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:Nanobody MET CAR-T cells show efficacy in solid tumors.
Nanobody MET CAR-T cells show efficacy in solid tumors.
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这些结果共同表明,VHH-CAR-T 在体外和体内均表现出稳健的 MET 特异性和强效的治疗效果。
**背景:**在许多实体瘤中,MET过表达与不良预后相关,因为MET在肿瘤存活、侵袭、转移和化疗耐药中发挥核心作用。抗体药物偶联物靶向MET已显示良好结果,但工程化细胞免疫疗法尚未得到充分探索。与传统单链可变片段(scFv)相比,天然存在的单域抗体仅含可变重链(VHH,又称纳米抗体),体积更小、特异性高且生化稳定性突出。
本研究评估靶向MET的VHH-CAR-T 细胞疗效。**方法:**研究者通过mRNA电穿孔制备一组VHH-CAR-T 细胞,并以功能实验评估其细胞结合亲和力、细胞因子生成谱、水凝胶微孔中的细胞动力学和体外细胞毒性;还在转移性三阴性乳腺癌(TNBC)小鼠模型中评估体内疗效。**结果:**所测试的VHH中,中等结合亲和力者体外杀瘤效果最佳。含CD28共刺激结构域的VHH-CAR-T 细胞细胞毒性增强且选择性良好,需要达到最低抗原密度阈值才会活化。在机制上,VHH-CAR-T 持续性信号较低、结合亲和力高、细胞因子生成强且杀瘤动力学快。以mRNA形式给药时,VHH-CAR-T 在TNBC转移模型中强效且持久地控制肿瘤生长。
**结论:**VHH-CAR-T 对MET具有稳健特异性,并在体内外显示强效治疗作用,因此有望成为靶向MET过表达实体瘤的免疫治疗策略。**本领域已有认识:**MET信号是多种实体瘤侵袭性的关键因素;抗体药物偶联物靶向MET已显示疗效和安全性。CAR-T 靶向MET已有研究,但效力有限。**本研究的新增发现:**本研究首次证明抗MET VHH-CAR-T 有效。与其他抗原结合结构域相比,纳米抗体CAR-T 具有较低的持续性信号、较有利的细胞因子谱及强效杀瘤作用。**对研究实践或政策的潜在影响:**VHH具有体积小、稳定及持续性信号风险低等优势,因此VHH-CAR-T 是开发实体瘤CAR-T 设计的有前景方向。
MET overexpression is associated with poor prognosis in many solid tumors due to its central role in tumor survival, invasion, metastasis, and chemoresistance. While targeting MET with antibody-drug conjugates has shown promising results, engineered cellular immunotherapeutic approaches have not been extensively explored. Compared to conventional single-chain variable fragments (scFv), naturally occurring single-domain antibodies consisting of variable heavy chains only (VHH or nanobodies) are smaller, retain high specificity, and exhibit remarkable biochemical stability. In this study, we tested the efficacy of MET-targeting VHH-CAR-T (chimeric antigen receptor T cells).
We generated a panel of VHH-CAR-Ts using mRNA electroporation. VHH-CAR-T cells were evaluated in functional assays including cell binding avidity, cytokine production profiles, hydrogel microwell-based cellular kinetics, and in vitro cytotoxicity. We also assessed the therapeutic efficacy of VHH-CAR-T in an in vivo mouse model of metastatic triple negative breast cancer (TNBC).
Among the tested VHH, we identified those with intermediate avidity as most effective for in vitro tumor killing. VHH-CAR-Ts with CD28 costimulatory domains demonstrated augmented cytotoxicity with favorable selectivity, requiring a minimum antigen density threshold for activation. Mechanistically, VHH-CAR-Ts demonstrated low tonic signaling, high avidity, potent cytokine production, and rapid tumor killing kinetics. When administered in an mRNA format, VHH-CAR-Ts exhibited potent and prolonged control of tumor growth in an in vivo metastatic model of TNBC.
Taken together, these results demonstrate that VHH-CAR-Ts exhibit robust MET specificity and potent therapeutic efficacy both in vitro and in vivo. Thus, VHH-CAR-T cell therapy represents a promising immunotherapeutic strategy for targeting MET-overexpressing solid tumors. WHAT IS ALREADY KNOWN ON THIS TOPIC: MET signaling is an important contributor to the aggressiveness of many solid tumors, and targeting MET by antibody-drug conjugates has shown efficacy and safety. Targeting MET by CAR-T cells has been under study, though with limited potency. WHAT THIS STUDY ADDS: This study is the first to demonstrate effectiveness of anti-MET VHH-CAR-T cells. Compared with other antigen binding domains, VHH-incorporated CAR-T cells show low tonic signaling, a favorable cytokine profile, and potent tumor killing. HOW THIS STUDY MIGHT AFFECT RESEARCH PRACTICE OR POLICY: With the multiple advantages of VHHs including small size, stability, and low potential for tonic signaling, VHH-CAR-T cells represent a promising approach for CAR-T design against solid tumors.
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