首页> 外文会议>Conference on multiphoton microscopy in the biomedical sciences >Sulfur mustard disrupts human α_3β_1-integrin receptors in concert with α_6β_4-integrin receptors and collapse of the keratin K5/K14 cytoskeleton
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Sulfur mustard disrupts human α_3β_1-integrin receptors in concert with α_6β_4-integrin receptors and collapse of the keratin K5/K14 cytoskeleton

机译:硫磺芥末与α_6β-整联蛋白受体中的音乐会扰乱人α_3β_1-整联蛋白受体,并倒闭角蛋白K5 / K14细胞骨架

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Sulfur mustard (SM; bis(2-chioroethyl) sulfide) is a chemical warfare agent that produces persistent, incapacitating blisters of the skin. The lesions inducing vesication remain elusive, and there is no completely effective treatment. Using multiphoton microscopy and immunofluorescent staining, we found that exposing human epidermal keratinocytes (HEK) and intact epidermis to SM (400 μM for 5 min) caused progressive collapse of the keratin (K5/K14) cytoskeleton and depletion of α_6β_4 integrins. We now report that SM causes concomitant disruption and collapse of the basal cell's α_3β_1-Yintegrin receptors. At 1 h postexposure, images of Alexa488-conjugated HEK/α_3β_1 integrins showed almost complete withdrawal and disappearance of retraction fibers and a progressive loss of polarized mobility. With stereo imaging, in vitro expression of this SM effect was characterized by collapse and abutment of adjacent cell membranes. At 2 h postexposure, there was an average 13% dorso-ventral collapse of HEK membranes that paralleled progressive collapse of the K5/K14 cytoskeleton.α_3β_1 integrin, like α_6β_4 integrin, is a regulator of cytoskeletal assembly, a receptor for laminin 5 and a mediator of HEK attachment to the basement membrane. Our images indicate that SM disrupts these receptors. We suggest that the progressive disruption destabilizes and potentiates blistering of the epidermal-dermal junction.
机译:硫磺芥末(SM;双(2-甲基)硫化物)是一种产生持续的,能够丧失的皮肤的化学战层。诱导酵母的病变仍然难以捉摸,并且没有完全有效的治疗方法。使用多选显微镜和免疫荧光染色,我们发现将人体表皮角蛋白细胞(HEK)暴露于SM(400μm5分钟)引起角蛋白(K5 / K14)细胞骨架和α_6β-4整联蛋白的逐渐塌陷。我们现在举报SM会导致基底细胞α_3β_1-YINTegrin受体的伴随中断和塌陷。在1小时后,Alexa488缀合的HEK /α_3β_1整合蛋白的图像几乎完全取消和消失的缩回纤维和渐进式流动性的渐进丧失。利用立体成像,通过塌陷和邻接的相邻细胞膜的体外表达。在2小时后,平均平均13%的HEK膜坍塌的HEK膜,即K5 / K14细胞骨架的并联逐渐塌陷。α_3β_1整合蛋白,如α_6β_4整联蛋白,是细胞骨骼组件的调节剂,是层塞5和A的受体HEK附着在地下室膜的介体。我们的图像表明SM扰乱了这些受体。我们建议逐渐破坏破坏并增强了表皮皮肤交界的起泡。

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