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:Factors impacting the efficacy of the in-situ vaccine with CpG and OX40 agonist.
Factors impacting the efficacy of the in-situ vaccine with CpG and OX40 agonist.
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肿瘤体积增大对 CpG + OX40 原位疫苗的抗肿瘤能力产生负面影响。
CpG寡脱氧核苷酸联合OX40激动抗体(CpG+OX40)原位疫苗在特定条件下可激活抗肿瘤T细胞反应,但肿瘤体积、模型差异及加入检查点阻断对疗效的影响尚不明确。
在携带B78黑色素瘤或A20淋巴瘤侧腹肿瘤的小鼠中联合使用CpG、OX40和抗CTLA-4,监测肿瘤生长及生存,并进行体内T细胞清除、肿瘤表型和TIL分析,以及体外肿瘤细胞和巨噬细胞实验。
在B78单瘤及A20单瘤或双瘤模型中,肿瘤增大均使原位疫苗抗肿瘤效果减弱。体外CpG直接影响A20增殖和表型;其对B78增殖的影响则通过巨噬细胞活化间接介导。A20体内进展过程中肿瘤表型改变,T细胞在局部CpG+OX40反应中的作用增强。对CpG+OX40反应较差的大肿瘤小鼠,加抗CTLA-4可增强A20模型疗效,但在B78模型中无此效果。
肿瘤体积增大削弱CpG+OX40原位疫苗作用;检查点阻断能否增强疗效取决于肿瘤模型。结果强调评估免疫疗法及转化临床试验时,应考虑多种临床前模型条件。
The in-situ vaccine using CpG oligodeoxynucleotide combined with OX40 agonist antibody (CpG + OX40) has been shown to be an effective therapy activating an anti-tumor T cell response in certain settings. The roles of tumor volume, tumor model, and the addition of checkpoint blockade in the efficacy of CpG + OX40 in-situ vaccination remains unknown.
Mice bearing flank tumors (B78 melanoma or A20 lymphoma) were treated with combinations of CpG, OX40, and anti-CTLA-4. Tumor growth and survival were monitored. In vivo T cell depletion, tumor cell phenotype, and tumor infiltrating lymphocyte (TIL) studies were performed. Tumor cell sensitivity to CpG and macrophages were evaluated in vitro.
As tumor volumes increased in the B78 (one-tumor) and A20 (one-tumor or two-tumor) models, the anti-tumor efficacy of the in-situ vaccine decreased. In vitro, CpG had a direct effect on A20 proliferation and phenotype and an indirect effect on B78 proliferation via macrophage activation. As A20 tumors progressed in vivo, tumor cell phenotype changed, and T cells became more involved in the local CpG + OX40 mediated anti-tumor response. In mice with larger tumors that were poorly responsive to CpG + OX40, the addition of anti-CTLA-4 enhanced the anti-tumor efficacy in the A20 but not B78 models.
Increased tumor volume negatively impacts the anti-tumor capability of CpG + OX40 in-situ vaccine. The addition of checkpoint blockade augmented the efficacy of CpG + OX40 in the A20 but not B78 model. These results highlight the importance of considering multiple preclinical model conditions when assessing the efficacy of cancer immunotherapy regimens and their translation to clinical testing.
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