epidermal inflammation

  • 文章类型: Editorial
    《病理学杂志》2022年年度评论,病理学的最新进展,包含15篇关于病理学中日益重要的研究领域的特邀评论。今年,这些文章包括那些专注于数字病理学的文章,采用现代成像技术和软件来改进诊断和研究应用,以研究人类疾病。该主题领域包括通过其诱导的形态变化来识别特定遗传改变的能力,以及将数字和计算病理学与组学技术集成。本期的其他评论包括对癌症突变模式(突变特征)的最新评估,谱系追踪在人体组织中的应用,和单细胞测序技术来揭示肿瘤进化和肿瘤异质性。组织微环境包含在专门处理表皮分化的蛋白水解控制的综述中,癌症相关成纤维细胞,场抵消,和决定肿瘤免疫的宿主因子。本期中包含的所有评论都是受邀专家的工作,这些专家被选中讨论各自领域的最新进展,并且可以在线免费获得(https://onlinelibrary。wiley.com/journal/10969896)。©2022英国和爱尔兰病理学会。由JohnWiley&Sons出版,Ltd.
    The 2022 Annual Review Issue of The Journal of Pathology, Recent Advances in Pathology, contains 15 invited reviews on research areas of growing importance in pathology. This year, the articles include those that focus on digital pathology, employing modern imaging techniques and software to enable improved diagnostic and research applications to study human diseases. This subject area includes the ability to identify specific genetic alterations through the morphological changes they induce, as well as integrating digital and computational pathology with \'omics technologies. Other reviews in this issue include an updated evaluation of mutational patterns (mutation signatures) in cancer, the applications of lineage tracing in human tissues, and single cell sequencing technologies to uncover tumour evolution and tumour heterogeneity. The tissue microenvironment is covered in reviews specifically dealing with proteolytic control of epidermal differentiation, cancer-associated fibroblasts, field cancerisation, and host factors that determine tumour immunity. All of the reviews contained in this issue are the work of invited experts selected to discuss the considerable recent progress in their respective fields and are freely available online (https://onlinelibrary.wiley.com/journal/10969896). © 2022 The Pathological Society of Great Britain and Ireland. Published by John Wiley & Sons, Ltd.
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  • 文章类型: Journal Article
    表皮是皮肤的外层上皮,形成体内平衡不可或缺的物理屏障。表皮蛋白水解,主要但不排他地由激肽释放酶相关肽酶(KLKs)执行,严格调节以确保维持生理皮肤更新和完整的皮肤屏障。表皮蛋白水解网络的扰动与各种遗传背景的各种罕见和常见的皮肤病理有关。单基因人类皮肤病的最新研究和新开发的动物模型揭示了表皮生理学和疾病状态中蛋白水解途径调节的新机制。这些新数据挑战了一些公认的观点,例如蛋白蛋白酶在表皮脱皮中的作用,结果被限制在老鼠的皮肤上。面对最近的发现,也应该重新考虑PAR2信号在皮肤炎症中的重要性。累计,最近的研究需要对人类皮肤中的蛋白水解和信号通路进行复杂的重新定义。我们详细阐述了表皮蛋白水解是如何在多个水平上精细调节的,以迄今为止尚未考虑的空间方式,其中特异性蛋白酶局限于不同的表皮亚层。感兴趣的,通过空间固定内源性蛋白酶抑制剂,转谷氨酰胺酶已成为表皮蛋白水解和脱皮的调节剂,构成以前不被认可的调节因素。此外,新的证据表明,蛋白水解和脂质代谢之间存在联系。通过对既定概念和最近发现的综合,我们提供了最新的关键评估和合成的当前知识和皮肤中蛋白水解调节和信号通路的扩展复杂性。©2022英国和爱尔兰病理学会。
    The epidermis is the outer stratified epithelium of the skin, forming the physical barrier that is indispensable for homeostasis. Epidermal proteolysis, mainly but not exclusively executed by kallikrein-related peptidases (KLKs), is tightly regulated to ensure maintenance of physiological skin renewal and an intact skin barrier. Perturbation of epidermal proteolytic networks is implicated in a wide array of rare and common skin pathologies of diverse genetic backgrounds. Recent studies of monogenic human skin diseases and newly developed animal models have revealed new mechanisms of regulation of proteolytic pathways in epidermal physiology and in disease states. These new data have challenged some accepted views, for example the role of matriptase in epidermal desquamation, which turned out to be restricted to mouse skin. The significance of PAR2 signaling in skin inflammation should also be reconsidered in the face of recent findings. Cumulatively, recent studies necessitate a sophisticated redefinition of the proteolytic and signaling pathways that operate in human skin. We elaborate how epidermal proteolysis is finely regulated at multiple levels, and in a spatial manner that has not been taken into consideration so far, in which specific proteases are confined to distinct epidermal sublayers. Of interest, transglutaminases have emerged as regulators of epidermal proteolysis and desquamation by spatially fixing endogenous protease inhibitors, constituting regulatory factors that were not recognized before. Furthermore, new evidence suggests a link between proteolysis and lipid metabolism. By synthesis of established notions and recent discoveries, we provide an up-to-date critical evaluation and synthesis of current knowledge and the extended complexity of proteolysis regulation and signaling pathways in skin. © 2022 The Pathological Society of Great Britain and Ireland.
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  • 文章类型: Journal Article
    Netherton syndrome (NS) is a severe ichthyosis caused by inactivating mutations in the SPINK5 gene encoding the serine protease inhibitor LEKTI. Spink5-/- mice recapitulate NS and die perinatally from extensive dehydration as a result of a severe defect of the epidermal barrier. We showed that deletion of Klk5 in Spink5-/- rescues neonatal lethality (Furio et al., 2015). However, Spink5-/-Klk5-/- mice developed skin shedding and inflammation during the first week from birth and the majority (70%) succumbed on P7. The remaining mice lived short (i.e. mean survival was 5 months) indicating alternative inflammatory pathways. Since cathelicidin is increased in Spink5-/- epidermis, we investigated whether it could be implicated in NS pathology. Ablation of Camp in Spink5-/- suppressed epidermal inflammation and restored abnormal epidermal differentiation, nevertheless, it failed to inhibit overdesquamation and Spink5-/-Camp-/- succumbed perinatally due to skin barrier defect, similarly to Spink5-/-. Joint invalidation of Klk5 and Camp significantly extended survival of Spink5-/-Klk5-/-Camp-/- mice. We provide evidence that cathelicidin is implicated in NS-associated skin inflammation in vivo. Therefore, marketed products that are known to reduce cathelicidin expression could be repurposed for the management of NS.
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  • 文章类型: Journal Article
    Epidermal inflammation is caused by various bacterial infectious diseases that impair the skin health. Feruloylserotonin (FS) belongs to the hydroxycinnamic acid amides of serotonin, which mainly exists in safflower seeds and has been proven to have anti-inflammatory and antioxidant activities. Human epidermis mainly comprises keratinocytes whose inflammation causes skin problems. This study investigated the protective effects of FS on the keratinocyte with lipopolysaccharides (LPS)-induced human HaCaT cells and elucidated its underlying mechanisms of action. The mechanism was investigated by analyzing cell viability, PGE2 levels, cell apoptosis, nuclear factor erythroid 2-related factor 2 (Nrf2) translocation, and TLR4/NF-κB pathway. The anti-inflammatory effects of FS were assessed by inhibiting the inflammation via down-regulating the TLR4/NF-κB pathway. Additionally, FS promoted Nrf2 translocation to the nucleus, indicating that FS showed anti-oxidative activities. Furthermore, the antioxidative and anti-inflammatory effects of FS were found to benefit each other, but were independent. Thus, FS can be used as a component to manage epidermal inflammation due to its anti-inflammatory and anti-oxidative properties.
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  • 文章类型: Journal Article
    BACKGROUND: Netherton syndrome (NS) is a rare but severe type of ichthyosis characterized by atopy, allergies, and potentially lethal skin overdesquamation associated with highly elevated proteolytic activities in LEKTI-deficient epidermis. NS symptoms are recapitulated in Spink5-/- mouse where the gene encoding Lekti has been invalidated. Spink5-/- mice die within 5h from birth due to their severe skin barrier defect leading to dehydration. Spink5-/- mice also serve as a model for atopic dermatitis. The KLK6 protease is expressed by epidermal keratinocytes and shown in vitro to cleave desmosomal components.
    OBJECTIVE: To investigate in vivo whether KLK6 is implicated in epidermal overdesquamation and/or inflammation associated with NS.
    METHODS: The role of KLK6 was evaluated by generating Spink5-/-Klk6-/- double knockout mice. The phenotype was assessed by macroscopic observation, immunohistochemistry for differentiation markers, in situ zymography for proteolysis, and quantification of proinflammatory cytokines.
    RESULTS: Elimination of Klk6 in Spink5-/- remarkably suppresses the expression of Tslp, a major itching-inducing factor and driver of allergic reactions. Tnfα and the Th17 promoting cytokine Il-23 were also suppressed. Spink5-/-Klk6-/- mice display normalized keratinocyte differentiation, nevertheless, epidermal proteolytic activities and the associated overdesquamation were not ameliorated, and Spink5-/-Klk6-/- still died from a severe epidermal barrier defect as the Spink5-/-.
    CONCLUSIONS: Ablation of Klk6 largely suppresses epidermal inflammation but cannot rescue overdesquamation leading to the lethal NS phenotype. Nonetheless, our findings demonstrate for the first time that KLK6 is implicated in skin inflammation and may represent a novel druggable target for NS and other inflammatory conditions e.g. atopic dermatitis.
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