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首页> 外文期刊>Transfusion: The Journal of the American Association of Blood Banks >Transfusion-related immunomodulation by platelets is dependent on their expression of MHC Class I molecules and is independent of white cells.
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Transfusion-related immunomodulation by platelets is dependent on their expression of MHC Class I molecules and is independent of white cells.

机译:血小板与输血相关的免疫调节取决于其MHC I类分子的表达,并且独立于白细胞。

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BACKGROUND: Transfusion-related immunomodulation (TRIM) has been correlated with the presence of white cells (WBCs) in blood transfusions, but the role of components such as platelets (PLTs) in mediating TRIM has not been extensively examined. We designed a murine PLT transfusion model to study whether leukoreduced PLTs mediate TRIM effects. STUDY DESIGN AND METHODS: CBA recipient mice were administered four weekly transfusions of either fresh (4 hr) or aged (24 and 72 hr) donor leukoreduced PLTs from allogeneic BALB/c mice and then transplanted with skin grafts from donor-matched mice. TRIM was measured by comparing the times to graft rejection and these were correlated with immunoglobulin G (IgG) antibody development measured by flow cytometry. RESULTS: Compared with nontransfused control recipients, four transfusions of fresh, extremely leukoreduced (<0.05 WBCs/mL), allogeneic PLTs significantly (p < 0.002) reduced the recipient's ability to reject donor-matched skin grafts (survival >49 days compared with <14 days in nontransfused controls) despite the presence of high-titered serum IgG donor antibodies. In contrast, however, aged PLTs or fresh PLTs devoid of MHC Class I molecules were unable to affect skin graft survival nor stimulate antibody production. The PLT age-related inability to induce TRIM was shown to be due to loss of PLT-associated MHC Class I molecules; soluble supernatant MHC molecules that were transfused were unable to induce TRIM. CONCLUSION: These results suggest that fresh PLTs can induce TRIM independently of WBCs due to their MHC antigen expression whereas aging results in loss of MHC and ability to mediate TRIM. The findings support the concept that either active MHC removal from fresh PLTs or passive removal by, for example, storage, may reduce any deleterious effects of TRIM in transfusion recipients.
机译:背景:输血相关的免疫调节(TRIM)与输血中白细胞(WBC)的存在相关,但尚未广泛检查诸如血小板(PLT)等成分在介导TRIM中的作用。我们设计了小鼠PLT输血模型,以研究白细胞减少的PLT是否介导TRIM效应。研究设计和方法:CBA受体小鼠每周接受四次输血,分别来自同种异体BALB / c小鼠的新鲜(4小时)或老化(24和72小时)供体白细胞减少的PLT,然后移植来自供体匹配小鼠的皮肤移植物。通过比较移植排斥的时间来测量TRIM,这些时间与通过流式细胞仪测量的免疫球蛋白G(IgG)抗体发育相关。结果:与未输血的对照接受者相比,四次新鲜,高度白细胞减少(<0.05 WBCs / mL),同种异体PLT输血显着(p <0.002)降低了接受者拒绝供体匹配皮肤移植物的能力(存活时间> 49天,而<尽管存在高滴度血清IgG供体抗体,但在非输血对照中仍需14天。相反,没有MHC I类分子的老化PLT或新鲜PLT既不影响皮肤移植物的存活,也不能刺激抗体的产生。 PLT年龄相关的无法诱导TRIM是由于PLT相关的MHC I类分子丢失所致。输注的可溶性上清MHC分子无法诱导TRIM。结论:这些结果表明,新鲜的PLTs由于其MHC抗原表达而可以独立于WBCs诱导TRIM,而衰老导致MHC的丧失和介导TRIM的能力。这些发现支持了从新鲜PLT中主动去除MHC或通过例如存储被动去除MHC的概念,可以减少TRIM对输血接受者的有害影响。

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