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首页> 外文期刊>Cutaneous and ocular toxicology >Development of a mouse model for sulfur mustard-induced ocular injury and long-term clinical analysis of injury progression
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Development of a mouse model for sulfur mustard-induced ocular injury and long-term clinical analysis of injury progression

机译:硫芥子碱引起的眼损伤的小鼠模型的开发和损伤进展的长期临床分析

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摘要

Context: Sulfur mustard (SM) is a highly reactive vesicating agent that can induce severe ocular injury. The clinical features of this injury have been well documented, but the molecular basis for this pathology is not well understood. Identification and validation of specific targets is necessary in the effort to develop effective therapeutics for this injury. Currently used rabbit models are not well suited for many molecular studies because the necessary reagents are not widely available. However, these reagents are widely available for the mouse model. Objective: Our objective is to develop a mouse model of SM-induced ocular injury suitable for the study of the molecular mechanisms of injury and the evaluation of therapeutics. Materials and Methods: Ocular exposure to sulfur mustard vapor was accomplished by using a vapor cup method. Dose response studies were conducted in female BALB/c mice. An exposure dose which produced moderate injury was selected for further study as moderate injury was determined to be amenable to studying the beneficial effects of potential therapeutics. Histopathology and inflammatory markers were evaluated for up to 28 days after exposure, while clinical injury progression was evaluated for 1 year post-exposure. Results: A biphasic ocular injury was observed in mice exposed to SM. Acute phase SM ocular injury in mice was characterized by significant corneal epithelium loss, corneal edema, limbal engorgement, and ocular inflammation. This was followed by a brief recovery phase. A delayed injury phase then ensued in the following weeks to months and was characterized by keratitis, stromal edema, infiltrates, neovascularization, and eventual corneal scarring. Discussion and Conclusions: SM-induced ocular injury in mice is consistent with observations of SM-induced ocular injury in humans and rabbit models. However, in the mouse model, the SM ocular injury, a more rapid onset of the delayed injury phase was observed. We have developed an animal model of SM injury that is suitable for studies to elucidate molecular mechanisms of injury and identify potential therapeutic targets.
机译:背景:芥末(SM)是一种高反应性的囊泡剂,可引起严重的眼外伤。这种损伤的临床特征已经有充分的文献记载,但是对于这种病理的分子基础还没有很好的了解。为了开发出针对这种损伤的有效疗法,必须对特定目标进行鉴定和验证。当前使用的兔模型不适用于许多分子研究,因为必需的试剂尚未广泛获得。但是,这些试剂可广泛用于小鼠模型。目的:我们的目的是建立一种SM诱发的眼损伤的小鼠模型,该模型适用于研究损伤的分子机制和评估治疗方法。材料和方法:通过使用蒸气杯法使眼睛暴露于硫芥子气中。在雌性BALB / c小鼠中进行剂量反应研究。选择产生中度伤害的暴露剂量进行进一步研究,因为确定中度伤害适合研究潜在疗法的有益作用。暴露后长达28天评估组织病理学和炎症标志物,暴露后1年评估临床损伤进展。结果:在暴露于SM的小鼠中观察到双相眼损伤。小鼠急性期SM眼部损伤的特征是明显的角膜上皮丢失,角膜浮肿,角膜缘充血和眼部炎症。接下来是简短的恢复阶段。然后在接下来的几周到几个月内出现了延迟的损伤阶段,其特征在于角膜炎,基质水肿,浸润,新生血管形成和最终的角膜瘢痕形成。讨论与结论:小鼠SM引起的眼损伤与人和兔模型中SM引起的眼损伤的观察结果一致。但是,在小鼠模型SM眼损伤中,观察到延迟损伤阶段的起效更快。我们已经开发了一种SM损伤的动物模型,适用于阐明损伤的分子机制并确定潜在治疗靶标的研究。

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