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克服欧洲 CAR-T 治疗的可及性障碍:分散式生产与 EASYGEN 框架的作用

英文原题:Overcoming access barriers in European CAR-T therapy: the role of decentralized manufacturing and the EASYGEN framework.

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Overcoming access barriers in European CAR-T therapy: the role of decentralized manufacturing and the EASYGEN framework.

PubMed 2026/06/19(内容时间) Cytotherapy Q1 · IF 4.5(JCR 2025)

分数与星级只用于站内排序 —— 不代表疗效、安全性或个人适用性。

研究概要

除了运营效率之外,该联盟还旨在强调缩短静脉到静脉时间、分散式生产和改善医院工作流程如何可能转化为更少的患者在等待期间病情恶化或变得不符合条件。

研究思路结论见上方概要

CAR-T 细胞疗法已经彻底改变了难治性B细胞恶性肿瘤的治疗格局,主要监管辖区已有七种获批疗法,且适应症标签正迅速向更早期治疗线扩展。然而,患者可及性仍受到多重瓶颈的制约,包括慢病毒载体短缺、制造产能限制以及经济因素,如生产周期漫长、治疗费用高昂及相关报销难题,以及患者前往专业CAR-T 治疗中心的长途跋涉。非病毒基因递送、自动化生物工艺和体内T细胞工程方面的最新进展有望压缩生产周期并降低成本,从而支持更广泛的适应症,包括实体瘤和自身免疫性疾病。

本综述概述了欧洲范围内自体细胞治疗的生产与递送瓶颈,梳理了快速生产技术和去中心化生产模式,并分析了规范先进治疗药品(ATMPs)实施的监管与科学框架。此外,本综述还调查了非病毒和体内 CAR-T 治疗方法,并总结了致力于协调临床转化、自动化和真实世界数据整合的泛欧洲联盟的贡献。

EASYGEN“基因治疗EASY工作流程整合”联盟(资助编号:101194710)由创新健康倡议(IHI)第7.2号征集(“以用户为中心的技术和优化的医院工作流程,以实现可持续的医疗劳动力”)资助,旨在通过构建用于CAR-T 和基因修饰免疫细胞制造的模块化平台,将这些进展付诸实践。EASYGEN汇集了工业、临床和学术合作伙伴,提出一种可扩展、去中心化的即时检验CAR-T 制造解决方案,在多个欧洲站点实施下一代技术,如在即时检验(PoC)进行非病毒基因转移,并采用可互操作的数据标准。该联盟旨在为公平的先进疗法生产和监管整合提供蓝图,同时通过最大限度减少行政复杂性并协调医院内包容性的数据统一工作,简化医院工作流程并减轻医护人员负担。

展开英文摘要原文

Chimeric antigen receptor T-cell (CAR-T) therapies have revolutionized the treatment of refractory B-cell malignancies, with seven approved therapies in major jurisdictions and rapid label expansion toward earlier lines of treatment. Nevertheless, patient access remains limited by multiple bottlenecks, including shortages of lentiviral vectors, manufacturing capacity constraints, and economic factors, such as prolonged production timelines, high treatment costs and associated reimbursement challenges, and long travel distances for patients to specialized CAR-T treatment centers. Recent advances in nonviral gene delivery, automated bioprocessing, and in vivo T-cell engineering promise to compress production timelines and reduce costs, thereby enabling broader indications, including solid cancers and autoimmune diseases.

This review provides an overview of autologous manufacturing and delivery bottlenecks across Europe, outlines rapid manufacturing technologies and decentralized production models, and analyzes the regulatory and scientific frameworks that govern the implementation of advanced therapy medicinal products (ATMPs). In addition, it surveys nonviral and in vivo CAR-T therapy approaches and summarizes the contributions of pan-European consortia dedicated to harmonizing clinical translation, automation, and real-world data integration.

The EASYGEN "EASY workflow integration for GENe therapy" consortium (Grant-ID: 101194710), funded under the Innovative Health Initiative (IHI) Call 7.2 ("User-centric technologies and optimized hospital workflows for a sustainable healthcare workforce"), aims to operationalize these advances by building a modular platform for CAR-T and gene-modified immune-cell manufacturing. EASYGEN unites industrial, clinical, and academic partners to propose a scalable, decentralized point-of-care CAR-T manufacturing solution, implementing next-generation technologies such as nonviral gene transfer at the point-of-care (PoC) with interoperable data standards across multiple European sites. The consortium aims to provide a blueprint for equitable advanced therapy production and regulatory integration, while also easing hospital workflows and reducing the burden on healthcare staff by minimizing administrative complexity and coordinating inclusive data harmonization efforts within hospitals.

Beyond operational efficiency, the consortium aims to highlight how reduced vein-to-vein time, decentralized production, and improved hospital workflows may translate into fewer patients deteriorating or becoming ineligible during waiting periods.

论文信息

作者
Griebling D、Scheiwe AR、Kuhlen R、Zech C、Müller P、Rische C、Längst V、Wegener C
单位
Fresenius SE & Co. KGaA, Bad Homburg, Germany. Electronic address: Dominik.Griebling@fresenius.com.Germany
期刊
Cytotherapy2026 Jun 19
原文标识
PubMed 42696794 · DOI 10.1016/j.jcyt.2026.102939