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:Site-specific transgene integration in chimeric antigen receptor (CAR) T cell therapies.
Site-specific transgene integration in chimeric antigen receptor (CAR) T cell therapies.
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嵌合抗原受体(CAR)T细胞和自然杀伤(NK)细胞是经过基因工程改造的免疫细胞,能够识别靶细胞表面的目标抗原,并在过继转移后将其清除。近年来基于CAR的治疗进展已在某些白血病和淋巴瘤患者中取得了卓越的临床成功,并为那些对常规治疗耐药的患者提供了治疗获益。将CAR转基因稳定递送至T/NK细胞的通用方法是使用病毒颗粒。此类方法介导跨越整个基因组的半随机转基因插入,高度倾向于整合到高表达基因和活跃位点周围的区域。尽管CAR表达水平因CAR转基因整合位点的不同而变化,但外源整合的DNA片段可能影响邻近的内源性基因和染色质结构,并可能改变转导T/NK细胞的行为和功能,甚至促进细胞转化。相比之下,使用近期基因组编辑技术进行CAR构建体的位点特异性整合可以克服通用随机基因整合的局限性和缺点。本文中,我们阐述了CAR-T/NK细胞治疗中CAR转基因的随机整合和位点特异性整合。
此外,我们倾向于总结位点特异性整合的方法,以及因CAR转基因整合导致的某些基因破坏或增强的临床结局。同时,本综述还讨论了使用位点特异性整合方法的优势和局限性。最终,我们将介绍基因组安全港(GSH)标准,并为CAR-T/NK细胞治疗中CAR整合提出一些合适的安全性展望。
Chimeric antigen receptor (CAR) T cells and natural killer (NK) cells are genetically engineered immune cells that can detect target antigens on the surface of target cells and eliminate them following adoptive transfer. Recent progress in CAR-based therapies has led to outstanding clinical success in certain patients with leukemias and lymphomas and offered therapeutic benefits to those resistant to conventional therapies. The universal approach to stable CAR transgene delivery into the T/NK cells is the use of viral particles.
Such approaches mediate semi-random transgene insertions spanning the entire genome with a high preference for integration into sites surrounding highly-expressed genes and active loci.
Regardless of the variable CAR expression level based on the integration site of the CAR transgene, foreign integrated DNA fragments may affect the neighboring endogenous genes and chromatin structure and potentially change a transduced T/NK cell behavior and function or even favor cellular transformation. In contrast, site-specific integration of CAR constructs using recent genome-editing technologies could overcome the limitations and disadvantages of universal random gene integration.
Herein, we explain random and site-specific integration of CAR transgenes in CAR-T/NK cell therapies. Also, we tend to summarize the methods for site-specific integration as well as the clinical outcomes of certain gene disruptions or enhancements due to CAR transgene integration. Also, the advantages and limitations of using site-specific integration methods are discussed in this review. Ultimately, we will introduce the genomic safe harbor (GSH) standards and suggest some appropriate safety prospects for CAR integration in CAR-T/NK cell therapies.
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