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Changing the energy of an immune response

机译:改变免疫反应的能量

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The breakdown of nutrients into the critical energy source ATP is the general purpose of cellular metabolism and is essential for sustaining life. Similarly, the immune system is composed of different cell subsets that are indispensable for defending the host against pathogens and disease. The interplay between metabolic pathways and immune cells leads to a plethora of different signaling pathways as well as cellular activities. The activation of T cells via glycolysis-mediated upregulation of surface markers, for example, is necessary for an appropriate effector response against an infection. However, tight regulation of immune cell metabolism is required for protecting the host and resuming homeostasis. An imbalance of immunological metabolic function and/or metabolic byproducts (reactive oxygen species) can oftentimes lead to diseases. In the case of cancer, overactive glucose metabolism can lead to hyperproliferation of cells and subsequent decreases in cytotoxic T cell activity, which attack and destroy the tumor. For this reason and many more, targeting metabolism in immune cells may be a novel therapeutic strategy for treatment of disease. The metabolic pathways of immune cells and the possibilities of immunometabolic therapies will be discussed.
机译:营养物质分解成关键能量源ATP是细胞代谢的普遍目的,对于维持生命至关重要。同样,免疫系统由不同的细胞亚组成,这些亚细胞对于防御宿主抵抗病原体和疾病必不可少。代谢途径与免疫细胞之间的相互作用导致大量不同的信号传导途径以及细胞活性。例如,通过糖酵解介导的表面标志物上调激活T细胞,对于针对感染的适当效应反应是必需的。但是,需要严格调节免疫细胞代谢,以保护宿主并恢复体内平衡。免疫代谢功能和/或代谢副产物(活性氧)的失衡通常会导致疾病。在癌症的情况下,过度的葡萄糖代谢会导致细胞过度增殖,进而降低细胞毒性T细胞活性,从而攻击并破坏肿瘤。由于这个原因以及更多原因,在免疫细胞中靶向代谢可能是治疗疾病的一种新颖的治疗策略。将讨论免疫细胞的代谢途径和免疫代谢疗法的可能性。

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