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引用次数: 0
摘要
自然杀伤(NK)细胞是先天免疫系统中细胞毒性淋巴细胞的一个亚群。虽然它们具有天然的细胞毒性,但基因修饰可以增强它们的肿瘤靶向能力、细胞毒性、持久性、肿瘤浸润性并防止衰竭。这些改进有可能使基于 NK 细胞的免疫疗法在临床应用中更加有效。目前,有几种病毒和非病毒技术可用于对 NK 细胞进行基因改造。在核酸递送方面,电穿孔、脂质纳米粒子、脂质感染和 DNA 转座子等非病毒方法近年来越来越受欢迎。另一方面,包括慢病毒、γ逆转录病毒和腺相关病毒在内的病毒方法仍被广泛用于基因递送。此外,基因编辑技术,如基于簇状规则间隔短链重复序列、锌指核酸酶和转录激活剂样效应核酸酶,也是这一领域的关键方法。本综述旨在全面概述嵌合抗原受体(CAR)武装策略,并讨论关键的基因编辑技术。这些方法共同旨在增强基于 NK 细胞/NK 细胞 CAR 的免疫疗法,以实现临床转化。
Genetic Manipulation Approaches to Enhance the Clinical Application of NK Cell-Based Immunotherapy.
Natural killer (NK) cells are a subset of cytotoxic lymphocytes within the innate immune system. While they are naturally cytotoxic, genetic modifications can enhance their tumor-targeting capability, cytotoxicity, persistence, tumor infiltration, and prevent exhaustion. These improvements hold the potential to make NK-cell-based immunotherapies more effective in clinical applications. Currently, several viral and non-viral technologies are used to genetically modify NK cells. For nucleic acid delivery, non-viral methods such as electroporation, lipid nanoparticles, lipofection, and DNA transposons have gained popularity in recent years. On the other hand, viral methods including lentivirus, gamma retrovirus, and adeno-associated virus, remain widely used for gene delivery. Furthermore, gene editing techniques such as clustered regularly interspaced short-palindromic repeats-based, zinc finger nucleases, and transcription activator-like effector nucleases are the pivotal methodologies in this field. This review aims to provide a comprehensive overview of chimeric antigen receptor (CAR) arming strategies and discuss key gene editing techniques. These approaches collectively aim to enhance NK cell/NK cell CAR-based immunotherapies for clinical translation.
期刊介绍:
STEM CELLS Translational Medicine is a monthly, peer-reviewed, largely online, open access journal.
STEM CELLS Translational Medicine works to advance the utilization of cells for clinical therapy. By bridging stem cell molecular and biological research and helping speed translations of emerging lab discoveries into clinical trials, STEM CELLS Translational Medicine will help move applications of these critical investigations closer to accepted best patient practices and ultimately improve outcomes.
The journal encourages original research articles and concise reviews describing laboratory investigations of stem cells, including their characterization and manipulation, and the translation of their clinical aspects of from the bench to patient care. STEM CELLS Translational Medicine covers all aspects of translational cell studies, including bench research, first-in-human case studies, and relevant clinical trials.