CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Monitoring Therapeutic Response to Anti-FAP CAR T Cells Using [18F]AlF-FAPI-74.
Monitoring Therapeutic Response to Anti-FAP CAR T Cells Using [18F]AlF-FAPI-74.
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尽管嵌合抗原受体(CAR)T细胞疗法在血液系统恶性肿瘤中取得了成功,但CAR-T 细胞对实体瘤的成功靶向一直受到缺乏持久缓解和毒性报告的限制。我们对实体瘤中有限治疗疗效的理解可以通过定量工具得到改善,这些工具能够表征肿瘤中CAR-T 靶向的抗原并准确监测反应。
我们使用放射性标记的 FAP 抑制剂 (FAPI) [18F]AlF-FAPI-74 探针,以补充当前开发和优化 FAP CAR-T 细胞的努力。该放射性示踪剂对 FAP 的选择性在体外进行了表征,并利用肺癌啮齿动物模型评估了其监测 FAP 表达变化的能力。
[18F]AlF-FAPI-74在体外对FAP+细胞表现出选择性滞留,在未标记FAPI存在下可有效阻断其摄取。在体内,[18F]AlF-FAPI-74能够以高靶本比检测肿瘤细胞以及肿瘤微环境中FAP+基质细胞上的FAP表达。我们进一步证明了该示踪剂可用于监测FAP CAR-T 细胞治疗后FAP表达的变化,且PET显像结果与离体分析显示出强相关性。
这种用于探究肿瘤微环境的非侵入性成像方法,代表了诊断性 PET 探针与实体瘤 CAR-T 细胞疗法的创新性配对,并有望作为 FAP 以及其他基质靶向疗法的预测性和药效学反应生物标志物。一种靶向肿瘤基质活化成纤维细胞上表达的 FAP 的 PET 成像方法,有潜力预测和监测对 FAP 靶向 CAR-T 细胞疗法的治疗反应。参见 Weber 等人的相关评论,第 5241 页。
Despite the success of chimeric antigen receptor (CAR) T-cell therapy against hematologic malignancies, successful targeting of solid tumors with CAR T cells has been limited by a lack of durable responses and reports of toxicities. Our understanding of the limited therapeutic efficacy in solid tumors could be improved with quantitative tools that allow characterization of CAR T-targeted antigens in tumors and accurate monitoring of response. EXPERIMENTAL DESIGN: We used a radiolabeled FAP inhibitor (FAPI) [18F]AlF-FAPI-74 probe to complement ongoing efforts to develop and optimize FAP CAR T cells. The selectivity of the radiotracer for FAP was characterized in vitro, and its ability to monitor changes in FAP expression was evaluated using rodent models of lung cancer.
[18F]AlF-FAPI-74 showed selective retention in FAP+ cells in vitro, with effective blocking of the uptake in presence of unlabeled FAPI. In vivo, [18F]AlF-FAPI-74 was able to detect FAP expression on tumor cells as well as FAP+ stromal cells in the tumor microenvironment with a high target-to-background ratio. We further demonstrated the utility of the tracer to monitor changes in FAP expression following FAP CAR T-cell therapy, and the PET imaging findings showed a robust correlation with ex vivo analyses.
This noninvasive imaging approach to interrogate the tumor microenvironment represents an innovative pairing of a diagnostic PET probe with solid tumor CAR T-cell therapy and has the potential to serve as a predictive and pharmacodynamic response biomarker for FAP as well as other stroma-targeted therapies. A PET imaging approach targeting FAP expressed on activated fibroblasts of the tumor stroma has the potential to predict and monitor therapeutic response to FAP-targeted CAR T-cell therapy. See related commentary by Weber et al., p. 5241.
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