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Effect of Cold Agglutinins on Red Blood Cell Parameters in a Trauma Patient: a Case Report

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Specialty Biochemistry
Date 2018 Nov 16
PMID 30429683
Citations 6
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Abstract

The presence of cold agglutinins (CAs) in samples intended for complete blood count (CBC) using automated haematology analysers might cause serious preanalytical errors. In this report we describe the case of a 90-year old female patient admitted to the Emergency department following trauma injuries. A blood testing on admission revealed surprisingly low red blood cell count (0.99 x 10/L), low haematocrit (0.102 L/L) which did not correlate with haemoglobin concentration (100 g/L), and high erythrocytes indices (mean corpuscular haemoglobin, 101 pg; mean corpuscular haemoglobin concentration, 980 g/L). In the second sample, after repeated collection, almost equal results were observed. Blood smear examination under the microscope revealed clusters of erythrocytes. Cold agglutinins presence was suspected and, in order to get valid results, sample was warmed to 37 °C. Correction of CBC was observed. Furthermore, we performed some additional analysis to confirm the presence of CAs in this patient. The aim of this report was to present the laboratory findings in a case of CAs and propose a laboratory procedure for whole blood samples with suspected CAs.

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References
1.
Berentsen S, Ulvestad E, Langholm R, Beiske K, Hjorth-Hansen H, Ghanima W . Primary chronic cold agglutinin disease: a population based clinical study of 86 patients. Haematologica. 2006; 91(4):460-6. View

2.
Kakkar N . Spurious automated red cell parameters due to cold agglutinins--a report of two cases. Indian J Pathol Microbiol. 2005; 47(2):250-2. View

3.
Ercan S, Caliskan M, Koptur E . 70-year old female patient with mismatch between hematocrit and hemoglobin values: the effects of cold agglutinin on complete blood count. Biochem Med (Zagreb). 2014; 24(3):391-5. PMC: 4210260. DOI: 10.11613/BM.2014.042. View

4.
Nikousefat Z, Javdani M, Hashemnia M, Haratyan A, Jalili A . Cold Agglutinin Disease; A Laboratory Challenge. Iran Red Crescent Med J. 2015; 17(10):e18954. PMC: 4636857. DOI: 10.5812/ircmj.18954. View

5.
Fohlen-Walter A, Jacob C, Lecompte T, Lesesve J . Laboratory identification of cryoglobulinemia from automated blood cell counts, fresh blood samples, and blood films. Am J Clin Pathol. 2002; 117(4):606-14. DOI: 10.1309/QXPP-DC4X-N3Q8-KW62. View