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Miniaturized handheld confocal microscopy identifies focal brain invasion in a mouse model of aggressive meningioma

机译:小型手持共聚焦显微镜可在侵袭性脑膜瘤的小鼠模型中识别局灶性脑浸润

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摘要

Invasion of the brain parenchyma by a meningioma classified by histological criteria as World Health Organization (WHO) grade I meningioma, implies that the tumor has greater likelihood of recurrence and a biological behavior similar to the more aggressive WHO grade II meningiomas. It is therefore important to detect microscopic foci of brain invasion during surgery in order to maximize the resection and/or adapt imaging follow-up. In this study, we tested the sensitivity of two handheld confocal imaging devices to detect foci of brain invasion in two types of meningioma mouse models: in a genetically engineered mouse model and in a syngeneic xenograft model. Confocal imaging offered precise images of meningothelial and fibroblastic mouse meningiomas as well as malignant meningiomas, which corresponded exactly to the pathological findings. Imaging showed a sharp definition of the brain-tumor interface and enabled identification of embedded nerves and vessels. Importantly, in both mouse models used in this study, extension of tumor along Virchow-Robin spaces into adjacent brain was detected by imaging. In conclusion, this novel technique, following validation in clinical trials, may open new possibilities for use in operating rooms to influence both decision making during the surgery and planning for additional treatments.
机译:由组织学标准分类为世界卫生组织(WHO)I级脑膜瘤的脑膜瘤对脑实质的侵袭,意味着该肿瘤具有更高的复发可能性,并且生物学行为与更具侵略性的WHO II级脑膜瘤相似。因此,重要的是在手术期间检测脑部侵袭的微观病灶,以最大程度地切除和/或适应影像学随访。在这项研究中,我们测试了两种手持式共聚焦成像设备在两种类型的脑膜瘤小鼠模型中检测脑部侵袭的敏感性:在基因工程小鼠模型和同种异种移植模型中。共聚焦成像提供了脑膜内皮和成纤维细胞小鼠脑膜瘤以及恶性脑膜瘤的精确影像,这与病理结果完全吻合。影像学显示了脑肿瘤界面的清晰定义,并能够识别出嵌入的神经和血管。重要的是,在这项研究中使用的两种小鼠模型中,都通过成像检测到肿瘤沿着Virchow-Robin空间延伸到相邻的大脑。总而言之,这项新颖的技术经过临床试验的验证,可能为手术室使用提供新的可能性,从而影响手术过程中的决策制定和其他治疗方案的规划。

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