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Image-guided radiotherapy platform using single nodule conditional lung cancer mouse models

机译:使用单个结节条件性肺癌小鼠模型的影像引导放疗平台

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摘要

Close resemblance of murine and human trials is essential to achieve the best predictive value of animal-based translational cancer research. Kras-driven genetically engineered mouse models of non-small cell lung cancer faithfully predict the response of human lung cancers to systemic chemotherapy. Due to development of multifocal disease, however, these models have not been usable in studies of outcomes following focal radiotherapy (RT). We report the development of a preclinical platform to deliver state-of-the-art image-guided RT in these models. Presence of a single tumour as usually diagnosed in patients is modelled by confined injection of adenoviral Cre recombinase. Furthermore, three-dimensional conformal planning and state-of-the-art image-guided dose delivery are performed as in humans. We evaluate treatment efficacies of two different radiation regimens and find that Kras-driven tumours can temporarily be stabilized upon RT, whereas additional loss of either Lkb1 or p53 renders these lesions less responsive to RT.
机译:鼠类和人体试验的相似之处对于实现基于动物的转化癌症研究的最佳预测价值至关重要。非小细胞肺癌的Kras驱动的基因工程小鼠模型如实地预测了人类肺癌对全身化疗的反应。然而,由于多灶性疾病的发展,这些模型在局灶放疗(RT)后的结局研究中并未使用。我们报告了临床前平台的开发,以在这些模型中提供最新的图像引导RT。通常通过有限注射腺病毒Cre重组酶来模拟通常在患者中诊断出的单个肿瘤。此外,与人类一样,可以进行三维共形规划和最新的图像引导剂量输送。我们评估了两种不同放疗方案的治疗效果,发现Kras驱动的肿瘤在RT时可以暂时稳定,而Lkb1或p53的额外丢失会使这些病变对RT的反应性降低。

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