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一个新的血小板同种抗原,Swi(a),位于糖蛋白 Ia 上,在一个伴有胎儿和新生儿同种免疫性血小板减少症的家族中被鉴定出来。

A new platelet alloantigen, Swi(a) , located on glycoprotein Ia identified in a family with fetal and neonatal alloimmune thrombocytopenia.

机构信息

Institute for Transfusion Medicine Dessau, Red Cross Blood Transfusion Service NSTOB, Dessau, Germany.

出版信息

Transfusion. 2011 Aug;51(8):1745-54. doi: 10.1111/j.1537-2995.2010.03038.x. Epub 2011 Feb 18.

Abstract

BACKGROUND

Fetal and neonatal alloimmune thrombocytopenia (FNAIT) is a bleeding disorder caused by transplacental passage of maternal antibodies to fetuses whose platelets (PLTs) express the corresponding human PLT antigen (HPA).

STUDY DESIGNS AND METHODS

We observed a fetus with FNAIT who died from a severe intracranial hemorrhage. Analysis of maternal serum in antigen capture assay with paternal PLTs showed reactivity with PLT glycoprotein (GP)IIb/IIIa (α(IIb) β(3) ) and GPIa/IIa (α(2) β(1) integrin), indicating the presence of anti-HPA-1a and an additional alloantibody against GPIa (termed anti-Swi(a) ).

RESULTS

By immunochemical studies, the localization of the Swi(a) antigen on GPIa/IIa could be confirmed. Analysis of paternal GPIa full-length cDNA showed a single-nucleotide substitution C(3347) T in Exon 28 resulting in a Thr(1087) Met amino acid substitution. Testing of family members by polymerase chain reaction-restriction fragment length polymorphism using MslI endonuclease showed perfect correlation with phenotyping. Extended family and population studies showed that 4 of 10 members of the paternal family but none of 500 unrelated blood donors were Swi(a) carriers. Expression studies on allele-specific transfected Chinese hamster ovary (CHO) cells confirmed that the single-amino-acid substitution Thr(1087) Met was responsible for the formation of the Swi(a) epitope. Adhesion of CHO cells expressing the Swi(a) alloantigen to immobilized collagens was not impaired compared to the wild-type control and was not inhibited by anti-Swi(a) alloantibodies.

CONCLUSION

In this study we defined a new PLT alloantigen Swi(a) that was involved in a case of additional immunization against HPA-1a. Our observations demonstrate that combinations of PLT-specific alloantibodies may comprise low-frequency alloantigens.

摘要

背景

胎儿和新生儿同种免疫性血小板减少症(FNAIT)是一种由母体抗体通过胎盘传递到胎儿引起的出血性疾病,这些抗体针对的是表达相应人类血小板抗原(HPA)的胎儿血小板(PLT)。

研究设计和方法

我们观察了一例因严重颅内出血而死亡的 FNAIT 胎儿。用抗原捕获试验分析母体血清与父系 PLT 的反应性,发现与血小板糖蛋白(GP)IIb/IIIa(α(IIb)β(3))和 GPIa/IIa(α(2)β(1)整合素)反应,表明存在抗-HPA-1a 和针对 GPIa 的另一种同种异体抗体(称为抗-Swi(a))。

结果

通过免疫化学研究,可以确认 Swi(a)抗原在 GPIa/IIa 上的定位。对父系 GPIa 全长 cDNA 的分析显示,第 28 外显子中的单个核苷酸替换 C(3347)T 导致 Thr(1087)Met 氨基酸替换。使用 MslI 内切酶的聚合酶链反应-限制性片段长度多态性对家庭成员进行测试,与表型完全相关。对父系家族的 10 名成员中的 4 名和 500 名无关献血者进行的扩展家族和人群研究表明,他们均不是 Swi(a)携带者。对表达 Swi(a)同种异体抗原的 CHO 细胞进行的等位基因特异性转染研究证实,单个氨基酸替换 Thr(1087)Met 导致了 Swi(a)表位的形成。与野生型对照相比,表达 Swi(a)同种异体抗原的 CHO 细胞与固定化胶原的粘附没有受损,并且不受抗-Swi(a)同种异体抗体的抑制。

结论

在这项研究中,我们定义了一种新的血小板同种异体抗原 Swi(a),它参与了针对 HPA-1a 的额外免疫。我们的观察结果表明,血小板特异性同种异体抗体的组合可能包含低频同种异体抗原。

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