Alloantibody Identification: The Importance of Temperature, Strength Reaction and Enzymes-A Practical Approach.

IF 1.1 Q4 HEMATOLOGY Hematology Reports Pub Date : 2024-12-17 DOI:10.3390/hematolrep16040077
Palma Manduzio
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Abstract

Red blood cell (RBC) alloimmunization and antibodies formation against non-self antigens on red cells may occur after blood transfusion, pregnancies or other exposures. The RBC alloimmunization rate varies from 2% to 6% according to recent studies. The antibody screen is performed to identify or confirm the presence of antibodies in patient's serum or plasma, as a preoperative or pretransfusion test. The antibody identification process and major crossmatch are critical steps of risk management in transfusion medicine. The aim of this article is to describe a flow chart of the antibody identification. I report three educational examples of case studies associated with the negative direct antiglobulin test and clinically significant single and multiple alloantibodies using the gel method, Anti-M, Anti-c and Anti-E, Anti-Jka and Anti-s. Furthermore, I provide a critical analysis of the current literature on the topic. The flow chart of the antibody identification may simplify the process and possibly reduce errors in routine workflow.

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同种抗体鉴定:温度、强度、反应和酶的重要性——一种实用的方法。
在输血、怀孕或其他暴露后,红细胞(RBC)异体免疫和针对红细胞非自身抗原的抗体形成可能发生。根据最近的研究,红细胞异体免疫率从2%到6%不等。作为术前或输血前检查,进行抗体筛查是为了识别或确认患者血清或血浆中抗体的存在。抗体鉴定过程和主要交叉配型是输血医学风险管理的关键步骤。本文的目的是描述抗体鉴定的流程图。我报告了三个有教育意义的案例研究,与阴性直接抗球蛋白测试和临床意义的单一和多种同种异体抗体相关,使用凝胶法,Anti-M, Anti-c和Anti-E, Anti-Jka和Anti-s。此外,我对当前关于该主题的文献进行了批判性分析。抗体鉴定流程图可以简化流程,并可能减少日常工作中的错误。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Hematology Reports
Hematology Reports HEMATOLOGY-
CiteScore
0.90
自引率
0.00%
发文量
47
审稿时长
10 weeks
期刊最新文献
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