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Applications of systems biology in cancer immunotherapy: From target discovery to biomarkers of clinical outcome

机译:系统生物学在癌症免疫治疗中的应用:从靶标发现到临床结果的生物标志物

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Immunotherapies are coming to the forefront as a treatment paradigm in cancer with multiple US FDA approvals in recent years and a better understanding of their therapeutic mode of action. The control of tumor growth by the immune system is orchestrated by a complex array of cellular interactions and molecular pathways, both in the immune cells as well as the tumor. Although research over the past three decades has elucidated many aspects of tumor immunosurveillance, given the inherent complexity of the immune cell phenotypes and function, high-throughput molecular profiling ('omics') approaches have now become essential to support the discovery and development of new therapies. Technologies, such as DNA and protein microarrays, deep sequencing, mass spectrometry, as well as the computational methods for their analyses, are advancing the contributions of systems biology towards the development and mechanistic understanding of cancer immunotherapies. In this review, the authors illustrate this through some recently reported studies.
机译:近年来,免疫疗法已成为癌症的治疗范例,获得了美国FDA的多项批准,并且对其治疗作用方式有了更深入的了解。免疫系统对肿瘤生长的控制是由免疫细胞和肿瘤中复杂的细胞相互作用和分子途径组成的。尽管过去三十年的研究阐明了肿瘤免疫监视的许多方面,但鉴于免疫细胞表型和功能的内在复杂性,高通量分子谱分析(“组学”)方法现在对于支持新的发现和开发已变得至关重要。疗法。 DNA和蛋白质微阵列,深度测序,质谱及其分析的计算方法等技术,正在促进系统生物学对癌症免疫疗法的发展和机理理解的贡献。在这篇评论中,作者通过一些最近报道的研究来说明这一点。

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