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.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Circulating Tumor DNA in Multiple Myeloma: Current Insights and Future Perspectives.
Circulating Tumor DNA in Multiple Myeloma: Current Insights and Future Perspectives.
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循环肿瘤DNA(ctDNA)已成为多发性骨髓瘤(MM)中一种有前景的微创生物标志物,可动态反映肿瘤负荷、克隆演化和分子异质性。与传统的基于骨髓的诊断方法不同,ctDNA分析提供了一种系统性的疾病评估方法,可能更好地反映空间异质性和髓外病变。近年来,高灵敏度分子技术的进步,包括微滴式数字聚合酶链反应和下一代测序,提高了ctDNA检测及MM纵向疾病监测的可行性。越来越多的证据表明,ctDNA与骨髓基因组图谱之间具有高度一致性,同时也凸显了ctDNA在识别耐药亚克隆、分子复发及治疗期间基因组演化方面的能力。ctDNA在分子分型、治疗监测和微小残留病评估中已显示出潜在的临床价值。在新兴免疫治疗时代,包括CAR-T 细胞治疗和双特异性抗体,ctDNA可能变得日益重要。尽管这些应用前景广阔,但若干生物学和技术局限性仍限制其常规临床实施,包括疾病负担极低患者中ctDNA浓度低以及缺乏方法学标准化。
总体而言,ctDNA是一种快速发展的工具,在改善MM个体化疾病监测和治疗策略方面具有巨大潜力。
Circulating tumor DNA (ctDNA) has emerged as a promising minimally invasive biomarker in multiple myeloma (MM), providing dynamic insight into tumor burden, clonal evolution and molecular heterogeneity. Unlike conventional bone marrow-based diagnostics, ctDNA analysis offers a systemic approach to disease assessment and may better reflect spatially heterogeneous and extramedullary disease. Recent advances in highly sensitive molecular techniques, including digital droplet polymerase chain reaction and next-generation sequencing, have improved the feasibility of ctDNA detection and longitudinal disease monitoring in MM.
Increasing evidence demonstrates substantial concordance between ctDNA and bone marrow genomic profiles, while also highlighting the ability of ctDNA to identify resistant subclones, molecular relapse and genomic evolution during therapy. ctDNA has shown potential clinical utility in molecular profiling, therapeutic monitoring and minimal residual disease assessment.
ctDNA may become increasingly relevant in the era of novel immunotherapies, including chimeric antigen receptor T-cell therapy and bispecific antibodies. Despite these promising applications, several biological and technical limitations still restrict routine clinical implementation, including low ctDNA concentration in patients with minimal disease burden and lack of methodological standardization.
Overall, ctDNA represents a rapidly evolving tool with significant potential to improve personalized disease monitoring and therapeutic strategies in MM.
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