首页> 外文期刊>Transfusion: The Journal of the American Association of Blood Banks >The effect of exposing murine splenocytes to UVB light, psoralen plus UVA light, or gamma-irradiation on in vitro and in vivo immune responses.
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The effect of exposing murine splenocytes to UVB light, psoralen plus UVA light, or gamma-irradiation on in vitro and in vivo immune responses.

机译:将鼠脾细胞暴露于UVB光,补骨脂素加UVA光或伽马射线辐照对体外和体内免疫反应的影响。

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摘要

BACKGROUND: WBCs in blood components are a major factor contributing to immune responses such as GVHD and alloimmunization that follow transfusion. Irradiation of blood components has been used to regulate the contribution of donor WBCs to these immune responses. A systematic comparison of how the exposure of lymphoid cells to gamma-irradiation, UVB light, or psoralen + UVA light (PUVA) effects immune response was conducted to better define the best type of irradiation to be used in different clinical settings. STUDY DESIGN AND METHODS: Murine spleen cells were irradiated with varying doses and tested for their in vitro ability to be activated, to proliferate in response to mitogen or allogeneic stimulator cells, or to serve as stimulator cells. Irradiated donor cells were also tested for in vivo generation of GVHD, induction of alloantibody production, induction of restricted cytolytic T lymphocytes, and persistence of irradiated cells. RESULTS: In general, increasing amounts of irradiation resulted in increased inhibition of in vitro and in vivo responses, although the doses required for inhibition differed from assay to assay. In contrast, irradiation of donor cells did not always result in inhibition of recipient alloantibody responses but was dependent on the donor-recipient combination that was studied. CONCLUSION: Control of the in vivo outcomes of transfusing allogeneic cells is regulated by the type and dose of irradiation used and by the genotype of the donor and/or recipient.
机译:背景:血液成分中的白细胞是导致输注后免疫应答(例如GVHD和同种免疫)的主要因素。血液成分的辐射已被用来调节供体白细胞对这些免疫反应的贡献。系统地比较了淋巴样细胞暴露于伽马射线,UVB或补骨脂素+ UVA射线(PUVA)对免疫反应的影响,以更好地定义在不同临床环境中使用的最佳照射类型。研究设计和方法:用不同剂量辐照鼠脾细胞,并测试其体外激活能力,对促细胞分裂剂或同种异体刺激细胞的增殖能力或作为刺激细胞的体外能力。还测试了辐照的供体细胞的体内GVHD产生,同种抗体产生的诱导,限制性溶细胞性T淋巴细胞的诱导以及辐照细胞的持久性。结果:通常,增加辐射量会增加体外和体内反应的抑制作用,尽管抑制作用所需的剂量因测定而异。相反,供体细胞的辐射并不总是导致受体同种抗体应答的抑制,而是取决于所研究的供体-受体组合。结论:输注同种异体细胞的体内结果的控制受所用放射线的类型和剂量以及供体和/或受体的基因型的调节。

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