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:Epstein-Barr virus and spontaneous lymphoblastoid cell lines: establishment, molecular characteristics, immune modulation, and therapeutic insight.
Epstein-Barr virus and spontaneous lymphoblastoid cell lines: establishment, molecular characteristics, immune modulation, and therapeutic insight.
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Epstein-Barr病毒(EBV)是一种普遍存在的疱疹病毒,具有明确致癌潜力,可导致多种恶性肿瘤和免疫介导疾病。其感染并永生化B细胞的能力是制备淋巴母细胞样细胞系(LCL)的基础;LCL是免疫学、病毒学和转化研究的重要模型。传统LCL通过外源EBV感染外周血单个核细胞制备,而自发性淋巴母细胞样细胞系(S-LCL)可在未人为接种病毒的情况下形成,尤其见于EBV血清阳性者。本综述介绍建立S-LCL的多种方法,包括使用环孢素A、CpG DNA、检查点激酶抑制剂和细胞因子调节;并展示自身免疫病、移植后淋巴增殖性疾病和癌症等不同临床情境下的研究结果。
我们讨论EBV潜伏和再激活的生物学机制,强调驱动B细胞转化和持留的病毒转录程序。此外,还探讨细胞因子,尤其IL-10,如何支持S-LCL存活,以及丁酸钠和阿昔洛韦等抗病毒药物如何影响EBV再激活和复制。本综述还考察LCL的诊断及治疗意义,包括其作为抗原呈递细胞、疫苗平台和CAR-T 或病毒特异性细胞毒T淋巴细胞等细胞免疫疗法模型的潜力。通过评估S-LCL生成方式、分子特征和免疫学意义,本综述强调其在模拟EBV驱动疾病和推进新型治疗策略方面的价值。
Epstein-Barr virus (EBV) is a ubiquitous herpesvirus with well-established oncogenic potential, contributing to various malignancies and immune-mediated diseases. Its capacity to infect and immortalize B-cells forms the basis for the generation of lymphoblastoid cell lines (LCLs), which serve as vital models in immunology, virology, and translational research.
While conventional LCLs are produced by exogenous EBV infection of peripheral blood mononuclear cells, spontaneous lymphoblastoid cell lines (S-LCLs) can emerge without deliberate viral inoculation, particularly in EBV-seropositive individuals. This review highlights multiple methodologies used to establish S-LCLs, including the use of cyclosporin A, CpG DNA, checkpoint kinase inhibitors, and cytokine modulation, and presents findings from diverse clinical contexts such as autoimmune diseases, post-transplant lymphoproliferative disorders, and cancer.
We discuss the biological mechanisms underpinning EBV latency and reactivation, emphasizing the viral transcriptional programmes that drive B-cell transformation and persistence.
Additionally, we explore how cytokines, particularly IL-10, support S-LCL survival, and how sodium butyrate and antiviral agents like acyclovir can influence EBV reactivation and replication. The review also considers the diagnostic and therapeutic relevance of LCLs, including their potential as antigen-presenting cells, vaccine platforms, and models for cellular immunotherapies such as CAR T-cells and virus-specific cytotoxic T lymphocytes.
By evaluating the generation, molecular features, and immunological significance of S-LCLs, this review underscores their value in modelling EBV-driven disease and advancing novel therapeutic strategies.
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