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.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:PET Imaging of Thyroid-Stimulating Hormone Receptor (TSHR) in Oncocytic Thyroid Carcinoma for Monitoring TSHR CAR T-Cell Therapy Response.
PET Imaging of Thyroid-Stimulating Hormone Receptor (TSHR) in Oncocytic Thyroid Carcinoma for Monitoring TSHR CAR T-Cell Therapy Response.
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嗜酸性甲状腺癌(OTC)通常具有侵袭性,且对放射性碘治疗难治,而放射性碘治疗是目前转移性甲状腺癌的标准治疗方案。促甲状腺激素受体(TSHR)调节甲状腺功能与代谢,在甲状腺及包括OTC在内的大多数甲状腺肿瘤中高表达。
在此,我们报道了利用放射性标记的TSHR抗体进行正电子发射断层扫描(PET)成像,以检测OTC小鼠模型中的肿瘤TSHR表达并监测TSHR嵌合抗原受体(CAR)T细胞治疗反应。放射性示踪剂89 Zr-DFO-TSHR-Ab按此前报道的方法制备,用于TSHR表达的PET成像。组织微阵列分析证实了正常甲状腺和OTC肿瘤中均有TSHR表达。通过将XTC.UC1细胞皮下注射到NSG小鼠中,建立了人OTC异种移植模型。随后在该模型中进行TSHR表达的PET成像和生物分布研究,以评估TSHR CAR-T 细胞治疗前后TSHR表达的变化。
TSHR靶向CAR-T 细胞经静脉给药,并在注射后24、72和120 h进行89 Zr-DFO-TSHR-Ab纵向PET/CT成像,以监测肿瘤反应。8周后,对同一批小鼠在对侧胁部再次接种XTC.UC1细胞,通过连续PET/CT成像评估长期治疗效果和免疫记忆。PET成像和生物分布研究表明,该放射性示踪剂能够有效检测表达TSHR的OTC,具有合理的肿瘤摄取和成像对比度。CAR-T 细胞治疗后,TSHR PET显示肿瘤摄取显著降低,与TSHR靶向细胞免疫治疗反应及TSHR表达减弱相一致。这些发现表明,89 Zr-DFO-TSHR-Ab 能够无创识别 OTC 肿瘤,并实时监测对 TSHR 靶向 CAR-T 细胞治疗的反应。
Oncocytic thyroid carcinoma (OTC) is often aggressive and refractory to radioiodine therapy, which is the current standard of care for metastatic thyroid cancer. The thyroid-stimulating hormone receptor (TSHR) regulates thyroid function and metabolism and is highly expressed in the thyroid gland and most thyroid tumors including OTC.
Here, we report positron emission tomography (PET) imaging of radiolabeled TSHR antibody for detecting tumoral TSHR expression and monitoring TSHR chimeric antigen receptor (CAR) T-cell therapy response in an OTC mouse model. Radiotracer 89 Zr-DFO-TSHR-Ab was prepared as previously reported for PET imaging of TSHR expression. Tissue microarray analysis confirmed TSHR expression in both normal thyroid and OTC tumors. A human OTC xenograft model was established by subcutaneous injection of XTC. UC1 cells into NSG mice. PET imaging and biodistribution studies of TSHR expression were subsequently conducted in this model to assess TSHR-expression change before and after TSHR CAR T-cell therapy.
TSHR-targeted CAR T-cells were administered intravenously, and longitudinal PET/CT imaging with 89 Zr-DFO-TSHR-Ab was performed at 24, 72, and 120 h postinjection to monitor tumor response. Eight weeks later, the same mice were rechallenged with XTC. UC1 cells in the contralateral flank to assess long-term therapeutic efficacy and immune memory through serial PET/CT imaging.
PET imaging and biodistribution studies demonstrated that this radiotracer effectively detected TSHR-expressing OTC, with reasonable tumor uptake and imaging contrast. Following CAR T-cell therapy, TSHR PET showed significantly decreased tumor uptake, consistent with TSHR-targeted cell immunotherapy response with attenuated TSHR expression.
These findings suggest 89 Zr-DFO-TSHR-Ab enables noninvasive identification of OTC tumors and real-time monitoring of response to TSHR-targeted CAR T-cell therapy.
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