CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Challenges and opportunities in cancer immunotherapy: a Society for Immunotherapy of Cancer (SITC) strategic vision.
Challenges and opportunities in cancer immunotherapy: a Society for Immunotherapy of Cancer (SITC) strategic vision.
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癌症免疫治疗在过去10-15年间蓬勃发展,改变了肿瘤学的实践,并为部分患者提供了长期临床获益。在此期间,三类不同的免疫检查点抑制剂、针对两个靶点的CAR-T 细胞疗法、两类不同的双特异性T细胞衔接器、一种疫苗和一种溶瘤病毒与细胞因子一起加入了癌症标准治疗的行列。与此同时,科学进步带来了大量新知识。例如,单细胞测序和空间转录组学等技术的进步,为肿瘤微环境的免疫生物学提供了深入见解。随着这种快速的临床和科学进展,癌症免疫治疗领域目前正处于一个关键的转折点,未来十年具有指数级增长的潜力。认识到这一点,癌症免疫治疗学会召集了代表学术界、制药和生物技术行业、患者倡导组织以及监管机构的多元化癌症免疫治疗专家组,以确定当前的机遇和挑战,目标是优先考虑最具临床影响力潜力的领域。共识小组确定了该领域当前机遇的七个高优先级领域:抗肿瘤活性和毒性的机制;耐药机制;生物标志物和生物样本;新型疗法的独特方面;宿主和环境相互作用;癌前免疫、免疫拦截和免疫预防;以及临床试验设计、终点和实施。
此外,还讨论了可能阻碍进展的潜在障碍,并确定了若干作为优化跨领域工具的主题,每个主题都有可能影响多个科学优先领域。这些跨领域工具包括临床前模型、数据管理与共享、活检与生物样本、资金来源多元化、定义与标准,以及患者参与。
最后,确定了三项关键指导原则,这些原则将优化并最大化该领域的进展。这些原则包括:让患者群体参与;培养多样性、公平性、包容性和可及性;以及利用人工智能的力量加速进展。
在此,我们将这些讨论的成果作为一项战略愿景呈现,以激励该领域在下一个十年实现癌症免疫治疗的指数级进展。
Cancer immunotherapy has flourished over the last 10-15 years, transforming the practice of oncology and providing long-term clinical benefit to some patients. During this time, three distinct classes of immune checkpoint inhibitors, chimeric antigen receptor-T cell therapies specific for two targets, and two distinct classes of bispecific T cell engagers, a vaccine, and an oncolytic virus have joined cytokines as a standard of cancer care. At the same time, scientific progress has delivered vast amounts of new knowledge. For example, advances in technologies such as single-cell sequencing and spatial transcriptomics have provided deep insights into the immunobiology of the tumor microenvironment. With this rapid clinical and scientific progress, the field of cancer immunotherapy is currently at a critical inflection point, with potential for exponential growth over the next decade.
Recognizing this, the Society for Immunotherapy of Cancer convened a diverse group of experts in cancer immunotherapy representing academia, the pharmaceutical and biotechnology industries, patient advocacy, and the regulatory community to identify current opportunities and challenges with the goal of prioritizing areas with the highest potential for clinical impact.
The consensus group identified seven high-priority areas of current opportunity for the field: mechanisms of antitumor activity and toxicity; mechanisms of drug resistance; biomarkers and biospecimens; unique aspects of novel therapeutics; host and environmental interactions; premalignant immunity, immune interception, and immunoprevention; and clinical trial design, endpoints, and conduct.
Additionally, potential roadblocks to progress were discussed, and several topics were identified as cross-cutting tools for optimization, each with potential to impact multiple scientific priority areas. These cross-cutting tools include preclinical models, data curation and sharing, biopsies and biospecimens, diversification of funding sources, definitions and standards, and patient engagement.
Finally, three key guiding principles were identified that will both optimize and maximize progress in the field. These include engaging the patient community; cultivating diversity, equity, inclusion, and accessibility; and leveraging the power of artificial intelligence to accelerate progress.
Here, we present the outcomes of these discussions as a strategic vision to galvanize the field for the next decade of exponential progress in cancer immunotherapy.
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