首页> 美国卫生研究院文献>Journal of Neuroinflammation >Non-myeloablative busulfan chimeric mouse models are less pro-inflammatory than head-shielded irradiation for studying immune cell interactions in brain tumours
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Non-myeloablative busulfan chimeric mouse models are less pro-inflammatory than head-shielded irradiation for studying immune cell interactions in brain tumours

机译:用于研究脑肿瘤中免疫细胞相互作用的非清髓性白消安嵌合小鼠模型的促炎性低于头罩照射

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摘要

BackgroundChimeric mouse models generated via adoptive bone marrow transfer are the foundation for immune cell tracking in neuroinflammation. Chimeras that exhibit low chimerism levels, blood-brain barrier disruption and pro-inflammatory effects prior to the progression of the pathological phenotype, make it difficult to distinguish the role of immune cells in neuroinflammatory conditions. Head-shielded irradiation overcomes many of the issues described and replaces the recipient bone marrow system with donor haematopoietic cells expressing a reporter gene or different pan-leukocyte antigen, whilst leaving the blood-brain barrier intact. However, our previous work with full body irradiation suggests that this may generate a pro-inflammatory peripheral environment which could impact on the brain’s immune microenvironment. Our aim was to compare non-myeloablative busulfan conditioning against head-shielded irradiation bone marrow chimeras prior to implantation of glioblastoma, a malignant brain tumour with a pro-inflammatory phenotype.
机译:背景技术通过过继性骨髓移植产生的嵌合小鼠模型是神经炎症中免疫细胞追踪的基础。在病理表型发展之前,嵌合体表现出较低的嵌合水平,血脑屏障破坏和促炎作用,因此很难区分免疫细胞在神经炎症条件下的作用。头罩式照射克服了许多上述问题,并用表达报告基因或不同泛白细胞抗原的供体造血细胞代替了受体骨髓系统,同时保留了完整的血脑屏障。但是,我们先前的全身照射研究表明,这可能会产生促炎性周围环境,从而可能影响大脑的免疫微环境。我们的目的是比较在植入胶质母细胞瘤(一种具有促炎性表型的恶性脑肿瘤)之前,将非清髓性白硫丹与头罩照射的骨髓嵌合体进行比较。

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