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检测并分析新型 Ael 血型等位基因。

Detection and phenotype analysis of a novel Ael blood group allele.

机构信息

Department of Transfusion, Zhongshan Hospital (Xiamen), Fudan University, Xiamen, Fujian, China.

Department of Internal Medicine, Yunxiao County Hospital of Traditional Chinese Medicine, Zhangzhou, Fujian, China.

出版信息

Vox Sang. 2024 Jan;119(1):74-78. doi: 10.1111/vox.13557. Epub 2023 Nov 8.

Abstract

BACKGROUND AND OBJECTIVES

The presence of blood subtypes may lead to difficulties in blood group identification; however, third-generation sequencing (TGS) can help in accurately identifying difficult blood groups, and study the serological characteristics and molecular mechanism of Ael subtypes.

MATERIALS AND METHODS

ABO blood group was identified by the standard serological technique, weak blood group antigen was identified by adsorption-elution experiments, ABH substance in the saliva was determined and glycosyltransferase activity of A and B was detected. The ABO gene full-length sequence and promoter region were amplified by specific primers using single-molecule real-time sequencing, with the amplified products being sequenced directly and analysed in real time.

RESULTS

The patient was serologically identified as Ael subtype, and TGS analysis revealed new intron mutations in Ael patients (c.467C>T; c.29-10T>A).

CONCLUSION

The discovery of the new allele and the identification of ABO subtypes can be combined with serological characterization and molecular biological methods.

摘要

背景与目的

血型亚型的存在可能导致血型鉴定困难;然而,第三代测序(TGS)有助于准确鉴定疑难血型,并研究 Ael 亚型的血清学特征和分子机制。

材料与方法

采用标准血清学技术鉴定 ABO 血型,通过吸附洗脱实验鉴定弱血型抗原,测定唾液中的 ABH 物质,并检测 A 和 B 糖苷转移酶的活性。使用特异性引物通过单分子实时测序扩增 ABO 基因全长序列和启动子区,直接对扩增产物进行测序并实时分析。

结果

患者被血清学鉴定为 Ael 亚型,TGS 分析显示 Ael 患者存在新的内含子突变(c.467C>T;c.29-10T>A)。

结论

新等位基因的发现和 ABO 亚型的鉴定可以与血清学特征和分子生物学方法相结合。

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