PubMed Health⌕ Search

Biomedical subjects

F T Lindgren

Publications and source records attributed to F T Lindgren.

At least 73 records · Page 4Linked to original sources

A comparison of heritable abnormal lipoprotein patterns as defined by two different techniques.

Eight plasma lipoprotein patterns currently employed in attempts to identify different forms of familial dyslipoproteinemia have been compared by two methods. The first (NIH method) is based on paper electrophoretic patterns produced by the four lipoprotein classes obtained by paper electrophoresis in albuminated buffer, coupled with the measurement of the total cholesterol of three of these lipoprotein classes and ascertainment of abnormal flotation of beta-migrating lipoproteins. The second (Donner method) is based on lipoprotein patterns obtained in the analytical ultracentrifuge, adapted for computer analysis and complemented by chemical determination of the concentration of chylomicrons (lipoproteins of S(f) degrees > 400). Pooled samples representing patients with five types of familial hyperlipoproteinemia and three different forms of inherited lipoprotein dificiency were separately analyzed. For six of the eight pools, both methods provided a distinctive lipoprotein pattern in terms of changes in one or more variables. For the remaining two pools, type IV hyperlipoproteinemia and the heterozygote for Tangier disease, both methods provided identical but not unique patterns. The results indicate that lipoprotein analyses obtained by either method may be used interconvertibly in further genetic and other clinical studies.

Abdomen↗

Particle size and protein content of six fractions of the Sf 20 plasma lipoproteins isolated by density gradient centrifugation.

A procedure is described for the separation of plasma S(f) > 400 and S(f) 20-400 lipoproteins each into three fractions. Serum samples are overlayered with a sodium chloride density gradient in a preparative ultracentrifuge tube and thin layers are removed at the top of the tube after successive centrifugations at different speeds in a swinging bucket rotor. The procedure was evaluated by electron microscopy of the S(f) > 400 lipoprotein fractions and schlieren analysis of the S(f) 20-400 lipoprotein fractions. Protein content of each fraction was measured by elemental N, C, H, and lipid-P analysis. Protein coverage was calculated for all fractions on the assumption that there is a surface layer 20 A thick. For the entire S(f) > 400 lipoprotein spectrum and for a part of the S(f) 20-400 lipoprotein distribution the proportion of surface covered by protein was constant (approximately 20% coverage). Therefore, for these portions of the lipoprotein spectrum, the increase in surface: volume ratio as particle size decreases is approximately compensated for by an increase in the weight percentage of protein.

Carbon↗

Particle-size distribution of very low density plasma lipoproteins during fat absorption in man.

The size distributions of electrophoretically isolated subfractions of the very low density human plasma lipoproteins have been determined using electron microscopy. The primary and secondary particles observed in plasma of normal subjects after fat ingestion appear to have similar size distributions. Particles produced by corn oil feeding can be fixed by the osmium tetroxide reaction while those produced by butter fat feeding could not be fixed or made visible by this technique. Good agreement between particle size as measured by electron microscopy and particle size as predicted by ultra-centrifugal analysis was obtained.

Blood Protein Electrophoresis↗

Effects of saturated and polyunsaturated dietary fat on the concentrations of HDL subpopulations in African green monkeys.

The effect of the type of dietary fat on the concentrations and compositions of high density lipoprotein (HDL) subpopulations was studied in groups of African green monkeys consuming 40% of calories as fat supplied as saturated fat (P/S = 0.3) or polyunsaturated fat (P/S = 2.2) in the presence of either 0.8 mg or 0.03 mg cholesterol/kcal. Plasma HDL cholesterol concentrations were lower in polyunsaturated fat-fed animals. The distribution of mass among HDL subfractions was assessed by analytic ultracentrifugation (AnUC), density gradient ultracentrifugation (DGUC), and polyacrylamide gradient gel electrophoresis (GGE). This made it possible to characterize and quantitate the HDL subpopulations HDL2b, HDL2a, HDL3a, HDL3b, and HDL3c (arranged in order of decreasing particle size and decreasing cholesterol content). Polyunsaturated fat-fed animals had lower concentrations of the large, cholesterol-rich HDL2b subpopulation, as well as higher concentrations of intermediate size HDL (HDL2a and HDL3a on the high cholesterol diet; HDL3a and HDL3b on the low cholesterol diet). Consistent with the observed fat-related redistribution of HDL mass, the saturated fat-fed monkeys had higher apo A-I/apo A-II ratios. The larger HDL often contained detectable apo E; however, the concentration of apo E in HDL was low in both saturated and polyunsaturated fat-fed animals. Thus, compared to saturated fat, dietary polyunsaturated fat induced the formation of smaller size HDL subpopulations and, therefore, an overall lower cholesterol content per particle for plasma HDL.

Animals↗