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Evaluation of the immature platelet fraction contribute to the differential diagnosis of hereditary immune and other acquired thrombocytopenias

机译:未成熟的血小板分数的评估有助于遗传性免疫性和其他获得性血小板减少症的鉴别诊断

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摘要

The differential diagnosis of immune (ITP) and hereditary macrothrombocytopenia (HM) is key to patient management. The immature platelet fraction (IPF) represents the subset of circulating platelets with higher RNA content, and has been shown to distinguish hypo- from hyperproliferative thrombocytopenias. Here we evaluated the diagnostic accuracy of IPF in the differential diagnosis between HM and other thrombocytopenias in a population of patients with post-chemotherapy thrombocytopenia (n = 56), bone marrow failure (n = 22), ITP (n = 105) and HM (n = 27). TPO levels were also measured in HM and ITP matched for platelet counts. Platelet counts were similar in all patient groups. Higher IPF values were observed in both ITP (12.3%; 2.4–65.6%) and HM (29.8%; 4.6–65.9%) compared to hypoproliferative thrombocytopenias. IPF values were also higher in HM compared to ITP, yielding a diagnostic accuracy of 0.80 (95%CI 0.70–0.90; P < 0.0001) to distinguish these two conditions. Intra- and inter-assays reproducibility of IPF in HM patients revealed that this is a stable parameter. In conclusion, IPF is increased in HM compared to both ITP and other thrombocytopenias and contributes to the differentiation between ITP and HM. Further studies are warranted to understand the biological rationale of these findings and to its incorporation in diagnostic algorithms of HM.
机译:免疫(ITP)和遗传性大血小板减少症(HM)的鉴别诊断是患者管理的关键。不成熟的血小板分数(IPF)代表具有较高RNA含量的循环血小板的子集,并已显示出可将低增殖性血小板减少症与低增殖性血小板减少症区分开。在这里,我们评估了IPF在化学疗法后血小板减少症(n = 56),骨髓衰竭(n = 22),ITP(n = 105)和HM患者人群中HM与其他血小板减少症的鉴别诊断中的诊断准确性。 (n = 27)。还以与血小板计数匹配的HM和ITP来测量TPO水平。所有患者组的血小板计数均相似。与增生性血小板减少症相比,ITP(12.3%; 2.4–65.6%)和HM(29.8%; 4.6–65.9%)均观察到更高的IPF值。与ITP相比,HM的IPF值也更高,诊断准确度为0.80(95%CI 0.70-0.90; P <0.0001)以区分这两种情况。 HM患者IPF的测定内和测定间可重复性表明,这是一个稳定的参数。总之,与ITP和其他血小板减少症相比,HM中的IPF升高,并且有助于ITP和HM之间的区分。有必要进行进一步的研究,以了解这些发现的生物学原理,并将其纳入HM的诊断算法。

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