不适合移植的大 B 细胞淋巴瘤二线使用 axicabtagene ciloleucel:ALYCANTE 最终分析
Second-line axicabtagene ciloleucel in large B-cell lymphoma ineligible for transplantation: ALYCANTE final analysis.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:EBV-Driven NK/T-Cell Lymphoproliferative Disorders: Clinical Diversity and Molecular Insights.
EBV-Driven NK/T-Cell Lymphoproliferative Disorders: Clinical Diversity and Molecular Insights.
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世界卫生组织(WHO)和国际共识分类(ICC)体系分别对成人EBV阳性NK/T细胞肿瘤及儿童EBV阳性T/NK细胞淋巴组织增殖性疾病(LPD)进行了分类。近期分子谱分析技术揭示了这些疾病的发病机制,显示EBV编码蛋白、宿主免疫应答及遗传改变之间存在相互作用。结外NK/T细胞淋巴瘤(ENKTL)具有分子异质性,通过多组学方法已识别出TSIM、MB和HEA等不同亚型。侵袭性NK细胞白血病(ANKL)涉及JAK/STAT、表观遗传调节因子及TP53通路突变。EBV阳性淋巴结T/NK细胞淋巴瘤(ENTNKL)是一种新实体,具有原发淋巴结表现和独特分子特征。
严重蚊虫叮咬过敏(SMBA)、种痘水疱病样淋巴组织增殖性疾病(HVLPD)和系统性慢性活动性EBV病(CAEBV)是罕见的儿童EBV驱动LPD,按临床病理标准定义,其基因组特征尚未得到充分研究。CAEBV样本研究在EBV感染的NK/T细胞中发现类似ENKTL的驱动突变,包括DDX3X和KMT2D;HVLPD中则常见KMT2D及染色质修饰因子突变。目前仍缺乏对SMBA和儿童系统性EBV阳性T细胞淋巴瘤进行全面分子测序的研究。这些结果提示,所有EBV阳性NK/T细胞LPD在病毒致癌生物学上可能构成连续谱。整合临床、病理和分子信息,旨在建立更精确的分类体系,以更好地评估风险并为这些复杂疾病患者制定个体化治疗策略。
The World Health Organization (WHO) and International Consensus Classification (ICC) systems have classified EBV-positive NK/T-cell neoplasms in adults and EBV-positive T/NK-cell lymphoid lymphoproliferative disorders (LPD) in children. Recent molecular profiling techniques have revealed the pathogenesis of these disorders, showing interactions among EBV-encoded proteins, host immune responses, and genetic alterations. Extranodal NK/T-cell lymphoma (ENKTL) shows molecular diversity, with various subtypes (TSIM, MB, and HEA) identified through a multiomics approach. Aggressive NK-cell leukemia (ANKL) has mutations in JAK/STAT, epigenetic regulators, and TP53 pathways.
EBV-positive nodal T- and NK-cell lymphoma (ENTNKL) is a new entity, distinguished by primary nodal presentation and a unique molecular profile. Severe mosquito bite allergy (SMBA), hydroa vacciniforme lymphoproliferative disorder (HVLPD), and systemic chronic active EBV disease (CAEBV) are rare childhood EBV-driven LPDs defined by clinico-pathologic criteria, with largely unexplored genomic landscapes.
Studies of CAEBV samples have found ENKTL-like driver mutations, including DDX3X and KMT2D , in EBV-infected NK/T cells, while KMT2D and chromatin modifier mutations were common in HVLPD. Comprehensive molecular sequencing of SMBA and Systemic EBV-positive T-cell lymphoma of childhood remains lacking.
These findings suggest all EBV+ NK/T-cell LPDs exist on a biological continuum of viral oncogenesis. The integration of clinical, pathological, and molecular information aims to create a more accurate classification system, enabling better risk evaluation and tailored treatment strategies for patients with these complex disorders.
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