首页> 外文期刊>International Journal of Molecular Sciences >Interplay between Cytokine Circuitry and Transcriptional Regulation Shaping Helper T Cell Pathogenicity and Plasticity in Inflammatory Bowel Disease
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Interplay between Cytokine Circuitry and Transcriptional Regulation Shaping Helper T Cell Pathogenicity and Plasticity in Inflammatory Bowel Disease

机译:细胞因子电路与转录调节在炎性肠病中的细胞因子电路和转录调节症的相互作用

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摘要

Inflammatory bowel disease (IBD) is a chronic disorder manifested as Crohn’s disease (CD) and ulcerative colitis (UC) characterized by intestinal inflammation and involves a dysregulated immune response against commensal microbiota through the activation of CD4 T helper cells. T helper cell differentiation to effector or regulatory phenotypes is controlled by cytokine networks and transcriptional regulators. Distinct polarized T helper cells are able to alter their phenotypes to adapt to diverse and fluctuating physiological environments. T helper cells exhibit intrinsic instability and flexibility to express cytokines of other lineages or transdifferentiate from one T helper cell type to another in response to various perturbations from physiological cytokine milieu as a means of promoting local immunity in response to injury or ensure tissue homeostasis. Furthermore, functional plasticity and diversity of T helper cells are associated with pathogenicity and are critical for immune homeostasis and prevention of autoimmunity. In this review, we provide deeper insights into the combinatorial extrinsic and intrinsic signals that control plasticity and transdifferentiation of T helper cells and also highlight the potential of exploiting the genetic reprogramming plasticity of T helper cells in the treatment of IBD.
机译:炎症性肠病(IBD)是一种慢性疾病,表现为CROHN疾病(CD)和溃疡性结肠炎(UC),其特征在于肠炎症,并且通过激活CD4 T辅助细胞涉及对非生物的失调免疫应答。 T辅助细胞分化对效应或调节表型的分化由细胞因子网络和转录调节剂控制。明显的偏振辅助细胞能够改变其表型,以适应不同和波动的生理环境。 T辅助细胞表现出特性不稳定性和灵活性,以表达其他谱系的细胞因子或从一个T辅助细胞类型转移到另一个辅助细胞类型,以应对来自生理细胞因子Milieu的各种扰动,作为促进局部免疫的手段,以促进损伤或确保组织稳态。此外,T辅助细胞的功能可塑性和多样性与致病性有关,对免疫稳态和预防自身免疫来说是关键的。在本综述中,我们对组合的外在和内在信号提供更深入的见解,可控制T辅助细胞的可塑性和转化细胞,并突出了利用T辅助细胞治疗IBD的遗传重编程可塑性的可能性。

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