PubMed HealthSearch

Biomedical subjects

L A Kock

Publications and source records attributed to L A Kock.

8 recordsLinked to original sources

In vitro lipolysis of human VLDL: effect of different VLDL compositions in normolipidemia, familial combined hyperlipidemia and familial hypertriglyceridemia.

Suboptimal lipolysis of very low density lipoproteins (VLDL) due to reduced substrate affinity for lipoprotein lipase (LPL) may contribute to the accumulation of apolipoprotein (apo) B in familial combined hyperlipidemia (FCH) or the characteristic increase in triglyceride-rich lipoproteins in familial hypertriglyceridemia (FHTG). To investigate this hypothesis in detail, the VLDL composition and substrate affinity for lipoprotein lipase was determined in 22 normolipidemic controls, 16 FCH probands, and 12 FHTG subjects. VLDL from FCH subjects were enriched in cholesterol and phospholipid. VLDL from FHTG subjects were enriched in triglycerides, cholesterol and phospholipid. Potential apolipoprotein regulators of LPL activity including apo C-II, apo C-III and apo E were not significantly different between FCH and controls when expressed per VLDL apo B. High apo C-III concentrations were present in FHTG-VLDL, and the apo C-III/E-ratio was significantly higher than in FCH- and control-VLDL. An increase of C-III-0, the desialylated isoform, was observed in FHTG-VLDL. The kinetic indicators for in vitro triglyceride hydrolysis by LPL, KM and VMAX, were not significantly different between the groups. KM values measured in vitro were remarkably and consistently high (1.54 mmol VLDL-TG/I), predicting saturation of LPL when VLDL-TG levels exceed 5.5 mmol/l (2 times KM + 2S.D.). In conclusion, VLDL from individuals with FCH or FHTG are normal substrate for lipoprotein lipase in spite of significant differences in lipid and apolipoprotein composition. The high apo C-III content of FHTG-VLDL supports a role in the expression of hypertriglyceridemia.

Animals

17 beta-Estradiol improves postprandial lipid metabolism in postmenopausal women.

We studied the effect of 2 mg micronized 17 beta-estradiol replacement therapy, administered orally during 6 weeks, on postprandial lipid and retinyl palmitate (RP) metabolism. In the human postprandial state, atherogenic chylomicron remnant particles are produced. RP is incorporated into the core of newly synthesized chylomicrons and can be used as a marker of chylomicrons and chylomicron remnants. Six normolipidemic (plasma cholesterol, 5.63 +/- 0.83 mmol/L; plasma triglycerides, 1.47 +/- 0.69 mmol/L) postmenopausal women (amenorrhea > 1 yr; aged 55.5 +/- 4.0 yr) received an oral fat load (50 g/m2 fat as cream, with 60,000 IU RP/m2) before and after 6 weeks of 17 beta-estradiol treatment. Plasma RP areas under the curve decreased significantly from 27.1 +/- 15.9 to 16.6 +/- 13.2 mg/h.L-1 (P = 0.01). Fasting cholesterol concentrations in intermediate density lipoproteins decreased significantly. Fasting and postprandial plasma triglyceride levels did not change. These findings indicated that 17 beta-estradiol improved the postprandial elimination of potentially atherogenic lipoprotein remnants.

Diterpenes

Apolipoprotein E2/E3/E4 genotyping with agarose gels.

Here we report an improved, simple method to assign the human apolipoprotein (apo) E genotype and its isoforms, apo E2, apo E3, and apo E4. Genomic DNA was amplified with specific primers that included the polymorphic region of amino acids 112 and 158. Digestion of the product with Hhal resulted in unique fragments that were separated on Meta-Phor agarose instead of polyacrylamide. The pattern of unique DNA fragments obtained unequivocally characterizes the different apo E alleles.

Apolipoprotein E2

Postprandial apolipoprotein B100 and B48 metabolism in familial combined hyperlipidaemia before and after reduction of fasting plasma triglycerides.

Hepatic VLDL overproduction in familial combined hyperlipidaemia (FCH) may delay the clearance of atherogenic apolipoprotein (apo) B containing particles. We investigated if normalization of fasting plasma triglycerides (TG) by hypolipidaemic treatment results in improved metabolism of apo B48 and apo B100 in six male subjects with FCH and compared them to six normolipidaemic controls. The FCH patients were studied before (TG, 5.2 +/- 1.2 mmol l-1; mean +/- SEM) and after therapy (TG, 2.1 +/- 0.3 mmol l-1) with either simvastatin (n = 4) or combined therapy with gemfibrozil (n = 2). The postprandial changes of apo B100 and apo B48 were studied after a single oral fat meal (24 h; 50 gram fat m-2). Changes in triglyceride rich particles (TRP; d < 1.006 g ml-1) and remnant fractions (REM; d:1.006-1.019 g ml-1) of apo B were quantitated by scanning silverstained SDS-PAGE (4-15%). Apo B48 in fasting TRP in untreated and treated FCH was 15% and 14% of total apo B, and 6% in controls (P < 0.05). In controls, postprandial B48 increased maximally at 4 h by 81% in TRP and by 137% in REM compared to baseline. In treated FCH, the postprandial apo B48 pattern normalized in TRP compared to the untreated state. Postprandial apo B100 in controls decreased in TRP and REM by 33% and 18% (P < 0.05). In untreated and treated FCH, postprandial apo B100 remained unchanged vs. baseline in TRP and in REM suggesting hypersecretion of VLDL. The elimination of B100--assessed as area under the curve--in TRP (32.5 +/- 3.6 au.h; mean +/- SEM) and REM fractions (33.2 +/- 3.1 au.h), improved significantly after treatment (21.0 +/- 2.8 and 20.4 +/- 3.3 au.h, respectively). The apo B48 clearance in TRP fractions was improved after treatment (4.3 +/- 1.4 au.h vs. 2.9 +/- 1.2 au.h; P = 0.06), but not in REM fractions (2.8 +/- 1.0 au.h vs. 1.8 +/- 0.5 au.h; NS). In conclusion, in FCH subjects with apo B100 hypersecretion and increased fasting plasma apo B48 levels, reduction of fasting plasma TG improved, but did not normalize, TRP apo B48 and B100 metabolism. However, therapy normalized postprandial apo B100 remnant metabolism. Impaired postprandial apo B metabolism may be instrumental in the development of premature atherosclerosis in FCH subjects.

Adult

Simvastatin improves chylomicron remnant removal in familial combined hyperlipidemia without changing chylomicron conversion.

It is unknown whether the clearance of atherogenic chylomicron remnants and the postprandial lipoprotein metabolism in general can be improved by 3-hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) reductase inhibitors in subjects with familial combined hyperlipidemia (FCH). Therefore, the postprandial chylomicron remnant clearance was studied in nine normolipidemic untreated controls and seven FCH patients before and after treatment with simvastatin using an oral vitamin A-fat load (24 hours, 50 g/m2). Treatment with simvastatin reduced plasma cholesterol level by 16% (mean +/- SEM, 8.1 +/- 0.8 v 6.8 +/- 0.8 mmol/L; P < .05) and plasma apolipoprotein (apo) B level by 19% (1.6 +/- 0.2 v 1.3 +/- 0.2 g/L; P < .05). Plasma apo E level (89.6 +/- 21.0 mg/L) was reduced by 29% (63.5 +/- 14.1 mg/L; P < .05). High-density lipoprotein cholesterol (HDL-C) and low-density lipoprotein cholesterol (LDL-C) levels did not change; consequently, the reductions seen had been due to a decrease in very-low-density lipoprotein (VLDL) levels. Fasting plasma triglyceride (30% reduction) and plasma apo C-II (31% reduction) levels did not change significantly. Mean postheparin plasma lipoprotein lipase (LPL) activity increased by 13% after treatment (90.4 +/- 19.8 v 102.6 +/- 20.3 mU/mL; P < .05), but hepatic lipase (HL) activity was not altered. The clearance of chylomicrons (Sf > 1,000), expressed as the area under the 24-hour retinyl palmitate curve, did not change with simvastatin (52.8 +/- 12.9 v 51.8 +/- 13.4 h.mg-1/L).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Lipoprotein(a) plasma concentrations associated with lipolytic activities in eight kindreds with familial combined hyperlipidemia and normolipidemic subjects.

The relationship between lipoprotein(a) [Lp(a)] and metabolism of triglyceride-rich lipoproteins (TRL) was studied in 58 untreated patients with familial combined hyperlipidemia (FCH) from eight different kindreds, 17 spouse controls, and 17 unrelated controls. Lp(a) plasma concentrations were not significantly different between FCH subjects (343 +/- 61 mg/L, mean +/- SEM) and controls (249 +/- 52 mg/L). In FCH, log-transformed Lp(a) levels correlated positively with postheparin lipoprotein lipase ([LPL] r = .61, P = .0002) and hepatic lipase ([HL] r = .46, P = .008) activities and total plasma cholesterol level (r = .30, P = .03). In controls, Lp(a) correlated with LPL (r = .50, P = .04) and total plasma cholesterol level (r = .51, P = .003). In eight FCH patients, treatment with the 3-hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) reductase inhibitor simvastatin resulted in significantly increased mean LPL activities and plasma Lp(a) concentrations. In three of these FCH patients, repeated measurements during 1 year demonstrated that changes in Lp(a) concentrations were paralleled by similar changes in LPL activity, but not HL activity. The observed correlation between postheparin plasma lipolytic activities and Lp(a) plasma concentrations suggests a connection between the metabolism of TRL and Lp(a).

Adult

Reverse cholesterol transport: relationship between free cholesterol uptake and HDL3 in normolipidaemic and hyperlipidaemic subjects.

High density lipoproteins (HDL) are responsible for the Reverse Cholesterol Transport (RCT). The role of the composition of the HDL particle in RCT, involving free cholesterol (chol) uptake from cell membranes, is not completely understood. We have therefore studied the uptake capacity from subjects with a wide variety of plasma HDL cholesterol concentrations in an HDL-receptor free model consisting of bovine heart mitochondrial membranes labeled with [14C]cholesterol. HDL were isolated by molecular sieve chromatography from fresh plasma samples of eight subjects with low plasma HDL chol concentrations (< or equal to 1.0 mmol L-1) and 15 subjects with normal HDL chol concentrations. The latter were subdivided into an intermediate (HDL chol: 1.0-1.4 mmol L-1; n =9) and a high HDL chol group (> or equal to 1.4 mmol L-1; n = 6). In the HDL fractions isolated by chromatography (cHDL), total chol and apolipoprotein (apo) AI were measured. Free chol uptake was significantly decreased by 32% in the tertile with the lowest plasma HDL chol (49.1 +/- 15.8 arbitrary units; mean +/- SD), compared to the tertile with high HDL chol (72.1 +/- 16.6 au). Linear regression analysis showed a positive correlation between the free chol uptake and plasma HDL3 concentrations (r = 0.61; P < 0.01), HDL chol (r = 0.56; P < 0.01), HDL associated apo AI (R = 0.46; P < 0.05), cHDL apo AI (r = 0.56; P < 0.05) and cHDL chol (r = 0.46; P < 0.05) in all subjects combined. Stepwise multiple-regression analysis confirmed the association of [14C] cholesterol uptake with plasma HDL3 concentrations (beta, 0.61; P = 0.004). No correlations were found between free chol uptake and total plasma apo AI (r = 0.26. ns) or HDL2 (r = 0.27; ns). After an oral fat load in four FCH patients, free chol uptake paralleled the changes in plasma HDL 3 chol concentrations. We conclude that HDL3 is involved in the early steps of RCT and low HDL 3 levels may result in less efficient RCT in hypertriglyceridemia.

Adult

Impaired chylomicron remnant clearance in familial combined hyperlipidemia.

Postprandial chylomicron remnant clearance was studied in six patients with familial combined hyperlipidemia (FCH) and seven control subjects by using an oral retinyl palmitate (RP) fat-loading test. The chylomicron remnant clearance (Sf < 1,000 fraction), expressed as the area under the RP curve (AUC-RP), was delayed in FCH subjects (65.05 +/- 12.84 hours x [mg/L]) compared with control subjects (25.1 +/- 5.4 hours x [mg/L]; p = 0.01). Postprandial lipoprotein particle size and composition in the Sf > 1,000 fraction were different between FCH and control subjects as analyzed by molecular-sieve chromatography. Fasting high density lipoprotein cholesterol was lower in FCH patients (0.54 +/- 0.09 mmol/L) than in control subjects (0.89 +/- 0.05 mmol/L; p < 0.01). Mean plasma postheparin lipoprotein lipase and hepatic lipase activities were similar between FCH patients (94 +/- 25 and 427 +/- 57 milliunits/mL, respectively) and control subjects (126 +/- 16 and 362 +/- 33 milliunits/mL, respectively). In FCH, a 54% reduction (p < 0.05) of plasma triglycerides to 2.63 +/- 0.41 mmol/L by drug treatment resulted in an enhanced, but not normalized, clearance of chylomicron remnants (39.4 +/- 6.0 hours x [mg/L]). Univariate regression analysis revealed that in FCH subjects the changes in fasting plasma apolipoprotein C-III concentrations after therapy were significantly associated with the changes in chylomicron remnant AUC-RP (r = 0.87; p = 0.02). Delayed elimination of atherogenic chylomicron remnants may contribute to the increased risk of premature atherosclerosis in FCH.

Adult