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临床输血与检验 ›› 2024, Vol. 26 ›› Issue (5): 587-591.DOI: 10.3969/j.issn.1671-2587.2024.05.002

• 论著 • 上一篇    下一篇

常见红细胞添加剂成分对双花扁豆凝集素与A1红细胞反应的影响*

朱心怡1, 张成鑫2, 王秋实2, 李佳佳3, 齐永4, 向东1, 赵俸涌1   

  1. 1上海市血液中心,上海 200051;
    2中国医科大学附属盛京医院输血科,辽宁沈阳 110004;
    3上海长征医院输血科,上海 200003;
    4中国人民解放军中部战区总医院,湖北武汉 430061
  • 收稿日期:2024-07-01 出版日期:2024-10-20 发布日期:2024-09-20
  • 通讯作者: 赵俸涌,主要从事免疫血液学研究,(E-mail)zhaofengyong@sbc.org.cn。向东,主要从事免疫血液学研究,(E-mail)xiangdong@sbc.org.cn。
  • 作者简介:朱心怡,主要从事免疫血液学研究,(E-mail)zhuxinyi@sbc.org.cn。张成鑫,主要从事免疫血液学,(E-mail)644324177@qq.com。
  • 基金资助:
    *本课题受中国输血协会威高科研基金(No. CSBT-WG-2023-01)资助

Impact of Common Red Blood Cell Preservatives on the Dolichos Biflorus Agglutinin Binding to A1 Phenotype Red Blood Cells

ZHU Xinyi1, ZHANG Chengxin2, WANG Qiushi2, LI Jiajia3, QI Yong4, XIANG Dong1, ZHAO Fengyong1   

  1. 1Shanghai Blood Center, Shanghai 200051;
    2Department of Blood Transfusion, Shengjing Hospital Affiliated to China Medical University, Shenyang, Liaoning 110004;
    3Department of Blood Transfusion, Changzheng Hospital, Naval Medical University, Shanghai 200003;
    4Department of Blood Transfusion, Central Theater General Hospital of Chinese People's Liberation Army, Wuhan, Hubei 430061
  • Received:2024-07-01 Online:2024-10-20 Published:2024-09-20

摘要: 目的 探索常见试剂红细胞添加剂中糖类物质和金属离子螯合剂成分对双花扁豆凝集素(Dolichos Biflorus Agglutinin, DBA,又称抗-A1)与A1红细胞间血清学反应凝集强度的影响,为减少临床检测假阴性结果和凝集素功能特性研究提供数据支持,也为当前实验室A1抗原鉴定质控实验提出改进方案。方法 以生理盐水为基础红细胞稀释液,在反应体系中分别加入梯度稀释的糖溶液(葡萄糖、蔗糖、甘露醇)和棋盘滴定的强金属离子螯合剂(EDTA-Na2)和二价金属阳离子(Ca2+、Mg2+),对不同反应条件下DBA-A1红细胞凝集强度进行评估。结果 在DBA-A1红细胞反应体系中 CEDTA-Na2>0.6 mM时出现了明显的凝集抑制现象,提高CCa2+或CMg2+可减弱高浓度EDTA-Na2对DBA-A1红细胞凝集强度的影响;另一方面,体系中糖类物质浓度的增高也使DBA-A1红细胞凝集强度产生明显减弱,加入0.6%~5%葡萄糖溶液,1.3%~10%蔗糖溶液或5%甘露醇溶液时,DBA-A1红细胞凝集明显减弱。结论 红细胞添加剂中的EDTA-Na2和糖类物质对-A1红细胞反应存在凝集抑制,是血型血清学检测中植物凝集素制剂使用的重要干扰因素。

关键词: 双花扁豆凝集素, 试剂红细胞, 红细胞保存液, A1亚型

Abstract: Objective To explore the effects of carbohydrates and metal ion chelators present in common red blood cell (RBC) preservatives on the agglutination intensity of serological reactions between Dolichos Biflorus Agglutinin (DBA) and A1 RBCs, thus provide evidence for minimizing false negative results in clinical testing and enhancing the understanding of DBA's functional characteristics. Additionally, our study attempted to propose improvements to the current laboratory quality control procedures for A1 antigen identification. Methods The agglutination intensity of DBA-A1 erythrocytes under various conditions was quantitatively measured. This was achieved by introducing serial dilutions of sugar solutions (glucose, sucrose, mannitol) and performing checkerboard titrations of EDTA-Na2 and divalent metal cations (Ca2+, Mg2+) into the reaction system. Throughout the experiments, 0.9% saline was used as the initial RBC diluent. Results CEDTA-Na2 concentrations >0.6 mM significantly inhibited agglutination, while increasing concentrations of Ca2+/Mg2+ reduced the negative effect of high concentration EDTA-Na2. On the other hand, a notable decrease in DBA-A1 erythrocyte agglutination intensity was observed with increasing sugar concentrations. Specifically, the addition of 0.6% to 5% glucose solution, 1.3% to 10% sucrose solution or 5% mannitol solution significantly weakened the aggregation of DBA-A1 red blood cells. Conclusion EDTA-Na2 and saccharides in RBC preservatives could exhibit inhibitory effects on the agglutination reaction between DBA and A1 RBCs, highlighting them as crucial risk factors in the application of plant lectins for blood group serological detection.

Key words: Dolichos Biflorus Agglutinin, Reagent red blood cells, Red blood cell preservation additive, A1 subtype

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