John Tami, Czechowicz Agnieszka
Department of Pediatrics, Division of Hematology, Oncology, Stem Cell Transplantation and Regenerative Medicine, and Center for Definitive and Curative Medicine, Stanford University School of Medicine, Stanford, CA 94305, USA.
Mol Ther. 2025 Jun 4;33(6):2663-2678. doi: 10.1016/j.ymthe.2025.04.029. Epub 2025 Apr 24.
Hematopoietic stem cell (HSC)-based gene therapies have seen extraordinary progress since their initial conception, now fundamentally transforming the treatment paradigms for various inherited hematologic, immunologic, and metabolic conditions-with additional use cases under exploration. Decades worth of work with advances in viral vector technologies and cell manufacturing have paved the way for HSC gene therapy with marked improvement in the safety and efficiency of gene delivery into HSCs. These have been augmented by the recent rise of innovative genome-editing techniques, particularly using clustered regularly interspaced short palindromic repeats CRISPR-associated proteins (CRISPR-Cas)-based technologies, which have enabled more precise and reproducible genome alterations in HSCs and fostered opportunities for targeted gene modification or gene correction. These breakthroughs have led to the development of many active clinical trials and culminated in the recent federal regulatory-agency approvals of multiple clinical HSC gene therapies for various indications that are now becoming available across different geographies. These treatments aim to offer significant, long-lasting benefits to patients worldwide without the toxicities of alternative treatment approaches. This review explores the history and advancements in HSC gene therapies and provides a comprehensive overview of the latest clinical innovations and cell-therapy products. Further, it concludes with a discussion of the persistent challenges that have limited adoption and potential future opportunities that aspire to enable curative treatment of many different patients through such personalized medicines.
自造血干细胞(HSC)基因疗法最初构思以来,已取得了非凡进展,如今正从根本上改变各种遗传性血液、免疫和代谢疾病的治疗模式,且还有更多应用案例正在探索中。数十年来,随着病毒载体技术和细胞制造技术的进步,为HSC基因疗法铺平了道路,基因导入HSC的安全性和效率有了显著提高。最近创新基因组编辑技术的兴起进一步推动了这一进展,特别是使用基于成簇规律间隔短回文重复序列(CRISPR)相关蛋白(CRISPR-Cas)的技术,这些技术能够在HSC中实现更精确、可重复的基因组改变,并为靶向基因修饰或基因校正创造了机会。这些突破促成了许多正在进行的临床试验,并最终导致联邦监管机构最近批准了多种针对不同适应症的临床HSC基因疗法,这些疗法现已在不同地区上市。这些治疗旨在为全球患者提供显著、持久的益处,而无替代治疗方法的毒性。本综述探讨了HSC基因疗法的历史和进展,并全面概述了最新的临床创新和细胞治疗产品。此外,本文最后讨论了限制其应用的持续挑战以及未来潜在的机会,这些机会有望通过此类个性化药物实现对许多不同患者的治愈性治疗。