Ficko T, Galvani V, Rupreht R, Dovc T, Rozman P
Department of Immunohaematology, Blood Transfusion Centre of Slovenia, Slajmerjeva 6, SI-1000 Ljubljana, Slovenia.
Transfus Med. 2004 Dec;14(6):425-32. doi: 10.1111/j.1365-3148.2004.00538.x.
Genotyping of the human platelet alloantigens (HPA) is useful for the diagnosis and therapy of the patients with alloimmune thrombocytopenic syndromes, such as post-transfusion refractoriness to platelets, post-transfusion thrombocytopenic purpura and foetomaternal alloimmune thrombocytopenia. We have developed, optimized and validated a new method for simultaneous genotyping of HPAs - HPA-1, HPA-2, HPA-3 and HPA-5 - by using the real-time polymerase chain reaction (PCR) based on TaqMan technology. Its performances were compared to those of the standard PCR-sequence-specific primers (SSP) method by testing 120 DNA samples. Several discrepancies between the two methods have been observed, especially in the HPA-3 genotyping. Evidently, the PCR-SSP method produced several false positive results due to its technical drawbacks. Based on our comparison, we believe that the new real-time TaqMan PCR assay for the HPA-1, HPA-2, HPA-3 and HPA-5 genotyping is faster, more reliable and reproducible, compared to the standard PCR-SSP.
人类血小板同种抗原(HPA)基因分型对于诊断和治疗同种免疫性血小板减少综合征患者很有用,比如对血小板的输血后不应性、输血后血小板减少性紫癜和母婴同种免疫性血小板减少症。我们已经开发、优化并验证了一种通过基于TaqMan技术的实时聚合酶链反应(PCR)对HPA-1、HPA-2、HPA-3和HPA-5进行同时基因分型的新方法。通过检测120份DNA样本,将其性能与标准PCR序列特异性引物(SSP)方法的性能进行了比较。观察到两种方法之间存在一些差异,尤其是在HPA-3基因分型方面。显然,PCR-SSP方法由于其技术缺陷产生了一些假阳性结果。基于我们的比较,我们认为与标准PCR-SSP相比,用于HPA-1、HPA-2、HPA-3和HPA-5基因分型的新实时TaqMan PCR检测方法更快、更可靠且可重复。