首页> 外文期刊>The Journal of Allergy and Clinical Immunology >Neurotrophins in allergic diseases: from neuronal growth factors to intercellular signaling molecules.
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Neurotrophins in allergic diseases: from neuronal growth factors to intercellular signaling molecules.

机译:过敏性疾病中的神经营养蛋白:从神经元生长因子到细胞间信号分子。

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摘要

Understanding the complex pathophysiology of allergic diseases has been a main challenge of clinical and experimental research for many years. It is well known that the allergic inflammation triggers neuronal dysfunction and structural changes in the diseased tissues such as the airways or the skin. Recent evidence has emerged that the inflammatory response is also controlled by resident tissue cells such as neurons and structural cells. Therefore, signaling molecules that mediate inflammatory interactions among immune, neuronal, and structural cells are becoming a focus of allergy research. Neurotrophins, a family of homologous growth factors initially discovered in the nervous system, display such bidirectional signaling. The expression of neurotrophins, such as nerve growth factor (NGF) and brain-derived neurotrophic factor (BDNF), is highly upregulated during allergic inflammation. Neurons, structural cells, and invading immune cells were now identified not only as sources but also as targets of neurotrophins within the inflamed tissue. In this review, we provide an actual overview of the role of neurotrophins in the pathobiology of allergic diseases. We discuss recent findings in human and animal studies such as the regulation of neurotrophin expression during allergic inflammation and the effect of neurotrophins on the development and magnitude of allergic reactions.
机译:多年以来,了解过敏性疾病的复杂病理生理一直是临床和实验研究的主要挑战。众所周知,过敏性炎症会触发神经组织的功能障碍和患病组织(如气道或皮肤)的结构变化。最近的证据表明,炎症反应也受常驻组织细胞如神经元和结构细胞控制。因此,介导免疫细胞,神经元细胞和结构细胞之间炎症相互作用的信号分子已成为过敏研究的重点。神经营养蛋白是最初在神经系统中发现的同源生长因子家族,显示出这种双向信号传导。在过敏性炎症过程中,神经营养蛋白的表达高度上调,例如神经生长因子(NGF)和脑源性神经营养因子(BDNF)。现在不仅将神经元,结构细胞和侵袭性免疫细胞鉴定为发炎组织内神经营养蛋白的来源,而且还将其作为靶标。在这篇综述中,我们提供了神经营养蛋白在变应性疾病病理生物学中的作用的实际概述。我们讨论了人类和动物研究的最新发现,例如过敏性炎症过程中神经营养蛋白的表达调控以及神经营养蛋白对过敏反应的发展和程度的影响。

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