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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >The macrophage checkpoint CD47: SIRP alpha for recognition of 'self' cells: from clinical trials of blocking antibodies to mechanobiological fundamentals
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The macrophage checkpoint CD47: SIRP alpha for recognition of 'self' cells: from clinical trials of blocking antibodies to mechanobiological fundamentals

机译:巨噬细胞检查点CD47:SiRP Alpha用于识别“自我”细胞:从阻断抗体对机动机动学基础的临床试验

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摘要

Immunotherapies against some solid tumour types have recently shown unprecedented, durable cures in the clinic, and the most successful thus far involves blocking inhibitory receptor 'checkpoints' on T cells. A similar approach with macrophages is emerging by blocking the ubiquitously expressed 'marker of self' CD47 from binding the inhibitory receptor SIRP alpha on macrophages. Here, we first summarize available information on the safety and efficacy of CD47 blockade, which raises some safety concerns with the clearance of 'self' cells but also suggests some success against haematological (liquid) and solid cancers. Checkpoint blockade generally benefits from parallel activation of the immune cell, which can occur for macrophages in multiple ways, such as by combination with a second, tumour-opsonizing antibody and perhaps also via rigidity sensing. Cytoskeletal forces in phagocytosis and inhibitory 'self'-signalling are thus reviewed together with macrophage mechanosensing, which extends to regulating levels of SIRPa and the nuclear protein lamin A, which affects phenotype and cell trafficking. Considerations of such physical factors in cancer and the immune system can inform the design of new immunotherapies and help to refine existing therapies to improve safety and efficacy.
机译:抵抗某些实体肿瘤类型的免疫疗法最近在诊所中显示出前所未有的,耐用的治疗,因此最重要的是涉及阻断T细胞上的抑制受体的检查点'。通过阻断普遍表达的“CD47的”自身“CD47标记从结合巨噬细胞结合巨噬细胞来突出类似的方法。在这里,我们首先总结了有关CD47封锁的安全性和功效的可用信息,这对“自我”细胞的许可产生了一些安全问题,但也表明对血液学(液体)和固体癌症的成功。检查点封闭通常来自免疫细胞的并行激活,这可能在多种方式中发生巨噬细胞,例如通过与第二,肿瘤型抗体的组合和也可能通过刚性感测。因此,与巨噬细胞机械沉积物一起审查吞噬作用和抑制性“的细胞骨骼力,其延伸至调节SiRPA和核蛋白Lamina的调节水平,这影响表型和细胞贩运。癌症和免疫系统这种物理因素的考虑可以向设计设计新免疫治疗,并有助于改善现有的疗法以提高安全性和功效。

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