Literature DB >> 10211625

Stability of PO2, PCO2, and pH in fresh blood samples stored in a plastic syringe with low heparin in relation to various blood-gas and hematological parameters.

M Beaulieu1, Y Lapointe, B Vinet.   

Abstract

OBJECTIVE: To assess the stability of PO2, PCO2 and pH in fresh individual blood samples drawn in a plastic syringe with low heparin and stored at 22 degrees C or on ice in relation to various biochemical and hematological parameters of the samples.
METHODS: PO2, PCO2, and pH were measured at determined times in samples kept at 22 degrees C or on ice. The magnitude of change in blood-gas parameters over time for each group of samples was determined. The change in PO2 was examined according to its initial value, the oxygen content (CaO2), the hemoglobin concentration, the leukocyte and platelet counts of each sample.
RESULTS: The changes in PO2, PCO2, and pH over time were about three times lower in samples stored on ice than in the ones at 22 degrees C. Nevertheless, rapid increases in PO2 were observed for samples stored on ice with an initial PO2 between 50 and 250 mm Hg. Samples with PO2 over 250 mmHg exhibited a decrease in PO2 over time. No correlation was observed between the change in PO2 and the oxygen content, the hemoglobin concentration or the leukocyte and platelet counts for both groups of samples stored at 22 degrees C or on ice.
CONCLUSION: PO2 in samples with an initial PO2 between 50 and 250 mm Hg stored on ice should be analyzed within 30 min. However, PCO2 and pH didn't exhibit clinically significant changes within 60 min under similar conditions. The magnitude of change in PO2 for samples kept on ice was dependent on their hemoglobin capacity for buffering oxygen, which is in converse relation with the oxygen saturation level of hemoglobin (SatHbO2). It is believed that the alteration in PO2 for samples stored on ice is produced predominantly by diffusion of oxygen through the plastic wall of the syringe, whereas it would be mainly of metabolic origin in samples at room temperature.

Entities:  

Mesh:

Substances:

Year:  1999        PMID: 10211625     DOI: 10.1016/s0009-9120(98)00098-8

Source DB:  PubMed          Journal:  Clin Biochem        ISSN: 0009-9120            Impact factor:   3.281


  7 in total

1.  Re-evaluation of cord blood arterial and venous reference ranges for pH, pO(2), pCO(2), according to spontaneous or cesarean delivery.

Authors:  K Kotaska; R Urinovska; E Klapkova; R Prusa; L Rob; T Binder
Journal:  J Clin Lab Anal       Date:  2010       Impact factor: 2.352

2.  Detection of preanalytical errors in arterial blood gas analysis.

Authors:  Serap Çuhadar; Hayat Özkanay-Yörük; Mehmet Köseoğlu; Kaan Katırcıoğlu
Journal:  Biochem Med (Zagreb)       Date:  2022-06-15       Impact factor: 2.515

3.  Influence of different storage times and temperatures on blood gas and acid-base balance in ovine venous blood.

Authors:  H A Hussein; A A Aamer
Journal:  Open Vet J       Date:  2013-01-03

4.  Calculated arterial blood gas values from a venous sample and pulse oximetry: Clinical validation.

Authors:  Magnus Ekström; Anna Engblom; Adam Ilic; Nicholas Holthius; Peter Nordström; Ivar Vaara
Journal:  PLoS One       Date:  2019-04-12       Impact factor: 3.240

5.  Analysis of Arterial Blood Gas Values Based on Storage Time Since Sampling: An Observational Study.

Authors:  Alejandro Montero-Salinas; Marta Pérez-Ramos; Fernando Toba-Alonso; Leticia Quintana-DelRío; Jorge Suanzes-Hernández; María Sobrido-Prieto; Santiago Martínez-Isasi
Journal:  Nurs Rep       Date:  2021-07-08

Review 6.  Preanalytical considerations in blood gas analysis.

Authors:  Geoffrey Baird
Journal:  Biochem Med (Zagreb)       Date:  2013       Impact factor: 2.313

7.  Stability of pH, Blood Gas Partial Pressure, Hemoglobin Oxygen Saturation Fraction, and Lactate Concentration.

Authors:  Ariadna Arbiol-Roca; Claudia Elizabeth Imperiali; Dolors Dot-Bach; José Valero-Politi; Macarena Dastis-Arias
Journal:  Ann Lab Med       Date:  2020-06-17       Impact factor: 3.464

  7 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.