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慢性自发性荨麻疹皮肤疹发生、发展和消退阶段的病理生理机制。

Pathophysiological Mechanisms of the Onset, Development, and Disappearance Phases of Skin Eruptions in Chronic Spontaneous Urticaria.

机构信息

Institute for the Advanced Study of Human Biology(ASHBi), Kyoto University Institute for Advanced Study, Kyoto University, Kyoto, 606-8315, Japan.

Department of Mathematical Medicine, Graduate School of Medicine, Kyoto University, Kyoto, 606-8315, Japan.

出版信息

Bull Math Biol. 2024 Nov 14;87(1):1. doi: 10.1007/s11538-024-01380-3.

Abstract

Chronic spontaneous urticaria (CSU) is a typical example of an intractable skin disease with no clear cause and significantly affects daily life of patients. Because CSU is a human-specific disease and lacks proper animal model, there are many questions regarding its pathophysiological dynamics. On the other hand, most clinical symptoms of urticaria are notable as dynamic appearance of skin eruptions called wheals. In this study, we explored dynamics of wheal by dividing it into three phases using a mathematical model: onset, development, and disappearance. Our results suggest that CSU onset is critically associated with endovascular dynamics triggered by basophils positive feedback. In contrast, the development phase is regulated by mast cell dynamics via vascular gap formation. We also suggest a disappearance mechanism of skin eruptions in CSU through an extension of the mathematical model using qualitative and quantitative comparisons of wheal expansion data of real patients with urticaria. Our results suggest that the wheal dynamics of the three phases and CSU development are hierarchically related to endovascular and extravascular pathophysiological networks.

摘要

慢性自发性荨麻疹(CSU)是一种典型的病因不明的难治性皮肤病,严重影响患者的日常生活。由于 CSU 是一种人类特有的疾病,缺乏合适的动物模型,因此其病理生理学动态存在许多问题。另一方面,荨麻疹的大多数临床症状都表现为皮肤疹的动态出现,称为风团。在这项研究中,我们使用数学模型将风团分为三个阶段来探索其动态:发作、发展和消失。我们的结果表明,CSU 的发作与嗜碱性粒细胞正反馈触发的血管内动力学密切相关。相比之下,发展阶段是通过血管间隙形成来调节肥大细胞动力学的。我们还通过对真实患者的荨麻疹风团扩张数据进行定性和定量比较,利用数学模型的扩展,提出了 CSU 皮肤疹消失的机制。我们的结果表明,三个阶段的风团动态和 CSU 的发展与血管内和血管外病理生理网络呈层次相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b76f/11564288/636f2cf14ef8/11538_2024_1380_Fig1_HTML.jpg

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