借力推动前列腺癌 CAR-T 细胞治疗进展
Piggybacking toward Progress for CAR T-Cell Therapy in Prostate Cancer.
P-PSMA-101 是一款首创的、富集干细胞记忆 T 细胞的、靶向前列腺特异性膜抗原(PSMA)的嵌合抗原受体(CAR)T 疗法。
英文原题:Activation of tumor-specific CD8+ T cells prior to radiopharmaceutical therapy improves antitumor response.
我们的研究表明,肿瘤特异性CD8+T细胞需要在RPT之前存在并被激活,才能增强抗肿瘤效果。本研究强调了在将其他T细胞激活疗法与RPT联合使用时,考虑RPT对肿瘤浸润CD8+T细胞影响的重要性,因为它们可能同样表现出序列依赖性的抗肿瘤效果。
放射性药物治疗(RPT)通过全身给药递送辐射,能够治疗转移性癌症。除了杀伤肿瘤细胞外,RPT还可以调节肿瘤免疫微环境。随着RPT和免疫疗法已获批或正在开发用于前列腺癌,许多临床前和临床研究正在评估它们的联合使用。然而,由于TIL(肿瘤浸润淋巴细胞)的放射敏感性,需要进一步研究以确定RPT对这些细胞的影响,从而更好地指导与RPT联合使用时激活T细胞的免疫疗法的给药顺序。
E.G7-OVA荷瘤小鼠在给予90 Y-NM600 RPT之前或之后接受初始或活化的OT-I CD8+T细胞。监测肿瘤生长变化,并评估TIL(肿瘤浸润淋巴细胞)的表型和功能标志物。使用小鼠前列腺肿瘤模型TRAMP-C1,通过90 Y-NM600联合肿瘤抗原特异性疫苗接种来评估该方法。
如果在90 Y-NM600给药前存在并激活OT-I CD8+T细胞,其抗肿瘤疗效优于在RPT后递送细胞。同样,在RPT前通过卵清蛋白(OVA)特异性疫苗接种体内激活过继转移的OT-I CD8+T细胞,可减缓肿瘤生长,并增加具有效应记忆表型和效应分子产生的肿瘤浸润OVA 257-264特异性CD8+T细胞的频率。阻断I型干扰素,而非上游抑制干扰素基因刺激因子,可消除联合治疗导致的肿瘤生长延迟。在90 Y-NM600给药前进行肿瘤抗原特异性疫苗接种,在TRAMP-C1肿瘤模型中也同样改善了抗肿瘤结局。
BACKGROUND: Radiopharmaceutical therapy (RPT) delivers radiation systemically, enabling the treatment of metastatic cancers. Beyond killing tumor cells, RPT can modulate the tumor immune microenvironment. With RPTs and immunotherapies already approved or in development for prostate cancer, many preclinical and clinical studies are evaluating their use in combination. However, due to the radiosensitivity of tumor-infiltrating lymphocytes, further studies are needed to determine the effects of RPT on these cells to better inform the sequence of immunotherapies that activate T cells when given with RPT. METHODS: E.G7-OVA tumor-bearing mice received naïve or activated OT-I CD8+T cells prior to or following the administration of RPT using 90 Y-NM600. Changes in tumor growth were monitored, and tumor-infiltrating lymphocytes were evaluated for phenotypic and functional markers. The murine prostate tumor model TRAMP-C1 was used to evaluate this approach using tumor antigen-specific vaccination with 90 Y-NM600. RESULTS: Antitumor efficacy was improved if OT-I CD8+T cells were present and activated prior to 90 Y-NM600 administration than if the cells were delivered after RPT. Similarly, in vivo activation of adoptively transferred OT-I CD8+T cells, using ovalbumin (OVA)-specific vaccination, prior to RPT slowed tumor growth and increased the frequency of tumor-infiltrating OVA 257-264 -specific CD8+T cells with effector memory phenotype and effector molecule production. Blockade of type I interferon, but not the upstream inhibition of stimulator of interferon genes, abrogated tumor growth delay resulting from the combination treatment. Tumor antigen-specific vaccination prior to 90 Y-NM600 administration similarly improved antitumor outcomes in the TRAMP-C1 tumor model. CONCLUSIONS: Our study suggests that tumor-specific CD8+T cells need to be present and activated prior to RPT to enhance antitumor outcomes. This study highlights the importance of considering the effects of RPT on tumor-infiltrating CD8+T cells when combining other T-cell activating therapies with RPT, as they may similarly display sequence-dependent antitumor outcomes.
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