CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Antigen Pressure, Clonal Evolution, and Lineage Plasticity in B-Cell Acute Lymphoblastic Leukemia: Resistance Biology in the Immunotherapy Era.
Antigen Pressure, Clonal Evolution, and Lineage Plasticity in B-Cell Acute Lymphoblastic Leukemia: Resistance Biology in the Immunotherapy Era.
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靶向免疫治疗已改变了复发/难治性B细胞急性淋巴细胞白血病(B-ALL)的治疗,但其疗效取决于谱系相关表面抗原的持续表达。本综述探讨抗原导向压力如何重塑耐药生物学,区分经典抗原逃逸与谱系可塑性,并阐明这些不同逃逸途径的基因组背景、诊断挑战及治疗意义。
在抗原导向的压力下,白血病可能通过抗原下调、选择性剪接、获得性基因改变或表位破坏等机制逃逸——这些机制通常保留B系身份,且往往仍可通过替代性谱系导向治疗加以应对。一种生物学上截然不同的途径是谱系可塑性,即细胞使谱系定向不稳定或发生明显的谱系转换;临床结局较差,在最大规模报道的系列中中位OS约为4.8个月。谱系转换在允许性基因组背景中富集,最显著的是KMT2A重排白血病,在一个大型国际队列中,该病占B-ALL向急性髓系白血病或混合表型转换的大多数。相比之下,CD19阴性抗原逃逸与TP53突变关联更强,并保留B系身份。转换究竟反映的是预先存在亚克隆的选择、主动的表观遗传重编程,还是两者兼有,仍未得到解决。随着抗原导向治疗进入一线使用,区分抗原逃逸与真正的谱系转化,对于复发监测、疾病分类、治疗排序以及预防耐药策略的设计正变得至关重要。
PURPOSE OF REVIEW: Targeted immunotherapies have transformed the treatment of relapsed and refractory B-cell acute lymphoblastic leukemia (B-ALL), yet their efficacy depends on sustained expression of lineage-associated surface antigens. This review examines how antigen-directed pressure reshapes the biology of resistance, distinguishes canonical antigen escape from lineage plasticity, and clarifies the genomic contexts, diagnostic challenges, and therapeutic implications of these distinct escape routes. RECENT FINDINGS: Under antigen-directed pressure, leukemia may escape through antigen downregulation, alternative splicing, acquired genetic alteration, or epitope disruption - mechanisms that generally preserve B-lineage identity and often remain addressable with alternative lineage-directed therapy.
A biologically distinct route is lineage plasticity, in which cells destabilize lineage commitment or undergo overt lineage switch; clinical outcomes are poor, with a median overall survival of approximately 4. 8 months in the largest reported series. Lineage switch is enriched within permissive genomic contexts, most notably KMT2A-rearranged leukemia, which accounted for the majority of B-ALL-to-acute myeloid leukemia or mixed-phenotype switches in a large international cohort.
By contrast, CD19-negative antigen escape is more strongly associated with TP53 mutations and preserves B-lineage identity. Whether switching reflects selection of pre-existing subclones, active epigenetic reprogramming, or both remains unresolved. As antigen-directed therapies move into frontline use, distinguishing antigen escape from true lineage transformation is becoming essential for relapse surveillance, disease classification, therapeutic sequencing, and the design of strategies to prevent resistance.
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