γδ T 细胞调节小细胞肺癌中的抗肿瘤免疫
γδ T cells modulate anti-tumor immunity in small cell lung cancer.
我们的发现表明,活化的γδ T细胞可能是SCLC治疗的有价值靶点。
英文原题:CD40L stimulates tumor-infiltrating B-cells and improves ex vivo TIL expansion.
我们的结果表明,CD40L 刺激的 B 细胞可用于提升 TIL 的质量和数量。
背景:TIL(肿瘤浸润淋巴细胞)过继转移已获美国食品药品监督管理局批准用于黑色素瘤,但仍需提高临床应答率并优化TIL产品制备。本研究分析肿瘤浸润B细胞(TIL-B)及三级淋巴结构(TLS)与TIL治疗应答的关系,并评估利用肿瘤内B细胞优化TIL制备的可能性。方法:对TIL治疗应答者(9例)和无应答者(11例)的肿瘤切片进行RNA测序并以计算方法估算免疫细胞含量;采用流式细胞术分析B细胞亚群、TIL表型及CD40L对黑色素瘤浸润B细胞的影响,并结合单细胞RNA测序。结果:应答者肿瘤中类别转换B细胞更多(P=.007),TLS评分更高(P=.03)。肿瘤内B细胞及转换记忆B细胞(CD27+IgD−)较多与TIL扩增增强相关。离体培养TIL时加入CD40L,使扩增成功率从33%升至67%(P=.03);在非小细胞肺癌(NSCLC)TIL培养中加入CD40L可将制备周期缩短1周。CD40L增强的TIL含有更多干样T细胞(CD39−CD69−),并富集新抗原反应性T细胞克隆。培养48小时后,CD40L使TIL-B出现126个差异表达基因,而其他免疫细胞变化极少或没有变化;B细胞上调的基因包括共刺激配体CD83、CD58及趋化因子CCL22、CCL17等。黑色素瘤浸润B细胞中CD40L诱导的CD58上调与TIL成功扩增相关。结论:利用CD40L刺激B细胞可提高TIL的质量和数量。临床试验NCT05681780正在NSCLC TIL中检验这一策略。
BACKGROUND: Adoptive transfer of tumor-infiltrating lymphocytes (TIL) is now a Food and Drug Administration (FDA)-approved treatment for melanoma. While this is a major milestone, there is room for improvement to increase clinical response rates and to further optimize the manufacturing of TIL products. In this study, we characterized the association of tumor-infiltrating B-cells (TIL-B) and tertiary lymphoid structures (TLSs) with clinical response to TIL therapy and tested whether the presence of B-cells in the tumor can be leveraged to optimize TIL manufacture. METHODS: Tumor sections from TIL responders (R, n=9) and non-responders (NR, n=11) were analyzed by RNA sequencing, and immune cell content was estimated in silico. To study the association between B-cells and TIL expansion, we quantified B-cell subsets and TIL phenotype by flow cytometry. CD40L-induced effects on melanoma-infiltrating B-cells were analyzed by flow cytometry and scRNA-sequencing. RESULTS: Tumors from TIL clinical responders had greater abundance of class-switched B-cells (p=0.007) and a greater TLS score (p=0.03) than those of NRs. In addition, greater abundance of B-cells (p 0.05) and switched memory B-cells (CD27 + IgD-, p 0.05) in the tumors were associated with greater TIL expansion. Stimulation of TIL-B through addition of CD40L during TIL ex vivo culture improved their expansion success rate from 33% to 67% (p=0.03). Similarly, the addition of CD40L to non-small cell lung cancer (NSCLC) TIL cultures shortened the manufacturing period by 1 week. Moreover, CD40L-enhanced TIL showed more stem-like T-cells (CD39 - CD69 - , p 0.05) and an enrichment of neoantigen-reactive T-cell clones in NSCLC TIL. Gene expression analysis showed that CD40L induced gene expression changes in TIL-B after 48 hours in culture (126 differentially expressed genes (DEGs)), with minimal to no changes observed in other immune cell types (including 12 DEG in macrophages, 10 DEG in dendritic cells, and none in monocytes). B-cell DEGs included upregulated co-stimulatory ligands (CD83, CD58), chemokines (CCL22, CCL17), among others. CD40L-induced upregulation of CD58 by melanoma infiltrating B-cells was associated with successful TIL expansion. CONCLUSIONS: Our results show that CD40L-stimulated B-cells can be leveraged to enhance the quality and quantity of TIL. Clinical trial NCT05681780 is currently testing this concept applied to NSCLC TIL.
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