CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Cancer vaccine trial evaluations: immunobridging and potential immunological endpoints.
Cancer vaccine trial evaluations: immunobridging and potential immunological endpoints.
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治疗性癌症疫苗是一类新兴的免疫疗法,但如何有效地将已获批的疫苗适应于日益增多的佐剂、联合疗法和抗原选择方法,仍面临挑战。III期临床试验仍是确定临床获益的金标准,但速度慢且资源消耗大,而影像学替代指标往往无法可靠预测临床获益。使用免疫学疗效替代指标,应用于“免疫桥接试验”,可能是一种可行的替代方案,能够以经济有效的方式安全加速癌症疫苗开发。尽管该方法在传染病疫苗中已被证明成功,但对于癌症疫苗而言,识别可靠的免疫保护相关因素一直很困难。大多数临床试验——作为建立相关因素最丰富的数据来源——依赖外周血样本和标准免疫检测方法,而这些方法难以捕捉疫苗诱导的抗肿瘤免疫应答的复杂性。本综述首次在免疫桥接试验的背景下,概述了为癌症疫苗建立免疫学替代指标的重要性和挑战,评估了当前的免疫检测方法,并强调了需要能够在广泛患者中表征TIL(肿瘤浸润淋巴细胞)和抑制性肿瘤微环境的技术。作者提出调整试验设计以用于替代指标的发现,包括结合I/II期试验以及使用多组学方法。成功的免疫替代终点开发可使未来的免疫桥接试验加速已获批癌症疫苗的优化,而无需开展新的III期试验,从而促进科学进展更快地临床转化并惠及患者。
Therapeutic cancer vaccines are an emerging class of immunotherapy, but challenges remain in effectively adapting approved vaccines to a growing number of adjuvants, combination therapies, and antigen-selection methods. Phase III clinical trials remain the gold standard in determining clinical benefit, but are slow and resource intensive, whilst radiological surrogates often fail to reliably predict clinical benefit. Using immunological surrogates of efficacy, deployed in 'immunobridging trials', could present a viable alternative, safely speeding up cancer vaccine development in a cost-effective manner. Whilst this approach has proven successful in infectious disease vaccines, identifying reliable immunological correlates of protection has proven difficult for cancer vaccines. Most clinical trials, which present the richest source of data to establish a correlate, rely on peripheral blood samples and standard immunoassays that are ill-equipped to capture the complexity of the vaccine-induced anti-tumour response.
This review is the first to outline the importance and challenges of establishing immunological surrogates for cancer vaccines in the context of immunobridging trials, evaluating current immunoassay methods, and highlighting the need for techniques that can characterize tumour-infiltrating lymphocytes and the suppressive tumour microenvironment across a range of patients.
The authors propose adapting trial designs for surrogate discovery, including combining phase I/II trials and the use of multi-omics approaches. Successful immunological surrogate development could enable future immunobridging trials to accelerate the optimization of approved cancer vaccines without requiring new phase III trials, promoting faster clinical implementation of scientific advances and patient benefits.
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