CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Circulating CD22+/CD19-/CD24- progenitors and CD22+/CD19+/CD24- mature B cells: Diagnostic pitfalls for minimal residual disease detection in B-lymphoblastic leukemia.
Circulating CD22+/CD19-/CD24- progenitors and CD22+/CD19+/CD24- mature B cells: Diagnostic pitfalls for minimal residual disease detection in B-lymphoblastic leukemia.
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我们的发现有助于建立 PB 中正常细胞群体的完整免疫表型谱,从而避免 B-ALL MRD 的误诊和不恰当的治疗。
多参数流式细胞术(MFC)已成为B淋巴母细胞白血病/淋巴瘤(B-ALL)微小残留病(MRD)检测的有力工具。在靶向免疫治疗背景下,B-ALL MRD检测常依赖替代性设门策略,例如利用CD22和CD24。描绘替代性B细胞设门方法中所包含正常细胞群体的全部多样性,对于避免假阳性结果至关重要。我们描述了外周血(PB)中两个CD22阳性的非肿瘤性细胞群体,包括一个谱系不确定的祖细胞群体和一个成熟B细胞群体,它们在免疫表型上模拟B-ALL。
我们使用MFC,对52例B-ALL患者的278份血液样本中两个CD22阳性群体的患病率和表型特征进行了研究;这些样本分别采集于接受CD19和/或CD22 CAR-T 治疗前和治疗后。我们进一步通过对诊断为其他血液系统恶性肿瘤但处于长期MRD缓解的患者进行相同分析,评估了血液中这两个群体是否仅与B-ALL或近期抗癌治疗相关。
在61.5%和44.2%的B-ALL患者PB中分别检测到低水平的祖细胞群和成熟B细胞群。这两种细胞类型均显示出独特且高度一致的抗原表达模式,可与B-ALL可靠区分。此外,它们的存在不仅限于B-ALL或近期治疗。
Multiparametric flow cytometry (MFC) has become a powerful tool in minimal residual disease (MRD) detection in B-lymphoblastic leukemia/lymphoma (B-ALL). In the setting of targeted immunotherapy, B-ALL MRD detection often relies on alterative gating strategies, such as the utilization of CD22 and CD24. It is important to depict the full diversity of normal cell populations included in the alternative B-cell gating methods to avoid false-positive results. We describe two CD22-positive non-neoplastic cell populations in the peripheral blood (PB), including one progenitor population of uncertain lineage and one mature B-cell population, which are immunophenotypic mimics of B-ALL.
Using MFC, we investigated the prevalence and phenotypic profiles of both CD22-positive populations in 278 blood samples from 52 patients with B-ALL; these were obtained pre- and post-treatment with CD19 and/or CD22 CAR-T therapies. We further assessed whether these two populations in the blood were exclusively associated with B-ALL or recent anticancer therapies, by performing the same analysis on patients diagnosed with other hematological malignancies but in long-term MRD remission.
The progenitor population and mature B-cell population were detected at low levels in PB of 61.5% and 44.2% of B-ALL patients, respectively. Both cell types showed distinctive and highly consistent antigen expression patterns that are reliably distinguishable from B-ALL. Furthermore, their presence is not restricted solely to B-ALL or recent therapy.
Our findings aid in building a complete immunophenotypic profile of normal cell populations in PB, thereby preventing misdiagnosis of B-ALL MRD and inappropriate management.
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