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Quantitative microscopy in murine models of lung inflammation

机译:小鼠肺部炎症模型的定量显微镜检查

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Objective: To develop a quantitative means to measure lung inflammation using the murine models of chronic asthma and cystic fibrosis (CF). Study Design: Translational-based medicine often utilizes animal models to study new and innovative therapeutics. In asthma and CF, the animal models focus on airway inflammation and remodeling. The asthma model is based on hypersensitivity-induced airway disease, whereas the CF model focuses on the inflammatory response to infection with Pseudomonas aeruginosa. Qualitative measures of inflammation and lung pathophysiology introduce significant variability and difficulty in interpreting interventional outcomes. The highly sensitive and reproducible quantitative computational program interfaced with Image Pro Microscopy to monitor changes in lung inflammation and lung pathophysiology. The software interfaces with image microscopy and automates the lung section review process. Results: Results from this program recapitulated data obtained by manual point counting of inflammation, bronchoalveolar lavage differential, and histology. The data show a low coefficient of variation and high reproducibility between slides and sections. Conclusion: Utilization of this new microscopy program will enhance the quantitative means of establishing changes in lung structure and inflammation as a measure of therapeutic intervention with the ability of refining interpretation of in vivo models potentially shortcircuiting translation into the clinical setting.
机译:目的:建立一种使用慢性哮喘和囊性纤维化(CF)鼠模型测量肺部炎症的定量方法。研究设计:基于转化的医学通常利用动物模型来研究新的和创新的疗法。在哮喘和CF中,动物模型的重点是气道炎症和重塑。哮喘模型基于超敏反应诱发的气道疾病,而CF模型则侧重于对铜绿假单胞菌感染的炎症反应。炎症和肺部病理生理学的定性指标会导致明显的变异性和解释干预结果的难度。高灵敏度和可重现的定量计算程序与Image Pro Microscopy接口,以监视肺部炎症和肺部病理生理学的变化。该软件可与图像显微镜接口并自动执行肺部检查过程。结果:该程序的结果概括了通过手动计数炎症,支气管肺泡灌洗液差异和组织学获得的数据。数据显示载玻片和切片之间的变异系数低,重现性高。结论:利用这一新的显微镜程序将增强建立肺部结构和炎症变化的定量手段,以此作为治疗干预措施,并具有完善的体内模型解释能力,可能会缩短转化为临床环境的时间。

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