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Biomedical subjects

W Garry John

Publications and source records attributed to W Garry John.

6 recordsLinked to original sources

Hypovitaminosis D is associated with reductions in serum apolipoprotein A-I but not with fasting lipids in British Bangladeshis.

BACKGROUND: Although hypovitaminosis D has been suggested to increase the risk of heart disease, its relation to components of the fasting lipid profile has not been clarified for specific ethnic groups. OBJECTIVE: The objective was to determine the relation of circulating 25-hydroxyvitamin D [25(OH)D] concentrations to fasting lipid concentrations in South Asian subjects at risk of hypovitaminosis D. DESIGN: The present study was conducted in 170 British Bangladeshi adults, 69 men and 101 women, from east London who were free of known diabetes or chronic disorders. Vitamin D repletion was assessed by measuring fasting serum 25(OH)D concentrations. Fasting lipid profiles were measured as part of a study of the risk factors for type 2 diabetes and ischemic heart disease, which included hypovitaminosis D. RESULTS: A univariate analysis showed that total cholesterol, LDL cholesterol, and both apolipoprotein (apo) A-I and apo B concentrations correlated directly with serum 25(OH)D concentrations. However, a multiple regression analysis, which included all the documented risk factors for diabetes and ischemic heart disease, showed that the 25(OH)D concentration (vitamin D status) was an independent predictor of increasing apo A-I concentrations (standardized coefficient beta = 0.3; P < 0.001) but not of fasting lipid concentrations. CONCLUSIONS: In this study of British South Asians, the data showed a positive relation of fasting apo A-I concentrations to serum 25(OH)D concentrations, independent of glycemia and other dietary, anthropometric, and lifestyle risk factors for type 2 diabetes and ischemic heart disease after multiple regression analyses. Subjects with hypovitaminosis D are likely to have an increased risk of ischemic heart disease independent of their increased risk of type 2 diabetes.

Adult↗

IFCC reference system for measurement of hemoglobin A1c in human blood and the national standardization schemes in the United States, Japan, and Sweden: a method-comparison study.

BACKGROUND: The national programs for the harmonization of hemoglobin (Hb)A(1c) measurements in the US [National Glycohemoglobin Standardization Program (NGSP)], Japan [Japanese Diabetes Society (JDS)/Japanese Society of Clinical Chemistry (JSCC)], and Sweden are based on different designated comparison methods (DCMs). The future basis for international standardization will be the reference system developed by the IFCC Working Group on HbA(1c) Standardization. The aim of the present study was to determine the relationships between the IFCC Reference Method (RM) and the DCMs. METHODS: Four method-comparison studies were performed in 2001-2003. In each study five to eight pooled blood samples were measured by 11 reference laboratories of the IFCC Network of Reference Laboratories, 9 Secondary Reference Laboratories of the NGSP, 3 reference laboratories of the JDS/JSCC program, and a Swedish reference laboratory. Regression equations were determined for the relationship between the IFCC RM and each of the DCMs. RESULTS: Significant differences were observed between the HbA(1c) results of the IFCC RM and those of the DCMs. Significant differences were also demonstrated between the three DCMs. However, in all cases the relationship of the DCMs with the RM were linear. There were no statistically significant differences between the regression equations calculated for each of the four studies; therefore, the results could be combined. The relationship is described by the following regression equations: NGSP-HbA(1c) = 0.915(IFCC-HbA(1c)) + 2.15% (r(2) = 0.998); JDS/JSCC-HbA(1c) = 0.927(IFCC-HbA(1c)) + 1.73% (r(2) = 0.997); Swedish-HbA(1c) = 0.989(IFCC-HbA(1c)) + 0.88% (r(2) = 0.996). CONCLUSION: There is a firm and reproducible link between the IFCC RM and DCM HbA(1c) values.

Blood Chemical Analysis↗

Haemoglobin A1c: analysis and standardisation.

The measurement of glycated haemoglobin has become centrally important in the monitoring of glycaemic control in the patient with diabetes. A number of analytical techniques have been described to measure this important haemoglobin fraction, and the fraction measured depends on the technique used; this has resulted in laboratories reporting different fractions i.e., HbA1, HbA1c and total glycated haemoglobin. This paper outlines methods currently used in clinical laboratories for the measurement of this glycated fraction. It describes the principles behind these methods and goes on to describe the new IFCC reference method, which will be used in the future to standardise methods used in the clinical laboratory. Analytical goals and factors that interfere with methods are also discussed.

Chromatography, High Pressure Liquid↗