multiple algorithms were used for immune infiltration analysis, and drug sensitivity analysis was conducted to pinpoint potential therapeutic agents.
Three distinct NK cell subsets were identified: CD56bright_NK cells, CD56dim_NK cells, and a highly cytotoxic CLL_NK subset. The core genes of the CLL_NK subset were elucidated through Mendelian randomization and colocalization analyses. A cell subset-specific novel index (CNI) was constructed based on these core genes and was shown to be capable of predicting responses to immunotherapy. Oncopredictive algorithms and molecular docking screenings further identified semaxanib and ulixertinib as potential therapeutic candidates for CLL.
The CLL_NK subset plays a crucial role in the development and progression of CLL. The CNI, derived from its key genes, holds promise as a predictor of immune therapeutic responses, highlighting the significance of CLL_NK subset dynamics and their genetic underpinnings in CLL management.
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