基于 DNA 超分子水凝胶的保护性 NK 细胞储库用于增强三阴性乳腺癌治疗
Protective NK Cell Reservoir Based on DNA Supramolecular Hydrogel for Enhanced Triple-Negative Breast Cancer Therapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Antigen presentation and interferon signatures in B cells driven by localized ablative cancer immunotherapy correlate with extended survival.
Antigen presentation and interferon signatures in B cells driven by localized ablative cancer immunotherapy correlate with extended survival.
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我们使用一种新型局部消融免疫治疗(LAIT),将光热治疗(PTT)与肿瘤内递送免疫刺激剂N-二半乳糖壳聚糖(GC)相结合,治疗携带小鼠乳腺肿瘤病毒-多瘤中间肿瘤抗原(MMTV-PyMT)的小鼠。我们使用单细胞RNA测序来比较PTT、GC和PTT+GC在肿瘤微环境(TME)内B细胞中诱导的转录变化。
与单独使用PTT和GC治疗相比,LAIT显著提高了荷瘤小鼠的生存率。我们发现PTT、GC和PTT+GC增加了肿瘤浸润B细胞的比例,并诱导了与B细胞激活相关的基因表达特征。GC和PTT+GC均提高了与抗原呈递相关的基因表达,而GC提高了调节B细胞激活和GTP酶功能的转录本,PTT+GC诱导了干扰素反应基因。轨迹分析根据拟时间进展对B细胞进行排序,揭示GC和PTT+GC均诱导B细胞从静息状态向效应表型分化。分析证实,在PTT+GC治疗后,分化后的肿瘤浸润B细胞中干扰素特征上调,而GC治疗后则没有。我们还观察到,如果乳腺癌患者B细胞中由小鼠肿瘤中PTT+GC治疗所诱导的基因表达升高,其生存时间显著更长。
我们的研究结果表明,局部消融联合局部应用免疫刺激剂可启动B细胞中干扰素特征和抗原呈递的激活,这与乳腺癌良好的临床结局相关。这些发现拓宽了我们对LAIT在重塑TME中调控作用的理解,并揭示了B细胞激活在临床应用中的潜力。
Rationale: B cells have emerged as key regulators in protective cancer immunity.
However, the activation pathways induced in B cells during effective immunotherapy are not well understood. Methods: We used a novel localized ablative immunotherapy (LAIT), combining photothermal therapy (PTT) with intra-tumor delivery of the immunostimulant N-dihydrogalactochitosan (GC), to treat mice bearing mouse mammary tumor virus-polyoma middle tumor-antigen (MMTV-PyMT).
We used single-cell RNA sequencing to compare the transcriptional changes induced by PTT, GC and PTT+GC in B cells within the tumor microenvironment (TME). Results: LAIT significantly increased survival in the tumor-bearing mice, compared to the treatment by PTT and GC alone.
We found that PTT, GC and PTT+GC increased the proportion of tumor-infiltrating B cells and induced gene expression signatures associated with B cell activation. Both GC and PTT+GC elevated gene expression associated with antigen presentation, whereas GC elevated transcripts that regulate B cell activation and GTPase function and PTT+GC induced interferon response genes.
Trajectory analysis, where B cells were organized according to pseudotime progression, revealed that both GC and PTT+GC induced the differentiation of B cells from a resting state towards an effector phenotype. The analyses confirmed upregulated interferon signatures in the differentiated tumor-infiltrating B cells following treatment by PTT+GC but not by GC.
We also observed that breast cancer patients had significantly longer survival time if they had elevated expression of genes in B cells that were induced by PTT+GC therapy in the mouse tumors. Conclusion: Our findings show that the combination of local ablation and local application of immunostimulant initiates the activation of interferon signatures and antigen-presentation in B cells which is associated with positive clinical outcomes for breast cancer.
These findings broaden our understanding of LAIT's regulatory roles in remodeling TME and shed light on the potentials of B cell activation in clinical applications.
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