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 as Measurable Residual Disease in Aggressive B-Cell Lymphoma: A Narrative Review.
Circulating Tumor DNA as Measurable Residual Disease in Aggressive B-Cell Lymphoma: A Narrative Review.
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本综述的结果表明,现代超灵敏循环肿瘤 DNA 检测方法可能改进侵袭性 B 细胞淋巴瘤当前对缓解的定义。在治疗结束评估时纳入循环肿瘤 DNA,可识别出不需要监测随访的患者,并引入在临床试验中治疗可测量残留病的范式。实际障碍,包括采集标准化、可及性、周转时间和成本,仍是阻碍其广泛应用于临床实践的障碍。
在治疗侵袭性B细胞淋巴瘤中,实现缓解是迈向治愈的第一步。影像学检查,如氟脱氧葡萄糖-正电子发射断层扫描/计算机断层扫描,是目前在治疗结束时定义缓解的标准,但对淋巴瘤缺乏特异性,且无法在分子水平检测疾病。通过超灵敏检测循环肿瘤DNA来识别可测量残留病灶,可能为改善临床结局提供机会。观察:侵袭性B细胞淋巴瘤中循环肿瘤DNA的早期研究与总体肿瘤负荷密切相关,基线定量水平与前線化疗后的临床结局相关。检测循环肿瘤DNA中淋巴瘤相关遗传异常的下一代测序方法,也可用于无创基因分型,其结果与组织活检高度一致。前線化疗1或2个周期后或CAR-T 细胞挽救治疗数周内循环肿瘤DNA动力学的快速变化也具有高度预后价值。尽管连续监测循环肿瘤DNA可在临床复发前3至6个月检测到分子复发,但仍需改进分析阈值,以在治疗结束的单一时间点检测可测量残留病灶。循环肿瘤DNA方法的现代进展现已能够可靠检测可测量残留病灶,分析检测阈值可达1百万个游离DNA分子中检出1个。
Achieving remission is the first step toward a cure in treating aggressive B-cell lymphomas. Radiographic imaging, such as fluorodeoxyglucose-positron emission tomography/computed tomography scans are the current standard to define remission at the end of therapy but lack specificity for lymphoma and cannot detect disease at the molecular level. Identifying measurable residual disease with ultrasensitive detection of circulating tumor DNA potentially offers the possibility of improving clinical outcomes. OBSERVATIONS: Early studies of circulating tumor DNA in aggressive B-cell lymphomas showed a strong association with overall tumor burden, and baseline quantitative levels are associated with clinical outcomes after frontline chemotherapy. Next-generation sequencing methods that detect lymphoma-relevant genetic aberrations in circulating tumor DNA can also be used for noninvasive genotyping that strongly mirror tissue biopsies. Rapid changes in circulating tumor DNA dynamics after 1 or 2 cycles of frontline chemotherapy or within weeks of treatment with chimeric antigen receptor T-cell salvage therapy are also highly prognostic. Although serial monitoring of circulating tumor DNA can detect molecular relapse 3 to 6 months before clinical relapse, improved analytical thresholds are required to detect measurable residual disease at a singular point at the end of therapy. Modern advances in circulating tumor DNA methods now allow for the reliable detection of measurable residual disease, with an analytical detection threshold of 1 in 1 million cell-free DNA molecules.
The results of this review suggest that modern ultrasensitive methods of detecting circulating tumor DNA may improve the current definition of remission in aggressive B-cell lymphomas. Incorporating circulating tumor DNA at the end of therapy assessment identifies patients who do not require surveillance monitoring and introduces paradigms of treating measurable residual disease within clinical trials. Practical barriers, including standardization of collection, availability, turnaround times, and cost, remain hurdles preventing widespread implementation into clinical practice.
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