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:The diagnostic potential of nanobodies in acute myeloid leukemia.
急性髓系白血病(AML)是一种异质性血液系统恶性肿瘤,由未成熟髓系前体细胞的克隆性扩增引起,导致骨髓衰竭及长期生存率低下,尤其在老年患者及具有不良风险特征的患者中更为显著。
急性髓系白血病(AML)是一种异质性血液系统恶性肿瘤,由未成熟髓系前体细胞的克隆性扩增引起,导致骨髓衰竭和长期生存率低下,尤其在老年患者及具有不良风险特征的患者中更为显著。尽管基因组学进展及靶向治疗(如FLT3抑制剂和用于急性早幼粒细胞白血病的全反式维甲酸)已取得成果,但复发仍是死亡的主要原因,主要源于保护性微环境中化疗耐药的白血病干细胞(LSCs)。传统基于抗体的方法,如吉妥珠单抗奥佐米星,虽提供一定益处,但受限于组织穿透性差、Fc介导的脱靶效应、毒性及高成本,尤其当抗原与正常祖细胞共享时。单域抗体(纳米抗体),源自骆驼科重链抗体的紧凑型(约12-15 kDa)支架,通过卓越的稳定性、溶解性、组织浸润性及模块化工程实现多价/多特异性形式,解决了上述挑战。本综述探讨AML的分子发病机制,强调指导风险分层和干预的复发性异常(如NPM1、FLT3、CEBPA突变)。评估了形态学、流式细胞术、细胞遗传学及下一代测序(NGS)等诊断手段,用于亚型识别和可测量残留病(MRD)监测。纳米抗体在CD33和AXL等标志物的正电子发射断层扫描/单光子发射计算机断层扫描(PET/SPECT)成像中表现优异,在临床前模型中实现高肿瘤-背景比,同时结合荧光偶联物和染色体抗体用于活细胞可视化。靶向CD33/CD123的治疗性双特异性衔接器和CAR-T构建体对异质性原始细胞和白血病干细胞显示出强效活性。挑战包括抗原变异性、快速清除和骨髓可及性,通过聚乙二醇化等优化措施得以缓解。纳米抗体有望实现精准急性髓系白血病管理,通过临床转化增强检测、特异性和复发预防。
Acute myeloid leukemia (AML) is a heterogeneous hematologic cancer, which is caused by clonal expansion of immature myeloid precursors, leading to bone marrow failure and poor long-term survival, especially in older patients and those with adverse-risk features. Relapse, primarily from chemotherapy-resistant leukemic stem cells (LSCs) in protective niches, remains the leading cause of mortality despite genomic advancements and targeted therapies like FLT3 inhibitors and all-trans retinoic acid for acute promyelocytic leukemia. Conventional antibody-based approaches, such as gemtuzumab ozogamicin, offer benefits but are limited by poor tissue penetration, Fc-mediated off-target effects, toxicity, and high costs, particularly with antigens shared by normal progenitors. Single-domain antibodies (nanobodies), compact (~ 12 15 kDa) scaffolds from camelid heavy-chain antibodies, address these challenges through superior stability, solubility, tissue infiltration, and modular engineering for multivalent/multispecific formats. This review explores AML s molecular pathogenesis, emphasizing recurrent abnormalities (e.g., NPM1, FLT3, CEBPA mutations) that guide risk stratification and interventions. Diagnostic modalities morphology, flow cytometry, cytogenetics, and next-generation sequencing (NGS) are evaluated for subtype identification and measurable residual disease (MRD) monitoring. Nanobodies excel in positron emission tomography/single photon emission computed tomography (PET/SPECT) imaging of markers like CD33 and AXL, yielding high tumor-to-background ratios in preclinical models, alongside fluorescent conjugates and chromobodies for live-cell visualization. Therapeutic bispecific engagers and CAR-T constructs targeting CD33/CD123 show potent activity against heterogeneous blasts and LSCs. Challenges include antigen variability, rapid clearance, and bone marrow access, mitigated by optimizations like PEGylation. Nanobodies promise precision AML management, enhancing detection, specificity, and relapse prevention through clinical translation.
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