人间充质干细胞不是供体来源的患者严重再生障碍性贫血谁接受性别不匹配的异体骨髓移植。

Norbert Stute, Boris Fehse, Jens Schröder, Sönke Arps, Peter Adamietz, Karsten R Held, Axel R Zander
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引用次数: 38

摘要

基质缺损是严重再生障碍性贫血(SAA)的病因之一,在非相关和不匹配的移植中,造血移植效果不佳。因此,我们想知道在骨髓移植(BMT)成功后数年的SAA患者中,人间充质干细胞(MSC)是否部分来源于供体。本研究调查了3例接受骨髓移植(环磷酰胺,ATG)后3年、5年和8年的SAA患者,这些患者的骨髓来自hla相同的异性兄弟姐妹供体。根据Caplan等人的方法,骨髓间充质干细胞从患者骨髓抽吸物中培养出来。从SAA骨髓移植后分离的MSC数量比正常对照低约10倍。使用着丝粒特异性DNA探针对X和Y染色体进行双色间期荧光原位杂交(FISH)分析粘附的MSC和传代1细胞的原代培养。FISH未显示粘附的MSC中存在供体细胞的任何明确证据:在所有病例中,不到0.5%的细胞核显示供体型信号模式,这完全在检测范围内。在一名女性患者中,通过敏感和定量的Y染色体特异性TaqMan PCR (QYCS-PCR)证实了男性供体细胞的缺失。相比之下,从相同的抽吸物中分离的ficoll造血细胞的供体来源大于90%,正如预期的那样。在SAA中,正如先前在溶酶体和过氧化物酶体储存病患者中发现的那样,骨髓间充质干细胞在同种异体BMT后成功的造血植入数年后仍然是宿主来源的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Human mesenchymal stem cells are not of donor origin in patients with severe aplastic anemia who underwent sex-mismatched allogeneic bone marrow transplant.

Stromal defects are part of the etiology of severe aplastic anemia (SAA), and hematopoietic engraftment is poor in unrelated and mismatched transplant. Therefore, we wanted to find out whether human mesenchymal stem cells (MSC) are partly of donor origin in patients with SAA years after successful bone marrow transplant (BMT). Three SAA patients 3, 5, and 8 years after BMT (cyclophosphamide, ATG) with bone marrow from an HLA-identical sibling donor of the opposite sex were investigated. MSC were grown from patients' bone marrow aspirates according to Caplan et al. The number of MSC that were isolated from SAA bone marrow post transplant was about 10 times lower than in normal controls. Primary cultures of adherent MSC and passage-one cells were analyzed by dual-color interphase fluorescence in situ hybridization (FISH) analysis using centromere-specific DNA probes for X and Y chromosome. FISH did not show any clear evidence of donor cells in the adherent MSC: In all cases, less than 0.5% of nuclei showed a donor-type signal pattern that is well within assay limits. In a female patient, the absence of male donor cells was confirmed by sensitive and quantitative, Y chromosome-specific TaqMan PCR (QYCS-PCR). In contrast, Ficoll-separated hematopoietic cells from the same aspirates were greater than 90% of donor origin, as expected. In SAA, as previously found in patients with lysosomal and peroxisomal storage disease, bone marrow MSC remain host-derived despite successful hematopoietic engraftment years after allogeneic BMT.

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