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推进罕见病治疗:EMA 十年来对罕见肿瘤工程化过继细胞治疗与孤儿药认定的洞见

英文原题:Advancing rare disease treatment: EMA's decade-long insights into engineered adoptive cell therapy for rare cancers and orphan designation.

查看英文原题

Advancing rare disease treatment: EMA's decade-long insights into engineered adoptive cell therapy for rare cancers and orphan designation.

PubMed 2024/03/14(内容时间) Gene Ther Q1 · IF 5.9(JCR 2025)

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中文摘要

过继细胞疗法(ACT),特别是嵌合抗原受体(CAR) -T细胞疗法,已成为靶向和治疗罕见肿瘤学病症的有希望的方法。欧盟(EU)指定的孤儿药在根据欧盟孤儿法规促进罕见病药物的开发方面发挥着至关重要的作用。该监管环境分析基于欧洲药品管理局孤儿药品委员会对孤儿指定和维持状态评估申请的审查,审查了基因工程ACT的演变、监管挑战和临床结果,重点关注CAR-T 细胞疗法。总共有36份申请中有30份被授予孤儿身份, 14份随后在批准上市或延长适应症时申请维持该身份。大多数产品是使用慢病毒载体的自体细胞疗法,用于治疗罕见的血液学B细胞恶性肿瘤。研究结果显示, 80% (29/36)的孤儿认定申请得到初步临床数据的支持,这些数据显示候选产品具有潜在疗效,并且与目前批准的药物相比,对拟议的孤儿病具有额外的临床益处。

值得注意的是,在89% (32/36)的病例中,基于与现有疗法相比的临床相关优势,接受了新产品的显着益处。在针对上市许可时维持孤儿药资格或扩展适应症的14份审查申请中,有12份证明相关产品在获批治疗适应症内相较于现有令人满意的治疗方法具有显著获益,但其中1份申请在监管评估期间被撤回。本文总结了在欧盟使用工程化ACT(主要是CAR-T 细胞疗法)靶向和治疗罕见癌症的关键发现。文章强调了在孤儿药资格认定阶段使用临床数据支持医学合理性和显著获益的重要性,并指出这些产品在获得初始孤儿药资格以及随后在上市许可或扩展适应症时维持该资格方面具有较高的成功率。

展开英文摘要原文

Adoptive cell therapy (ACT), particularly chimeric antigen receptor (CAR)-T cell therapy, has emerged as a promising approach for targeting and treating rare oncological conditions. The orphan medicinal product designation by the European Union (EU) plays a crucial role in promoting development of medicines for rare conditions according to the EU Orphan Regulation. This regulatory landscape analysis examines the evolution, regulatory challenges, and clinical outcomes of genetically engineered ACT, with a focus on CAR-T cell therapies, based on the European Medicines Agency's Committee for Orphan Medicinal Products review of applications evaluated for orphan designation and maintenance of the status over a 10-year period.

In total, 30 of 36 applications were granted an orphan status, and 14 subsequently applied for maintenance of the status at time of marketing authorisation or extension of indication. Most of the products were autologous cell therapies using a lentiviral vector and were developed for the treatment of rare haematological B-cell malignancies.

The findings revealed that 80% (29/36) of the submissions for orphan designation were supported by preliminary clinical data showing a potential efficacy of the candidate products and an added clinical benefit over currently authorised medicines for the proposed orphan condition.

Notably, in 89% (32/36) of the cases significant benefit of the new products was accepted based on a clinically relevant advantage over existing therapies. Twelve of fourteen submissions reviewed for maintenance of the status at time of marketing authorisation or extension of indication demonstrated significant benefit of the products over existing satisfactory methods of treatment within the approved therapeutic indications, but one of the applications was withdrawn during the regulatory evaluation.

This article summarises the key findings related to the use of engineered ACT, primarily CAR-T cell therapies, in targeting and treating rare cancers in the EU. It emphasises the importance of use of clinical data in supporting medical plausibility and significant benefit at the stage of orphan designation and highlights the high success rate for these products in obtaining initial orphan designations and subsequent maintaining the status at the time of marketing authorisation or extension of indication.

论文信息

作者
Kalland ME、Pose-Boirazian T、Palomo GM、Naumann-Winter F、Costa E、Matusevicius D、Duarte DM、Malikova E
单位
Norwegian Medical Products Agency, Grensesvingen 26, 0663, Oslo, Norway. maria.kalland@noma.no.Norway
文献类型
综述
期刊
Gene therapy2024 Jul
原文标识
PubMed 38480914 · DOI 10.1038/s41434-024-00446-0