Performance characteristics of a microfluidic Lab-on-Chip electrophoresis system for high-density lipoprotein (HDL) subfraction separation and measurement
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Dan-Hui D. Yang
Abstract
Background: High-density lipoprotein (HDL) is believed to be protective against coronary heart disease (CHD). HDL is comprised of different subfractions. Of these, HDL 2b is believed to be the most important in preventing CHD. Current methods for HDL subfraction measurements are not standardized and often exhibit poor analytical performance, which can limit their usefulness in clinical practice.
Methods: We have developed a microfluidic Lab-on-Chip electrophoresis system for serum HDL subfraction measurements. Linear polymers are used as a sieving buffer for HDL particle separation. Nine samples and two controls can be analyzed in 30 min. The percent HDL 2b that comprises total high-density lipoprotein cholesterol (HDL-C) is reported.
Results: Samples with HDL-C of 0.259–2.072 mmol/L could be evaluated for percent HDL 2b with coefficient of variations (%CVs) below 8%. Total precision was typically below 1.5% and linearity was observed between 8% and 32% HDL 2b. Measurements were not affected by many therapeutic and biological compounds. Consistent results were obtained by three laboratories and showed r2 values between 0.93 and 0.95.
Conclusions: The assay allows for easy and reproducible measurement of percent HDL 2b. The experimental procedure and small size of the instrumentation needed for measurement make it viable in clinical settings.
Clin Chem Lab Med 2010;48:883–9.
©2010 by Walter de Gruyter Berlin New York
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Articles in the same Issue
- Editorials
- The “Obamanomics”: a revolution in laboratory diagnostics
- Skeletal muscle biomarkers: not new but still interesting diagnostic tools
- Necessity for high-quality reference materials in the harmonization of laboratory assays
- Reviews
- Rhabdomyolysis: historical background, clinical, diagnostic and therapeutic features
- Biochemical markers of muscular damage
- Minireview
- Interpretation of serum parathyroid hormone concentrations in dialysis patients: what do the KDIGO guidelines change for the clinical laboratory?
- Guidelines and Recommendations
- 2010 Consensus statement on the worldwide standardization of the hemoglobin A1c measurement
- Genetics and Molecular Diagnostics
- Development of a low-cost real-time reverse transcriptase-polymerase chain reaction technique for the detection and quantification of hepatitis C viral load
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- Evaluation of a panel of circulating DNA, RNA and protein potential markers for pathologies of pregnancy
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- Development and preparation of a new serum protein reference material: feasibility studies and processing
- A WHO Reference Reagent for the Serum Transferrin Receptor (sTfR): international collaborative study to evaluate a recombinant soluble transferrin receptor preparation
- Hyperhomocysteinemia is not associated with reduced bone quality in humans with hip osteoarthritis
- Diagnostic performance of anti-citrullinated peptide antibodies for the diagnosis of rheumatoid arthritis: the relevance of likelihood ratios
- New quantitative electrochemiluminescence method (ECLIA) for interleukin-6 (IL-6) measurement
- Evaluation of cell counting and leukocyte differentiation in cerebrospinal fluid controls using hematology analyzers by the German Society for Clinical Chemistry and Laboratory Medicine
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