首页> 外文期刊>Hematology Reports >Single step multiple genotyping by MALDI-TOF mass spectrometry, for evaluation of minor histocompatibility antigens in patients submitted to allogeneic stem cell transplantation from HLA-matched related and unrelated donor
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Single step multiple genotyping by MALDI-TOF mass spectrometry, for evaluation of minor histocompatibility antigens in patients submitted to allogeneic stem cell transplantation from HLA-matched related and unrelated donor

机译:MALDI-TOF质谱的单步多基因分型,用于评估从HLA匹配的相关和不相关供体接受异基因干细胞移植的患者的次要组织相容性抗原

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摘要

The outcome of patients underwent to allogeneic stem cell transplantation (allo- SCT) is closely related to graft versus host disease (GvHD) and graft versus leukemia (GvL) effects which can be mediated by mHAgs. 23 mHAgs have been identified and reported to be differently correlated with GVHD or GVL and the aim of this work was develop a method to genotype the mHAgs described so far. For this study we used MALDI-TOF iPLEX Gold Mass Array technology. We tested 46 donor/recipient matched pairs that underwent allo-SCT because of Philadelphia positive (Ph+) chronic myeloid leukemia (n=29) or Ph+ acute lymphoblastic leukemia (n=17). Our data show that sibling pairs had a lesser number of mHAgs mismatches compared to MUD pairs. Notably, donor/recipient genomic mismatch on DPH1 was correlated with an increased risk of acute GvHD and LB-ADIR-1R mismatch on graft versus host direction was correlated with a better RFS with no increase of GvHD risk. Our work provides a simple, accurate and highly automatable method for mHAgs genotyping and suggest the role of mHAgs in addressing the immune reaction between donor and host.
机译:接受同种异体干细胞移植(allo-SCT)的患者的结局与可以通过mHAgs介导的移植物抗宿主病(GvHD)和移植物抗白血病(GvL)密切相关。已经鉴定出23种mHAg,并报告它们与GVHD或GVL有不同的相关性,这项工作的目的是开发一种迄今描述的mHAg基因型的方法。在这项研究中,我们使用了MALDI-TOF iPLEX金质量阵列技术。我们测试了因费城阳性(Ph +)慢性骨髓性白血病(n = 29)或Ph +急性淋巴细胞白血病(n = 17)而接受了all-SCT的46对供体/受体配对。我们的数据表明,与MUD对相比,对对具有更少的mHAgs错配。值得注意的是,DPH1上的供体/受体基因组错配与急性GvHD风险增加相关,而移植物对宿主方向的LB-ADIR-1R错配与更好的RFS相关,而GvHD风险没有增加。我们的工作为mHAgs的基因分型提供了一种简单,准确且高度自动化的方法,并提出了mHAgs在解决供体与宿主之间的免疫反应中的作用。

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