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Briefs on insulin and innate immune response

机译:胰岛素和先天性免疫应答简介

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Insulin is a pivotal regulator of glucose metabolism and exerts an important anabolic function throughout the body. Insulin commands the glucose uptake by the cells and might control the processes in which there is need for energy such as mitogenesis and gene transcription. In certain conditions, diabetes mellitus for example, when insulin is diminished, the homeostasis of many tissues and organs are broken what can lead to a higher mortality due to an enhanced susceptibility to infections. This vulnerability to infections can partially be explained by a change in response to inflammation. In fact, diabetic animals and patients show a deficient inflammatory response. Many animal models have shown that neutrophils chemotaxis and recruitment are dampened and macrophages from diabetic patients have low phagocytic and microbicidal activities. In most cases, once insulin therapy is introduced, clinical symptoms and signs can be reverted. In addition, there are a number of studies trying to demystify pathways under insulin command. Researchers are also trying to understand how insulin is able to keep inflammatory response under control, restores innate immune cells ability to fight against pathogens and harmlessly activates adaptive immunity response. This review provides an overview on how inflammatory response is driven in the absence of insulin in diabetes and discusses recent findings on the influence of insulin on innate imune response. At the end, some signaling pathways are also highlighted and important enzymes and proteins that control DNA transcription are presented.
机译:胰岛素是葡萄糖代谢的关键调节剂,在整个人体中发挥重要的合成代谢功能。胰岛素命令细胞吸收葡萄糖,并可能控制需要能量的过程,例如有丝分裂和基因转录。在某些情况下,例如糖尿病,当胰岛素减少时,许多组织和器官的体内平衡被破坏,由于对感染的敏感性增加,这可能导致更高的死亡率。这种对感染的脆弱性可以部分通过对炎症反应的变化来解释。实际上,糖尿病动物和患者表现出不足的炎症反应。许多动物模型表明,嗜中性粒细胞的趋化性和募集受到抑制,糖尿病患者的巨噬细胞吞噬和杀微生物活性较低。在大多数情况下,一旦采用胰岛素治疗,就可以恢复临床症状和体征。另外,有许多研究试图使胰岛素控制下的途径神秘化。研究人员还试图了解胰岛素如何能够控制炎症反应,恢复先天免疫细胞抵抗病原体的能力以及无害地激活适应性免疫反应。这篇综述概述了在没有胰岛素的糖尿病患者中炎症反应如何被驱动,并讨论了胰岛素对先天免疫反应的影响的最新发现。最后,还突出了一些信号传导途径,并介绍了控制DNA转录的重要酶和蛋白质。

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