Estimation of Total Serum Cholesterol

Author(s):  
Javin Gogoi
1993 ◽  
Vol 22 (6) ◽  
pp. 1038-1047 ◽  
Author(s):  
AKIRA OKAYAMA ◽  
HIROTSUGU UESHIMA ◽  
MICHAEL G MARMOT ◽  
MASAKAZU NAKAMURA ◽  
YOSHIKUNI KITA ◽  
...  

1980 ◽  
Vol 26 (7) ◽  
pp. 896-902
Author(s):  
M A MacAulay ◽  
C L Jacklyn ◽  
J M Mathers ◽  
V A Storm

Abstract We compared Boehringer Mannheim's enzymatic kit for the continuous-flow (AutoAnalyzer II) determination of serum cholesterol with Technicon's N-24a extraction method. Results for patients' samples analyzed by the enzymatic method were higher than those by the comparison method. To evaluate accuracy in the cholesterol determinations, we enrolled the enzymatic method into the Center for Disease Control's (CDC) Lipid Standardization program. We calibrated the method by use of a pooled sera for which cholesterol content was assigned by CDC after analysis by their reference Abell-Kendall procedure. We discuss the difficulties with available calibration material and limitations in the application of some commercial control materials to the enzymatic cholesterol method. The continuous-flow variables, Michaelis-Menton constants, percent ester-hydrolase activity, and other factors affecting the performance of the enzyme-linked cholesterol method are evaluated. We believe pooled sera with an assigned value for cholesterol content is the best calibrator material.


1980 ◽  
Vol 26 (7) ◽  
pp. 854-860 ◽  
Author(s):  
A Cohen ◽  
H S Hertz ◽  
J Mandel ◽  
R C Paule ◽  
R Schaffer ◽  
...  

Abstract We describe a highly accurate and precise method for determination of total cholesterol in serum by isotope dilution/mass spectrometry. The method was developed for a Study Group of the Committee on Standards of the American Association for Clinical Chemistry, for use in establishing the accuracy of a candidate reference method for total cholesterol, and fulfills their criteria for a definitive method. Cholesterol-d7 is added to serum, with the weight ratio of cholesterol-d7 to total serum cholesterol kept near to 1:1. The esters are hydrolyzed and the cholesterol is separated and converted into the trimethylsilyl ether derivative for measurement by combined gas chromatography/mass spectrometry. The intensity ratio of the molecular ions at m/z 465 and 458 is measured for each sample and for two calibration mixtures, according to a prescribed bracketing protocol. A weight ratio for the sample is obtained by linear interpolation of the ion-intensity ratios, and the total cholesterol is then calculated. The method was applied four times over several weeks to each of five serum pools. Statistical analysis involving consideration of both replication error and variability between weeks gave a coefficient of variation for a single measurement of 0.36%. The absence of interferences in the method was demonstrated by measurements at several other masses.


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