x射线照射产生骨髓嵌合体:与铯照射的比较及其在免疫治疗中的应用。

Journal of biological methods Pub Date : 2020-02-17 eCollection Date: 2020-01-01 DOI:10.14440/jbm.2020.314
Jason Eng, Jessica Orf, Kristy Perez, Deepali Sawant, Jason DeVoss
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引用次数: 7

摘要

骨髓嵌合体是理解造血细胞与基质间室的生物学贡献的关键工具。在大多数机构中,铯照射器用于在注射供体骨髓之前对受体动物进行致命照射。然而,铯辐射有很大的隐患,包括对国内安全的担忧。最近,x射线辐照器已作为铯源的潜在替代品实施。文献中只有少数出版物试图比较这两种方式,在大多数情况下,重点是对人体血液产生的辐照。我们只能找到一项研究,直接比较了x射线和铯技术在小鼠骨髓嵌合体生成中的作用,这是一项标准的实验室实践。这项研究的重点是受体动物血液中的嵌合现象。在本研究中,我们首先比较铯和基于x射线的照射源,然后过渡到使用基于x射线的免疫模型,重点是免疫功能小鼠模型中的癌症免疫治疗-特别是评估血液,脾脏和肿瘤微环境中的嵌合。虽然我们的数据表明这两个平台在功能上是相当的,并且表明基于x射线的技术是铯源的合适替代品。我们还强调了使用两种技术观察到的外周(血液,脾脏)和肿瘤间室嵌合的差异。虽然外周组织的整体嵌合程度非常高,但肿瘤中的嵌合程度是细胞类型特异性的,T和NK细胞的嵌合程度低于其他细胞类型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Generation of bone marrow chimeras using X-ray irradiation: comparison to cesium irradiation and use in immunotherapy.
Bone marrow chimeras represent a key tool employed to understand biological contributions stemming from the hematopoietic versus the stromal compartment. In most institutions, cesium irradiators are used to lethally irradiate recipient animals prior to the injection of donor bone marrow. Cesium irradiators, however, have significant liabilities—including concerns around domestic security. Recently, X-ray irradiators have been implemented as a potential alternative to cesium sources. Only a small number of publications in the literature have attempted to compare these two modalities and, in most cases, the emphasis was on irradiation of human blood productions. We were able to find only a single study that directly compared X-ray and cesium technologies in the generation of murine bone marrow chimeras, a standard laboratory practice. This study focused on chimerism in the blood of recipient animals. In the present study, we begin by comparing cesium and X-ray based sources for irradiation, then transition to using X-ray-based systems for immunology models with an emphasis on immunotherapy of cancer in immunocompetent mouse models—specifically evaluating chimerism in the blood, spleen, and tumor microenvironment. While our data demonstrate that the two platforms are functionally comparable and suggest that X-ray based technology is a suitable alternative to cesium sources. We also highlight a difference in chimerism between the peripheral (blood, spleen) and tumor compartments that is observed using both technologies. While the overall degree of chimerism in the peripheral tissues is very high, the degree of chimerism in the tumor is cell type specific with T and NK cells showing lower chimerism than other cell types.
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