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Irradiation and bone marrow reconstitution affect the functional Ly49 natural killer cell repertoire in rats

机译:辐射和骨髓重建影响大鼠Ly49自然杀伤细胞功能库

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ABSTRACT Total body irradiation (TBI) is part of the preconditioning regimen for allogeneic bone marrow transplantation (alloBMT) and the procedure is associated with treatment-related toxicity and delayed immune reconstitution. Natural killer (NK) cells develop and acquire functional competence in close interaction with stromal bone marrow cells that are considered relatively radioresistant compared to the hematopoietic compartment. We thus undertook a study to assess the effect of TBI on the reconstitution of class I MHC-specific Ly49 NK cell receptors in a rat model of alloBMT. In rats subjected to TBI alone or followed by MHC-matched BMT, the irradiation conditioning induced a skewing of the Ly49 repertoire. Specifically, the activating Ly49s3bright subset exhibited increased frequency and receptor density which correlated with augmented alloreactivity relative to untreated control rats. Our results highlight the plasticity of NK cells and indicate that ionizing radiation (IR) affects the stromal compartment and as a consequence the maturation and functional properties of bone marrow-derived NK cells. These changes lasted throughout the 6 months observation period, showing that irradiation induces long term effects on the generation of the NK cell receptor repertoire.
机译:摘要全身照射(TBI)是异基因骨髓移植(alloBMT)预处理方案的一部分,该过程与治疗相关的毒性和免疫重建延迟有关。天然杀伤(NK)细胞与基质骨髓细胞密切相互作用,发展并获得功能能力,与造血区室相比,基质骨髓细胞被认为具有相对的抗辐射能力。因此,我们进行了一项研究,以评估TBI对alloBMT大鼠模型中I类MHC特异性Ly49 NK细胞受体重构的影响。在单独接受TBI或随后接受MHC匹配的BMT的大鼠中,辐照条件诱导了Ly49组成谱的偏斜。具体而言,相对于未处理的对照大鼠,激活的Ly49s3bright亚群表现出增加的频率和受体密度,与增加的同种异体反应性相关。我们的结果突出了NK细胞的可塑性,并表明电离辐射(IR)影响基质区室,并因此影响骨髓NK细胞的成熟和功能特性。这些变化持续了整个6个月的观察期,表明辐照对NK细胞受体库的产生具有长期影响。

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