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开发一种体外功能测定法,预测健康口腔黏膜组织的放射相关毒性。

Development of an Ex Vivo Functional Assay for Prediction of Irradiation Related Toxicity in Healthy Oral Mucosa Tissue.

机构信息

Department of Molecular Genetics, Erasmus MC Cancer Institute, Dr. Molewaterplein 40, 3015 GD Rotterdam, The Netherlands.

Department of Radiotherapy, Erasmus MC Cancer Institute, 3015 GD Rotterdam, The Netherlands.

出版信息

Int J Mol Sci. 2024 Jun 28;25(13):7157. doi: 10.3390/ijms25137157.

Abstract

Radiotherapy in the head-and-neck area is one of the main curative treatment options. However, this comes at the cost of varying levels of normal tissue toxicity, affecting up to 80% of patients. Mucositis can cause pain, weight loss and treatment delays, leading to worse outcomes and a decreased quality of life. Therefore, there is an urgent need for an approach to predicting normal mucosal responses in patients prior to treatment. We here describe an assay to detect irradiation responses in healthy oral mucosa tissue. Mucosa specimens from the oral cavity were obtained after surgical resection, cut into thin slices, irradiated and cultured for three days. Seven samples were irradiated with X-ray, and three additional samples were irradiated with both X-ray and protons. Healthy oral mucosa tissue slices maintained normal morphology and viability for three days. We measured a dose-dependent response to X-ray irradiation and compared X-ray and proton irradiation in the same mucosa sample using standardized automated image analysis. Furthermore, increased levels of inflammation-inducing factors-major drivers of mucositis development-could be detected after irradiation. This model can be utilized for investigating mechanistic aspects of mucositis development and can be developed into an assay to predict radiation-induced toxicity in normal mucosa.

摘要

头颈部放射治疗是主要的治疗方法之一。然而,这会导致不同程度的正常组织毒性,影响高达 80%的患者。黏膜炎会导致疼痛、体重减轻和治疗延误,从而导致更差的结果和降低生活质量。因此,迫切需要在治疗前预测患者正常黏膜反应的方法。我们在这里描述了一种检测健康口腔黏膜组织辐射反应的检测方法。口腔黏膜标本取自手术切除后的口腔,切成薄片,进行照射并培养三天。7 个样本用 X 射线照射,另外 3 个样本同时用 X 射线和质子照射。健康的口腔黏膜组织薄片在三天内保持正常形态和活力。我们测量了 X 射线照射的剂量依赖性反应,并使用标准化的自动图像分析比较了相同黏膜样本中的 X 射线和质子照射。此外,照射后可以检测到诱导炎症因子的水平增加——这是黏膜炎发展的主要驱动因素。该模型可用于研究黏膜炎发展的机制方面,并可开发成预测正常黏膜辐射毒性的检测方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33ad/11241643/ab04d766c539/ijms-25-07157-g001.jpg

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