Programmable cancer treatments: Engineering biology approaches for living cures

Marc Biarnes Carrera, Alexandra Sevko, Nicholas Glanville, Livija Deban
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Abstract

Living cures are cell-based, programmable therapies that integrate the latest learnings in immunology and synthetic biology. Although Adoptive Cell Therapies (ACTs) have transformed the treatment landscape of haematological malignancies by harnessing the powerful anti-tumour properties of immune cells, commercialisation and ensuring access is challenging. Their application in solid tumour treatment has been hindered by the immunosuppressive tumour microenvironment (TME) and its associated physical barriers. Conversely, bacterial immunotherapies offer cost-effective solutions by utilising tumour-colonising bacteria that trigger localised inflammatory responses within the TME. The authors briefly examine advancements in ACT and propose bacterial immunotherapies as an alternative or complementary treatment modality with potential use either as standalone therapies or in conjunction with other treatments.

Abstract Image

可编程癌症治疗:活体疗法的工程生物学方法
活体疗法是以细胞为基础的可编程疗法,融合了免疫学和合成生物学的最新研究成果。虽然通过利用免疫细胞强大的抗肿瘤特性,采用细胞疗法(ACTs)已经改变了血液恶性肿瘤的治疗格局,但其商业化和确保可及性仍面临挑战。免疫抑制性肿瘤微环境(TME)及其相关的物理障碍阻碍了它们在实体瘤治疗中的应用。相反,细菌免疫疗法利用肿瘤定植细菌在肿瘤微环境中引发局部炎症反应,提供了具有成本效益的解决方案。作者简要介绍了ACT的进展,并建议将细菌免疫疗法作为一种替代或补充治疗方式,将其作为独立疗法或与其他疗法结合使用。
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