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V Galpchian

Publications and source records attributed to V Galpchian.

3 recordsLinked to original sources

Three generations of high-density lipoprotein cholesterol assays compared with ultracentrifugation/dextran sulfate-Mg2+ method.

We report on the analytical performance of three generations of HDL-cholesterol assays: phosphotungstic acid/Mg2+, Spinpro, and a homogeneous method, N-geneous. The run-to-run imprecision (CV) of all assays was < or = 4.9%, and all results correlated highly with those of a modified reference procedure (r > or = 0.96). At triglycerides concentrations < 4000 mg/L, these field methods showed an acceptable systematic error (y = 1.12x - 47, 1.05x - 23, and 0.96x + 8 for the phosphotungstate, Spinpro, and N-geneous assays, respectively), and the total error of the field methods met the current National Cholesterol Education Program (NCEP) performance goal of < or = 22%. Regression analyses of results for samples with triglycerides > 4000 mg/L produced the following results for the above respective assays: y = 1.08x - 4.2, 1.02x + 3.6, and 0.85x + 108. In this hypertriglyceridemic group, only the N-geneous assay (at an HDL-cholesterol content of 240 mg/L) had a total error (35%) that exceeded the NCEP limit. Bilirubin and ascorbate produced a negative interference with the phosphotungstate and Spinpro assays but had little effect on the N-geneous assay.

Ascorbic Acid↗

Three routine methods for measuring high-density lipoprotein cholesterol compared with the Reference Method.

We compared the performance of three methods for quantifying high-density lipoprotein cholesterol (HDL-C) with the Reference Method for HDL-C, using samples with a wide range of triglyceride (TG) concentrations (290-18000 mg/L). All three comparison assays-- utilizing a magnetic dextran sulfate precipitating reagent, a direct method, and a standard MgCl2-dextran sulfate reagent--were precise, with a run-to-run CV of less than or equal to 4.1%. However, the systematic error of these assays exceeded the National Cholesterol Education Program (NCEP) performance goal of less than or equal to 10% in half of the concentration ranges tested. Nevertheless, the total error of the assays generally meets the current 22% limit set by the NCEP. Although both the magnetic dextran sulfate precipitation reagent and the direct assay can be performed more rapidly than the MgCl2-dextran sulfate assay, the direct assay involves no sample preparation and requires only 4 microL of sample excluding the dead space. Although precipitation is frequently inadequate with the MgCl2-dextran sulfate reagent at TG concentrations >6000 mg/L, both the magnetic and the direct reagent show no interference from high TG concentrations as great as 18 000 mg/L.

Chemical Precipitation↗

Use of a rapid HPLC assay for determination of pharmacokinetic parameters of ibuprofen in patients with cystic fibrosis.

High doses of ibuprofen have been shown to delay the progression of lung disease without serious adverse effects in patients with cystic fibrosis. To be effective, peak ibuprofen concentration of 50 to 100 mg/L has to be achieved. We developed an HPLC assay to rapidly determine plasma ibuprofen concentration. We used this assay to determine the pharmacokinetics of ibuprofen in patients with cystic fibrosis. The assay possessed linearity up to 500 mg/L, sensitivity to 1 mg/L, average recovery of 98%, and run-to-run precision (n = 23) of 3%. Furthermore, the assay proved to be free of interference from 51 medications. Observed time to peak concentration varied significantly between those receiving ibuprofen tablets (mean + SD, 94 +/- 29 min, n = 16) and syrup (30 +/- 0 min, n = 4) (P < 0.0001). We conclude that the method described here is ideal for therapeutic monitoring of ibuprofen.

Adolescent↗