抗 CD22/CD19 CAR-T 细胞疗法 CART2219.1 在成人和儿童复发/难治性 B-ALL 中的 I/II 期试验
A Phase I/II Trial of Anti-CD22/CD19 CAR-T Cell Therapy, CART2219.1, in Adult and Pediatric Relapsed/Refractory B-ALL.
在一项多中心I/II期试验中,所有患者(n=11;7名儿童,4名成人)在第28天均达到完全缓解(91%为微小残留病阴性)。
英文原题:Epigenetic targeting to enhance acute myeloid leukemia-directed immunotherapy.
AML 是一种造血祖细胞的恶性疾病,治疗效果不理想,尤其是在不适合强化化疗的患者中。
AML 是造血祖细胞的恶性疾病,治疗结果不理想,尤其对于不适合强化化疗的患者。免疫治疗,包括检查点抑制、T 细胞衔接抗体构建体和细胞疗法,已显著改善实体瘤和淋巴系统肿瘤患者的结局。在 AML 中,这些方法的成功远为逊色。所讨论的原因包括 AML 原始细胞的突变负荷相对较低,以及难以定义不在造血祖细胞上表达的 AML 特异性抗原。另一方面,表观遗传失调是白血病发生的重要驱动因素,非选择性低甲基化药物(HMAs)是目前非强化治疗的骨干。评估 HMAs 是否能提高免疫检查点抑制剂疗效的首批临床试验显示疗效有限,但抗 CD47 抗体与阿扎胞苷联合使用时对 AML 的效果显著更好。将双特异性抗体或细胞治疗与 HMAs 联合正在进行临床研究,疗效数据预计不久将公布。更具选择性的第二代靶向特定染色质调节因子的抑制剂已在临床前显示出对 AML 有前景的活性,目前正在临床试验中进行评估。这些通常引起白血病细胞分化的药物,可能通过共同调节免疫检查点、提供促炎环境和诱导(新)抗原表达,使 AML 对基于免疫的治疗敏感。因此,将选择性靶向表观遗传药物与(细胞)免疫治疗联合是一种有前景的方法,可避免意外效应并增强疗效。未来的研究将提供详细信息,说明这些化合物如何影响特定免疫功能,从而可能实现临床评估的转化。
AML is a malignant disease of hematopoietic progenitor cells with unsatisfactory treatment outcome, especially in patients that are ineligible for intensive chemotherapy. Immunotherapy, comprising checkpoint inhibition, T-cell engaging antibody constructs, and cellular therapies, has dramatically improved the outcome of patients with solid tumors and lymphatic neoplasms. In AML, these approaches have been far less successful. Discussed reasons are the relatively low mutational burden of AML blasts and the difficulty in defining AML-specific antigens not expressed on hematopoietic progenitor cells. On the other hand, epigenetic dysregulation is an essential driver of leukemogenesis, and non-selective hypomethylating agents (HMAs) are the current backbone of non-intensive treatment. The first clinical trials that evaluated whether HMAs may improve immune checkpoint inhibitors' efficacy showed modest efficacy except for the anti-CD47 antibody that was substantially more efficient against AML when combined with azacitidine. Combining bispecific antibodies or cellular treatments with HMAs is subject to ongoing clinical investigation, and efficacy data are awaited shortly. More selective second-generation inhibitors targeting specific chromatin regulators have demonstrated promising preclinical activity against AML and are currently evaluated in clinical trials. These drugs that commonly cause leukemia cell differentiation potentially sensitize AML to immune-based treatments by co-regulating immune checkpoints, providing a pro-inflammatory environment, and inducing (neo)-antigen expression. Combining selective targeted epigenetic drugs with (cellular) immunotherapy is, therefore, a promising approach to avoid unintended effects and augment efficacy. Future studies will provide detailed information on how these compounds influence specific immune functions that may enable translation into clinical assessment.
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