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Radiation‐induced oral mucositis hamster model using a linear accelerator enhances clinical relevance of preclinical studies for treatment strategy investigation

机译:使用线性加速器的辐射诱导的口腔粘膜驼峰模型增强了治疗战略调查的临床前研究的临床相关性

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摘要

Translational animal models for oral mucositis (OM) are necessary to simulate and assess the bioclinical effects and response in humans. These models should simulate high levels of radiation exposure that leads to oxidative stress and inflammatory‐initiated tissue changes. Hamster models have been extensively studied to observe pathological effects of radiation exposure and help in the development of effective treatments. To successfully evaluate the potential for treatment regimens with consistency and relevance, a radiation‐induced OM hamster model was developed using a clinical linear accelerator utilized by cancer patients daily. The dose exposure to the isolated, everted cheek pouch of a hamster, as well as the progression of injury, pro‐inflammatory marker, histological, and elasticity analyses of the buccal pouch were conducted to verify replicability and reproducibility of the injury model. The findings from this model demonstrated its ability to consistently induce injury and resolution over 28 days using an acute dose of 60 Gy. This model was developed to enhance clinical relevance when evaluating potential efficacious treatments and can now be utilized in efficacy studies to better evaluate developed therapeutics in a preclinical model that is easy to translate to clinical studies..
机译:口腔粘液炎(OM)的翻译动物模型是模拟和评估人类的杀生效和反应所必需的。这些模型应该模拟高水平的辐射曝光,导致氧化应激和炎症引发的组织变化。仓鼠模型已被广泛研究以观察辐射暴露的病理影响,并有助于发展有效治疗。为了成功评估治疗方案的潜力,具有一致性和相关性,使用癌症患者每天使用的临床线性加速器开发辐射诱导的OM仓鼠模型。进行了仓鼠的孤立,永特脸颊袋的剂量暴露,以及损伤的损伤,组织学和组织学和弹性分析,以验证损伤模型的可重量性和再现性。该模型的发现证明了其能够在28天内始终如一地诱发伤害和分辨率,急性剂量为60 Gy。该模型是在评估潜在的有效处理时提高临床相关性,现在可以在疗效研究中使用,以更好地评估易于转化为临床研究的临床前模型中的发达的治疗方法。

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