医学
低温消融
肺癌
癌症
射频消融术
烧蚀
微波消融
放射治疗
肿瘤科
离格
免疫疗法
SABR波动模型
免疫系统
内科学
癌症研究
免疫学
经济
金融经济学
波动性(金融)
随机波动
作者
Kanishka Rangamuwa,Tracy Leong,Clare E. Weeden,Marie-Liesse Asselin-Labat,Steven Bozinovski,Michael Christie,Thomas John,Phillip Antippa,Louis Irving,Daniel Steinfort
标识
DOI:10.21037/tlcr-20-1075
摘要
Abstract: Lung cancer is the leading cause of cancer death worldwide, with approximately 1.6 million cancer related deaths each year. Prognosis is best in patients with early stage disease, though even then five-year survival is only 55% in some groups. Median survival for advanced non-small cell lung cancer (NSCLC) is 8–12 months with conventional treatment. Immune checkpoint inhibitor (ICI) therapy has revolutionised the treatment of NSCLC with significant long-term improvements in survival demonstrated in some patients with advanced NSCLC. However, only a small proportion of patients respond to ICI, suggesting the need for further techniques to harness the potential of ICI therapy. Thermal ablation utilizes the extremes of temperature to cause tumour destruction. Commonly used modalities are radiofrequency ablation (RFA), cryoablation and microwave ablation (MWA). At present thermal ablation is reserved for curative-intent therapy in patients with localized NSCLC who are unable to undergo surgical resection or stereotactic ablative body radiotherapy (SABR). Limited evidence suggests that thermal ablative modalities can upregulate an anticancer immune response in NSCLC. It is postulated that thermal ablation can increase tumour antigen release, which would initiate and upregulated steps in the cancer immunity cycle required to elicit an anticancer immune response. This article will review the current thermal ablative techniques and their ability to modulate an anti-cancer immune response with a view of using thermal ablation in conjunction with ICI therapy.
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