决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:CD276-CAR T cells and Dual-CAR T cells targeting CD276/FGFR4 promote rhabdomyosarcoma clearance in orthotopic mouse models.
靶向 CD276 和 CD276/FGFR4 的 CAR T 细胞在体外显示出有效的 RMS 细胞杀伤作用,并在体内清除了 CD276 高表达 RMS 肿瘤。
背景:横纹肌肉瘤(RMS)是儿童最常见的软组织肉瘤,尤其是转移性、高级别和复发性RMS预后仍差,亟需新的治疗方法,特别是全身治疗。CAR-T 细胞治疗血液系统恶性肿瘤效果显著,但其对实体瘤的疗效仍需提高。CD276(B7-H3)在RMS中上调,在正常组织中仅低水平表达;FGFR4则是RMS较特异的靶点。本研究优化了分别或联合靶向这两个抗原的CAR-T,并在体内外检验其抗肿瘤活性。方法:使用4种不同单域抗体筛选特异性最高的FGFR4-CAR构建体。在体外检测表达CD8或CD28铰链/跨膜结构域并结合4-1BB和/或CD28共刺激结构域的CD276-CAR及FGFR4-CAR T细胞杀伤RMS细胞和产生细胞因子的能力。选出效果最佳的两种CAR-T后构建双CAR-T,并在3种原位RMS小鼠模型中评估体内肿瘤杀伤。结果:CD276.V-CAR T(276.MG.CD28HD/TM.CD28CSD.3)对RMS细胞杀伤最强,体外IFN-γ和颗粒酶B释放也最高。FGFR4.V-CAR T(F8-FR4.CD28HD/TM.CD28CSD.3)的杀伤特异性最高。CD276-CAR T在体内成功清除RD和Rh4来源的RMS肿瘤,分别有3/5和5/5只小鼠达到完全缓解;但对CD276低表达的JR肿瘤,仅1/5只小鼠完全缓解。FGFR4 CAR T则仅延缓Rh4肿瘤生长。双CAR-T使5/5只小鼠的Rh4肿瘤得到清除。结论:靶向CD276及CD276/FGFR4的CAR-T在体外可有效杀伤RMS细胞,并能在体内清除CD276高表达的RMS肿瘤。CD276低表达肿瘤可逃逸治疗,提示抗原密度与疗效有关。FGFR4-CAR T在体外可特异杀伤肿瘤,但在体内仅能延缓RMS生长。本研究表明,在CD276-CAR基础上联合表达其他CAR不会削弱其获益。在RMS中引入CD276-CAR T免疫治疗具有可行性和前景,但仍须优化CAR结构设计和靶点组合,才能清除靶抗原低表达的肿瘤。
BACKGROUND: Rhabdomyosarcoma (RMS) is the most common soft tissue sarcoma in childhood, whose prognosis is still poor especially for metastatic, high-grade, and relapsed RMS. New treatments are urgently needed, especially systemic therapies. Chimeric Antigen Receptor T cells (CAR Ts) are very effective against hematological malignancies, but their efficacy against solid tumors needs to be improved. CD276 (B7-H3) is a target upregulated in RMS and detected at low levels in normal tissues. FGFR4 is a very specific target for RMS. Here, we optimized CAR Ts for these two targets, alone or in combination, and tested their anti-tumor activity in vitro and in vivo. METHODS: Four different single-domain antibodies were used to select the most specific FGFR4-CAR construct. RMS cell killing and cytokine production by CD276- and FGFR4-CAR Ts expressing CD8 or CD28 HD/TM domains in combination with 4-1BB and/or CD28 co-stimulatory domains were tested in vitro. The most effective CD276- and FGFR4-CAR Ts were used to generate Dual-CAR Ts. Tumor killing was evaluated in vivo in three orthotopic RMS mouse models. RESULTS: CD276.V-CAR Ts (276.MG.CD28HD/TM.CD28CSD.3 ) showed the strongest killing of RMS cells, and the highest release of IFN- and Granzyme B in vitro. FGFR4.V-CAR Ts (F8-FR4.CD28HD/TM.CD28CSD.3 ) showed the most specific killing. CD276-CAR Ts successfully eradicated RD- and Rh4-derived RMS tumors in vivo, achieving complete remission in 3/5 and 5/5 mice, respectively. In CD276 low JR-tumors, however, they achieved complete remission in only 1/5 mice. FGFR4 CAR Ts instead delayed Rh4 tumor growth. Dual-CAR Ts promoted Rh4-tumors clearance in 5/5 mice. CONCLUSIONS: CD276- and CD276/FGFR4-directed CAR Ts showed effective RMS cell killing in vitro and eradication of CD276 high RMS tumors in vivo. CD276 low tumors escaped the therapy highlighting a correlation between antigen density and effectiveness. FGFR4-CAR Ts showed specific killing in vitro but could only delay RMS growth in vivo. Our results demonstrate that combined expression of CD276-CAR with other CAR does not reduce its benefit. Introducing immunotherapy with CD276-CAR Ts in RMS seems to be feasible and promising, although CAR constructs design and target combinations have to be further improved to eradicate tumors with low target expression.
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