CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Synthetic biology approaches for improving the specificity and efficacy of cancer immunotherapy.
Synthetic biology approaches for improving the specificity and efficacy of cancer immunotherapy.
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免疫疗法在治疗多种血液系统恶性肿瘤和实体瘤方面已展现出强大的疗效。尽管免疫疗法对癌症治疗产生了变革性影响,但仍存在若干突出挑战。这些挑战包括靶向非肿瘤毒性、全身毒性以及实现强效且持久治疗效果的复杂性。合成生物学已成为克服这些障碍的一种有前景的方法,为工程化改造具有定制功能的活细胞提供了创新工具。本综述概述了癌症免疫治疗的当前格局和未来前景,尤其强调合成生物学在增强其特异性、可控性和疗效方面的作用。我们描述并讨论了两种主要的合成生物学策略:一种是用工程化免疫细胞靶向肿瘤表面抗原,另一种是用工程化基因回路检测瘤内疾病特征。本综述最后对癌症免疫治疗中持续存在的挑战以及合成生物学可能为该领域带来的潜在突破进行了前瞻性展望。
Immunotherapy has shown robust efficacy in treating a broad spectrum of hematological and solid cancers. Despite the transformative impact of immunotherapy on cancer treatment, several outstanding challenges remain. These challenges include on-target off-tumor toxicity, systemic toxicity, and the complexity of achieving potent and sustainable therapeutic efficacy.
Synthetic biology has emerged as a promising approach to overcome these obstacles, offering innovative tools for engineering living cells with customized functions. This review provides an overview of the current landscape and future prospects of cancer immunotherapy, particularly emphasizing the role of synthetic biology in augmenting its specificity, controllability, and efficacy.
We delineate and discuss two principal synthetic biology strategies: those targeting tumor surface antigens with engineered immune cells and those detecting intratumoral disease signatures with engineered gene circuits. This review concludes with a forward-looking perspective on the enduring challenges in cancer immunotherapy and the potential breakthroughs that synthetic biology may contribute to the field.
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