荧光原位杂交评价干细胞收获的微小残留病。

Cancer detection and prevention Pub Date : 2000-01-01
J L Díez-Martín, I Buño, P Llamas, J Gosálvez, C López-Fernández, N Polo, C Regidor
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引用次数: 0

摘要

荧光原位杂交(FISH)分析检测自身骨髓和外周血干细胞收获中的微小残留病(MRD)的有效性已在三例血液恶性肿瘤患者中进行了测试。常规细胞遗传学和FISH用于鉴定白血病克隆的特异性染色体异常(1例骨髓增生异常患者的7号单体和2例急性髓性白血病患者的8号三体)。这样的分析有助于监测这些患者在接受强化化疗后持续的MRD。骨髓增生异常患者接受了8次外周血干细胞采集,FISH检测到单体7细胞的持久性,排除了它们用于自体移植的可能性。该患者复发并死亡。在两名接受自体骨髓采集的急性髓性白血病患者中,FISH未显示8三体细胞的显著比例。然而,由于收获的CD34细胞含量不足,没有进行自体移植。其中一名患者复发并再次出现8号三体并死亡。另一名患者则相反,在骨髓移植3年后病情完全缓解。基于所采用方法的敏感性,讨论了MRD定量在干细胞收获中的实用性和适用性。
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Fluorescence in situ hybridization evaluation of minimal residual disease on stem-cell harvests.

The usefulness of fluorescence in situ hybridization (FISH) analysis to detect minimal residual disease (MRD) in autologous bone marrow and peripheral blood stem-cell harvests has been tested in three patients with hematologic malignancies. Conventional cytogenetics and FISH were used to characterize the leukemic clones identifying the specific chromosomal abnormalities (monosomy 7 in a myelodysplastic patient and trisomy 8 in two acute myeloid leukemic patients). Such analysis was useful to monitor the MRD persistent after treating these patients with intensive chemotherapy. The myelodysplastic patient underwent eight peripheral blood-stem cell harvests in which FISH detected the persistence of monosomy 7 cells, precluding their use for autologous transplantation. This patient relapsed and died. In two acute myeloid leukemia patients who underwent an autologous marrow harvest, FISH did not show a significant proportion of trisomy 8 cells. Nevertheless, autologous transplantation was not performed, owing to an insufficient CD34 cell content in the harvests. One of these patients relapsed with the reappearance of trisomy 8 and died. The other patient, on the contrary, is alive in complete remission 3 years after the bone marrow harvest. The usefulness and applicability of MRD quantification in stem-cell harvests is discussed on the basis of the sensitivity of the methodology applied.

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