基因疗法在美国和欧洲的批准和治疗价值。

IF 4.6 3区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Kerstin N. Vokinger, Camille E. G. Glaus, Aaron S. Kesselheim
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引用次数: 0

摘要

基因疗法是一个快速发展的创新领域,有望治疗目前医疗需求未得到满足的许多疾病。为了更好地了解当前获批基因疗法的临床重要性,我们对获批基因疗法及其附加治疗价值进行了系统分析。截至2022年12月,美国批准了13种基因疗法,欧盟批准了15种,瑞士批准了9种。三个司法管辖区都批准了9种基因疗法,美国和欧盟都批准了11种。在一个以上司法管辖区批准的11种基因疗法中,监管机构的批准适应症存在差异,主要是欧洲药品管理局和瑞士药品监督管理局的限制性更强。在具有可用治疗评级的基因疗法中,约三分之二具有高附加治疗价值,这大大高于新药和生物制品中高附加治疗值评级的平均流行率(约三分之一)。然而,如果过高的价格限制了患者获得高附加治疗价值的疗法,那么这些疗法对患者来说将毫无用处。药品定价改革应涉及基因疗法,以确保获得能够为患者提供重要治疗价值的新基因疗法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Approval and therapeutic value of gene therapies in the US and Europe
Gene therapies are a fast-growing area of innovation and hold promise for the treatment of many diseases currently with unmet medical need. To better understand the clinical importance of the current landscape of approved gene therapies, we conducted a systematic analysis of the approved gene therapies and their added therapeutic value. Through December 2022, 13 gene therapies have been approved in the US, 15 in the EU, and 9 in Switzerland. Nine gene therapies have been approved in all three jurisdictions, and 11 in both the US and EU. Among the 11 gene therapies approved in more than one jurisdiction, there were differences in the approved indications among the regulatory agencies, mostly the European drug agencies (EMA and Swissmedic) being more restrictive. Among the gene therapies with available therapeutic ratings, approximately two-thirds had high added therapeutic value, which is substantially higher than the average prevalence of high added therapeutic value ratings among new drugs and biologics (approximately one-third). However, therapies with high added therapeutic value will not be useful for patients if excessive prices limit access to them. Drug pricing reforms should address gene therapies to ensure access to new gene therapies that can offer important therapeutic value to patients.
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来源期刊
Gene Therapy
Gene Therapy 医学-生化与分子生物学
CiteScore
9.70
自引率
2.00%
发文量
67
审稿时长
4-8 weeks
期刊介绍: Gene Therapy covers both the research and clinical applications of novel therapeutic techniques based on a genetic component. Over the last few decades, significant advances in technologies ranging from identifying novel genetic targets that cause disease through to clinical studies, which show therapeutic benefit, have elevated this multidisciplinary field to the forefront of modern medicine.
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