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Nanorobotic Investigation Identifies Novel Visual Structural and Functional Correlates of Autoimmune Pathology in a Blistering Skin Disease Model

机译:纳米机器人研究确定了起泡性皮肤疾病模型中自身免疫病理的新型视觉结构和功能相关性

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摘要

There remain major gaps in our knowledge regarding the detailed mechanisms by which autoantibodies mediate damage at the tissue level. We have undertaken novel strategies at the interface of engineering and clinical medicine to integrate nanoscale visual and structural data using nanorobotic atomic force microscopy with cell functional analyses to reveal previously unattainable details of autoimmune processes in real-time. Pemphigus vulgaris is a life-threatening autoimmune blistering skin condition in which there is disruption of desmosomal cell-cell adhesion structures that are associated with the presence of antibodies directed against specific epithelial proteins including Desmoglein (Dsg) 3. We demonstrate that pathogenic (blister-forming) anti-Dsg3 antibodies, distinct from non-pathogenic (non-blister forming) anti-Dsg3 antibodies, alter the structural and functional properties of keratinocytes in two sequential steps - an initial loss of cell adhesion and a later induction of apoptosis-related signaling pathways, but not full apoptotic cell death. We propose a “2-Hit” model for autoimmune disruption associated with skin-specific pathogenic autoantibodies. These data provide unprecedented details of autoimmune processes at the tissue level and offer a novel conceptual framework for understanding the action of self-reactive antibodies.
机译:关于自身抗体介导组织水平损伤的详细机制,我们的知识仍存在重大空白。我们已经在工程和临床医学的界面上采取了新的策略,使用纳米机器人原子力显微镜和细胞功能分析来整合纳米级视觉和结构数据,以实时揭示以前无法获得的自身免疫过程细节。寻常性天疱疮是一种威胁生命的自身免疫性水疱性皮肤病,其中的桥粒细胞-细胞粘附结构受到破坏,而桥粒细胞-细胞粘附结构与针对特定上皮蛋白(包括桥粒糖蛋白(Dsgglein)(Dsg))的抗体相关。3。与非致病性(非水疱形成)抗Dsg3抗体不同,抗Dsg3抗体在两个连续的步骤中改变了角质形成细胞的结构和功能特性,即细胞粘附力的初始丧失和随后与凋亡相关的诱导信号通路,但不完全凋亡细胞死亡。我们提出与皮肤特异性致病性自身抗体相关的自身免疫破坏的“ 2-Hit”模型。这些数据提供了组织水平上自身免疫过程的前所未有的细节,并为理解自我反应抗体的作用提供了新颖的概念框架。

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