研究概要
急性髓系白血病(AML)是一种侵袭性、克隆异质性的髓系恶性肿瘤,5 年总生存期约为 27%。
中文摘要
急性髓系白血病(AML)是一种侵袭性、克隆异质性明显的髓系恶性肿瘤,5年总生存率约为27%。它是成人最常见的急性白血病,在美国发病率为每10万人3~5例。尽管对白血病发生分子机制的认识大幅进步,过去几十年治疗基础方案变化不大:适合患者接受蒽环类药物为基础的诱导治疗,随后依据风险分层接受阿糖胞苷巩固治疗或异基因干细胞移植(allo-SCT)。allo-SCT是最根本的免疫疗法形式之一:移植物中的供者细胞毒性T细胞和NK细胞识别并清除残留AML,产生移植物抗白血病(GvL)效应。在此基础上,研究者开发了多种利用自身和异体免疫对抗AML的替代或协同策略。免疫检查点抑制剂(如CTLA-4、PD-1和PD-L1抑制剂)可阻断T细胞或癌细胞表达、能够抑制免疫系统攻击癌细胞的蛋白。在AML复发/难治(R/R)及移植后情境中,这类药物疗效有限。与实体瘤相比,AML肿瘤突变负荷较低,因此不易产生新抗原,也较难对在实体瘤中取得前所未有疗效的抗体介导检查点阻断产生应答。因此,研究者开发了不依赖T细胞受体(TCR)特异性的替代策略,包括通过结合CD3招募T细胞的双特异性抗体;在AML早期试验中,此类抗体总缓解率为14%~30%。嵌合抗原受体(CAR)T细胞疗法通过基因工程使T细胞表达重组受体,从而重新定向T淋巴细胞的特异性和功能。但AML缺乏仅在白血病细胞(包括白血病干细胞,LSC)表面表达的靶点,加之克隆异质性,是开发AML CAR疗法的最大挑战。抗体药物偶联物(ADC)是目前唯一获FDA批准用于AML的免疫疗法:吉妥珠单抗奥唑米星是一种靶向CD33的ADC,用于CEBPA突变型AML。鉴定更多细胞表面靶点,对开发可能用于诱导及维持治疗的其他ADC至关重要,因为此类药物易于制备和管理。本文回顾这些免疫治疗干预措施,并重点介绍为实现AML免疫治疗巨大潜力而开展的活跃研究方向。
展开英文摘要原文
Acute myeloid leukemia (AML) is an aggressive, clonally heterogeneous, myeloid malignancy, with a 5-year overall survival of approximately 27%. It constitutes the most common acute leukemia in adults, with an incidence of 3-5 cases per 100,000 in the United States. Despite great advances in understanding the molecular mechanisms underpinning leukemogenesis, the past several decades had seen little change to the backbone of therapy, comprised of an anthracycline-based induction regimen for those who are fit enough to receive it, followed by risk-stratified post-remission therapy with consolidation cytarabine or allogeneic stem cell transplantation (allo-SCT). Allo-SCT is the most fundamental form of immunotherapy in which donor cytotoxic T and NK cells recognize and eradicate residual AML in the graft-versus-leukemia (GvL) effect. Building on that, several alternative or synergistic approaches to exploit both self and foreign immunity against AML have been developed. Checkpoint inhibitors, for example, CTLA-4 inhibitors, PD-1 inhibitors, and PD-L1 inhibitors block proteins found on T cells or cancer cells that stop the immune system from attacking the cancer cells. They have been used with limited success in both the AML relapsed/refractory (R/R) and post SCT settings. AML tumor mutational burden is low compared to solid tumors and thus, it is less likely to generate neoantigens and respond to antibody-mediated checkpoint blockade that has shown unprecedented results in solid tumors. Therefore, alternative therapeutic strategies that work independently of the T cell receptor (TCR) specificity have been developed. They include bispecific antibodies, which recruit T cells through CD3 engagement, and in AML have shown an overall response rate ranging between 14 and 30% in early phase trials. Chimeric Antigen Receptor (CAR) T cell therapy is a type of treatment in which T cells are genetically engineered to produce a recombinant receptor that redirects the specificity and function of T lymphocytes. However, lack of cell surface targets exclusively expressed on AML cells including Leukemic Stem Cells (LSCs) combined with clonal heterogeneity represents the biggest challenge in developing CAR therapy for AML. Antibody-Drug Conjugates (ADC) constitute the only FDA-approved immunotherapy to treat AML with Gemtuzumab Ozogamicin, a CD33-specific ADC used in CEBP -mutated AML. The identification of additional cell surface targets is critical for the development of other ADC's potentially useful in the induction and maintenance regimens, given the ease at which these reagents can be generated and managed. Here, we will review those immune-based therapeutic interventions and highlight active areas of research investigations toward fulfillment of the great promise of immunotherapy to AML.
论文信息
- 作者
- Perna F、Espinoza-Gutarra MR、Bombaci G、Farag SS、Schwartz JE
- 单位
- Department of Medicine, Division of Hematology/Oncology, Indiana University School of Medicine, Indianapolis, USA. fabperna@iu.edu.Italy
- 期刊
- Cancer treatment and research2022