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通过水交换动态对比增强磁共振成像对胶质瘤增殖活性进行时空映射

spatiotemporal mapping of proliferation activity in gliomas via water-exchange dynamic contrast-enhanced MRI.

作者信息

Bai Ruiliang, Jia Yinhang, Wang Bao, Wang Zejun, Han Guangxu, Liang Lijun, Chen Lin, Ming Yang, Zhu Guidong, Hsu Yi-Cheng, Zhao Peng, Zhang Yi, Liu Zhiqiang, Liu Chong, Li Zhaoqing, Liu Yingchao

机构信息

Interdisciplinary Institute of Neuroscience and Technology & Liangzhu Laboratory, Zhejiang University School of Medicine, Hangzhou, China.

Key Laboratory of Novel Targets and Drug Study for Neural Repair of Zhejiang Province, School of Medicine, Hangzhou City University, Hangzhou, China.

出版信息

Theranostics. 2025 Mar 24;15(10):4693-4707. doi: 10.7150/thno.108479. eCollection 2025.

Abstract

Proliferation activity mapping is crucial for the guidance of first biopsy and treatment evaluation of gliomas due to the highly heterogenous nature of glioma tumor. Here we propose and demonstrate an ease-of-use way of spatiotemporal mapping of proliferation activity by simply tracking transmembrane water dynamics with magnetic resonance imaging (MRI). Specifically, we demonstrated that proliferation activity can accelerate the transmembrane water transport in glioma cells. The transmembrane water-efflux rate ( ) measured by water-exchange dynamic contrast-enhanced (DCE) MRI. Immunofluorescence, immunohistochemistry, and immunocytochemistry staining were used to validate results obtained from the imaging studies. In glioma cell cultures, precisely followed the dynamic changes of proliferation activity in growth cycles and response to temozolomide (TMZ) treatment. In both animal glioma model and human glioma, linearly and strongly correlated with the spatial heterogeneity of intra-tumoral proliferation activity. More importantly, proliferation activity predicted by the single MRI parameter is much more accurate than those predicted by state-of-the-art methods using multimodal standard MRIs and advanced machine learning. Upregulated aquaporin 4 (AQP4) expression were observed in most proliferating glioma cells and the knockout of AQP4 could largely slow down proliferation activity, suggesting AQP4 is the potential molecule connecting MRI- with proliferation activity. : This study provides an ease-of-use, accurate, and non-invasive imaging method for the spatiotemporal monitoring of proliferation activity in glioma.

摘要

由于胶质瘤肿瘤具有高度异质性,增殖活性图谱对于胶质瘤的首次活检指导和治疗评估至关重要。在此,我们提出并展示了一种通过磁共振成像(MRI)简单追踪跨膜水动力学来进行增殖活性时空图谱绘制的简便方法。具体而言,我们证明了增殖活性可加速胶质瘤细胞中的跨膜水运输。通过水交换动态对比增强(DCE)MRI测量跨膜水流出率( )。使用免疫荧光、免疫组织化学和免疫细胞化学染色来验证成像研究获得的结果。在胶质瘤细胞培养中, 精确地跟随生长周期中增殖活性的动态变化以及对替莫唑胺(TMZ)治疗的反应。在动物胶质瘤模型和人类胶质瘤中, 均与肿瘤内增殖活性的空间异质性呈线性且强相关。更重要的是,由单一MRI参数 预测的增殖活性比使用多模态标准MRI和先进机器学习的现有方法预测的增殖活性要准确得多。在大多数增殖性胶质瘤细胞中观察到水通道蛋白4(AQP4)表达上调,并且敲除AQP4可在很大程度上减缓增殖活性,表明AQP4是连接MRI- 与增殖活性的潜在分子。 :本研究为胶质瘤增殖活性的时空监测提供了一种简便、准确且无创的成像方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f14/11984403/70376d9696ab/thnov15p4693g001.jpg

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