Mean Platelet Volume as a Diagnostic Marker for Cardiovascular Disease Drawbacks of Preanalytical Conditions and Measuring Techniques
After the first description of platelets more than a century ago, the knowledge about their origin and function grew continuously. The development of the impedance method as a completely automated assay allowed integrating mean platelet volume (MPV) measurement as a routine parameter of the complete...
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Published in | Clinical and applied thrombosis/hemostasis Vol. 18; no. 6; pp. 561 - 568 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
Los Angeles, CA
SAGE Publications
01.11.2012
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Subjects | |
Online Access | Get full text |
ISSN | 1076-0296 1938-2723 1938-2723 |
DOI | 10.1177/1076029612458147 |
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Abstract | After the first description of platelets more than a century ago, the knowledge about their origin and function grew continuously. The development of the impedance method as a completely automated assay allowed integrating mean platelet volume (MPV) measurement as a routine parameter of the complete blood count. This enabled us to focus more on the association of platelet function and size. Since then, many authors described MPV as a marker of platelet reactivity and risk factor for cardiovascular diseases. Hence, the preanalytical variability of this parameter is known from its introduction as standard laboratory value. Unfortunately no preanalytical standards have been implemented. This review shows the high variability in the literature with MPV as a risk factor for cardiovascular disease. After a brief description of the biology of platelets, we provide an in-depth survey of the measurement methods and their drawbacks. Finally, we propose a possible approach to standardization. |
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AbstractList | After the first description of platelets more than a century ago, the knowledge about their origin and function grew continuously. The development of the impedance method as a completely automated assay allowed integrating mean platelet volume (MPV) measurement as a routine parameter of the complete blood count. This enabled us to focus more on the association of platelet function and size. Since then, many authors described MPV as a marker of platelet reactivity and risk factor for cardiovascular diseases. Hence, the preanalytical variability of this parameter is known from its introduction as standard laboratory value. Unfortunately no preanalytical standards have been implemented. This review shows the high variability in the literature with MPV as a risk factor for cardiovascular disease. After a brief description of the biology of platelets, we provide an in-depth survey of the measurement methods and their drawbacks. Finally, we propose a possible approach to standardization.After the first description of platelets more than a century ago, the knowledge about their origin and function grew continuously. The development of the impedance method as a completely automated assay allowed integrating mean platelet volume (MPV) measurement as a routine parameter of the complete blood count. This enabled us to focus more on the association of platelet function and size. Since then, many authors described MPV as a marker of platelet reactivity and risk factor for cardiovascular diseases. Hence, the preanalytical variability of this parameter is known from its introduction as standard laboratory value. Unfortunately no preanalytical standards have been implemented. This review shows the high variability in the literature with MPV as a risk factor for cardiovascular disease. After a brief description of the biology of platelets, we provide an in-depth survey of the measurement methods and their drawbacks. Finally, we propose a possible approach to standardization. After the first description of platelets more than a century ago, the knowledge about their origin and function grew continuously. The development of the impedance method as a completely automated assay allowed integrating mean platelet volume (MPV) measurement as a routine parameter of the complete blood count. This enabled us to focus more on the association of platelet function and size. Since then, many authors described MPV as a marker of platelet reactivity and risk factor for cardiovascular diseases. Hence, the preanalytical variability of this parameter is known from its introduction as standard laboratory value. Unfortunately no preanalytical standards have been implemented. This review shows the high variability in the literature with MPV as a risk factor for cardiovascular disease. After a brief description of the biology of platelets, we provide an in-depth survey of the measurement methods and their drawbacks. Finally, we propose a possible approach to standardization. |
Author | Sloep, Matthijs Lancé, Marcus D. Marcus, Marco A. E. Henskens, Yvonne M. C. |
Author_xml | – sequence: 1 givenname: Marcus D. surname: Lancé fullname: Lancé, Marcus D. – sequence: 2 givenname: Matthijs surname: Sloep fullname: Sloep, Matthijs – sequence: 3 givenname: Yvonne M. C. surname: Henskens fullname: Henskens, Yvonne M. C. – sequence: 4 givenname: Marco A. E. surname: Marcus fullname: Marcus, Marco A. E. email: marcus.lance@mumc.nl |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/22936787$$D View this record in MEDLINE/PubMed |
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Snippet | After the first description of platelets more than a century ago, the knowledge about their origin and function grew continuously. The development of the... |
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SubjectTerms | Biomarkers - blood Blood Cell Count - methods Blood Cell Count - standards Blood Platelets - metabolism Blood Platelets - pathology Cardiovascular Diseases - blood Cardiovascular Diseases - diagnosis Humans Risk Factors |
Subtitle | Drawbacks of Preanalytical Conditions and Measuring Techniques |
Title | Mean Platelet Volume as a Diagnostic Marker for Cardiovascular Disease |
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