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Biomedical subjects

G R Thompson

Publications and source records attributed to G R Thompson.

At least 37 records · Page 2Linked to original sources

Extent and severity of atherosclerotic involvement of the aortic valve and root in familial hypercholesterolaemia.

OBJECTIVE: To compare the frequency of valvar and supravalvar aortic stenosis in homozygous and heterozygous familial hypercholesterolaemia (FH). DESIGN: Analysis of life time cholesterol exposure and prevalence of aortic atherosclerosis in 84 consecutive cases attending a lipid clinic. SETTING: A tertiary referral centre in London. PATIENTS: Outpatients with FH (six homozygous, 78 heterozygous). INTERVENTIONS: Maintenance of lipid lowering treatment. MAIN OUTCOME MEASURES: Calculated cholesterol x years score (CYS) and echocardiographic measurement of aortic root diameter, aortic valve thickness, and transaortic gradient. RESULTS: Four homozygotes with a mean (SD) CYS of 387 (124) mmol/1 x years had severe aortic stenosis (treatment started after seven years of age), whereas the other two had echocardiographic evidence of supravalvar thickening but no aortic valve stenosis (treatment started before three years of age). On multivariate analysis, mean transaortic gradient correlated significantly with CYS (mean = 523 (175) mmol/1 x years) in heterozygotes (p = 0.0001), but only two had severe aortic valve and root involvement. CONCLUSIONS: In patients with familial hypercholesterolaemia, aortic stenosis is common in homozygotes, and aortic root involvement is always present despite the lower CYS than in heterozygotes. It appears to be determined by short term exposure to high cholesterol concentrations in early life. Conversely, aortic root and valve involvement are rare in heterozygotes and occur only with severe, prolonged hypercholesterolaemia, possibly accelerating age related degenerative effects.

Adolescent↗

New prospects for lipid-lowering drugs.

The advent of 3-hydroxy-methylglutaryl Co-enzyme A (HMG-CoA) reductase inhibitors has dramatically improved the treatment of dyslipidaemia and the prevention of atherosclerosis over the past 10 years. Similar but less marked benefit had previously been demonstrated for fibrates and bile acid sequestrants, which were first introduced over 30 years ago and are still in use. The discovery that fibrates are ligands for peroxisome proliferator activated receptors (PPARs) may lead to innovations in the future. However, most of the compounds now undergoing clinical trials are either HMG-CoA reductase inhibitors or bile acid sequestrants, which is indicative of the current emphasis on lowering low density lipoprotein (LDL) cholesterol. Drugs in an earlier stage of development include inhibitors of squalene synthase, which have yet to fulfil their initial promise, and of acylcholesterolacyltransferase (ACAT) and microsomal triglyceride transfer protein (MTP). Most of the earlier ACAT inhibitors were poorly absorbed, but compounds with better bioavailability hold considerable promise by virtue of their ability to inhibit ACAT in liver and arterial wall macrophages. MTP inhibitors have the potential to drastically reduce apolipoprotein B (apoB) secretion, but safety issues could negate this advantage. Thus, despite the impact of statins, the development of new lipid-modulating drugs continues to be a dynamic field of research.

Journal Article↗

HMG-CoA reductase is not the site of the primary defect in phytosterolemia.

Phytosterolemia is an autosomal recessive disorder characterized by the excessive absorption, reduced excretion, and consequent high tissue and plasma levels of plant sterols, by the presence of tendon xanthomas, and by premature atherosclerosis. Low HMG-CoA reductase (HRase) activity and mass have been reported in liver and mononuclear leucocytes and low mRNA levels in liver from phytosterolemic subjects. These results led to the proposal that the primary defect in this condition involves the HRase gene locus. We examined this hypothesis in phytosterolemic subjects and heterozygous parents from four unrelated families. A variable number tandem repeat (VNTR) polymorphism of the HRase gene in the three informative families and a ScrFI restriction fragment length polymorphism (RFLP) within intron 2 of the gene in one of these families, segregated independently of the disease phenotype. Biological parentage was confirmed in the family in whom both polymorphisms failed to segregate with the disorder. These results conclusively exclude the HRase gene locus as the site of the primary defect in phytosterolemia. The study was extended by examining plasma levels of mevalonic acid and lathosterol, both markers of cholesterol biosynthesis, in response to cholestyramine, a bile acid sequestrant that is known to up-regulate HRase. Oral administration of cholestyramine resulted in a substantial (7.7-fold) increase in mevaIonic acid levels in two phytosterolemic subjects, compared with a 2.2-fold rise in their obligate heterozygote parents and a 2.3-fold increase in three healthy control subjects. The lathosterol/cholesterol (L/C) ratio showed a quantitatively similar response. Baseline levels of mevalonate and the L/C ratio were low in the phytosterolemic patients in conformity with reports of reduced cholesterol biosynthesis and HRase activity in this disorder. These functional data provide support for the concept that the primary defect in phytosterolemia does not affect a trans gene locus responsible for the constitutive expression or regulation of HMG-CoA reductase.

Adolescent↗

Angiographic evidence for the role of triglyceride-rich lipoproteins in progression of coronary artery disease.

Recent development in angiographic technology have enabled quantitative assessment of the effects of treatment on coronary arterial lesions. A meta-analysis of 12 angiographic studies showed that treatment to reduce low density lipoprotein (LDL) cholesterol levels decreases angiographic progression of coronary artery disease (CAD) by one-third, and increases the chance of lesion regression two-fold. However, these studies also show that the response to treatment to LDL cholesterol levels varies according to the severity of the coronary artery stenosis; lesions were seen to regress with treatment only if there was > 50% coronary artery stenosis at baseline. Other variables that have been implicated in CAD progression include intermediate density lipoprotein (IDL) non-high density lipoproteins (non-HDL) cholesterol and very low density lipoproteins (VLDL). Levels of IDL have been shown to decrease to a greater extent in patients whose lesions did not progress than in patients showing lesion progression. In untreated patients, an increase in non-HDL cholesterol was associated with an increase in risk of disease progression. In contrast, the most important predictor in treated patients was apo CIII (a marker of triglyceride-rich lipoprotein metabolism). Possible mechanistic links between triglyceride levels and CAD progression are discussed.

Apolipoprotein C-III↗

The effect of cholesterol reduction with fluvastatin on aortic compliance, coronary calcification and carotid intimal-medial thickness: a pilot study.

BACKGROUND: Regression of atheroma with reduction of cholesterol levels is recognized to occur, but less is known about reversal of sclerosis. Non-invasive indices of sclerosis have largely been based on carotid ultrasound measurements. OBJECTIVE: To measure aortic compliance, coronary calcification and carotid intimal-medial thickness during reduction of cholesterol level in patients with and without coronary artery disease. METHODS: We studied 64 hypercholesterolaemic patients, 24 with and 40 without coronary artery disease. All were administered fluvastatin for 1 year. Aortic compliance was assessed using magnetic resonance and coronary calcification score was determined by electron beam computed tomography. Carotid intimal-medial thickness in 34 patients was measured by carotid ultrasound means. RESULTS: There was a rise in high-density lipoprotein cholesterol level and falls in total cholesterol level, low-density lipoprotein cholesterol level, low: high-density lipoprotein ratio, triglyceride level and very-low-density lipoprotein cholesterol level. Coronary artery disease patients had a higher coronary calcification score (442 +/- 551) than did other patients (269 +/- 724, P = 0.0002). For both groups there was a small rise in coronary calcification score during the study. Mean aortic compliance rose and blood pressure and carotid intimal-medial thickness fell. Analysis revealed significant correlations between change in mean aortic compliance and changes in high-density lipoprotein level (r = 0.3, P = 0.036), very-low-density lipoprotein level (r = -0.31, P = 0.038) and low: high-density lipoprotein ratio (r = -0.35, P = 0.014). There was no significant difference in these changes between the two patient groups. CONCLUSION: An improvement in aortic compliance over 1 year indicates that increase in high-density lipoprotein level, decrease in very-low-density lipoprotein level and improvement in low: high-density lipoprotein ratio caused by administration of fluvastatin beneficially influenced vascular pathophysiology in hypercholesterolaemic patients with and without coronary artery disease. In those patients studied with carotid ultrasound means, carotid intimal-medial thickness decreased from 1.09 to 0.87 mm (P = 0.004), corroborating these results.

Anticholesteremic Agents↗

Direct association between the hepatic secretion of very-low-density lipoprotein apolipoprotein B-100 and plasma mevalonic acid and lathosterol concentrations in man.

Apolipoprotein B-100 (apo B) is the principal structural and functional protein of the pro-atherogenic lipoproteins, but its homeostasis in man has not been clearly established. The hepatic availability of cholesterol substrate may be a determining factor. We examined whether there was a direct correlation between plasma concentrations of mevalonic acid (MVA) and lathosterol (indices of in vivo cholesterol synthesis) and hepatic secretion of very-low-density lipoprotein (VLDL) apo B in 13 normolipidaemic, healthy male subjects. The secretion of VLDL apo B was measured using a primed constant intravenous infusion of 1-[13C]-leucine (1 mg/kg per h) over 8 h. Gas-chromatography mass spectrometry (GCMS) was used to derive isotopic enrichment of apo B and fractional turnover rate was calculated using a monoexponential function. There was a highly significant positive correlation between the absolute secretion rate (ASR) of VLDL apo B and the plasma concentrations of mevalonic acid (r = 0.72, P = 0.005) and lathosterol (r = 0.81, P = 0.001) and the lathosterol:cholesterol ratio (r = 0.79, P = 0.001). In multiple regression analysis, these correlations remained significant after adjusting for waist circumference, age, apolipoprotein E genotype and dietary fat intake. The data further support the notion that the availability of cholesterol substrate regulates the hepatic secretion rate of apo B.

Adult↗

Upregulation of cholesterol synthesis after acute reduction of low density lipoprotein by apheresis in normocholesterolaemic subjects: evidence for a threshold effect.

The influence of low density lipoproteins (LDL) in the plasma on the regulation of cholesterol biosynthesis is not clear. We studied the changes in plasma mevalonic acid (MVA) concentration and the lathosterol/cholesterol (L/C) ratio, which are well established indices of whole body cholesterol synthesis, in four normocholesterolaemic subjects after each had undergone LDL apheresis on two occasions. LDL apheresis of 75% of the calculated plasma volume reduced LDL-cholesterol by 44% to 1.5 +/- 0.2 mmol/l without changing plasma MVA levels or L/C ratios. Apheresis of 125% of the calculated plasma volume decreased plasma LDL-cholesterol by 69% to 0.9 +/- 0.2 mmol/l, with significant increases in plasma MVA and L/C ratio on the day after the procedure. These results imply that LDL-cholesterol is an integral part of the sterol regulatory pool and suggest that plasma levels cannot be lowered below 1-1.4 mmol/l in normal subjects without upregulating cholesterol biosynthesis.

Adult↗

What targets should lipid-modulating therapy achieve to optimise the prevention of coronary heart disease?

Analysis of trials which have investigated the effects of lowering low density lipoprotein (LDL) levels on coronary heart disease (CHD), as determined by changes on quantitative coronary angiography and in the incidence of cardiovascular events, suggests that the percentage decrease in LDL cholesterol provides a better index of outcome than does its absolute level on treatment. Additional data suggest that it may be advantageous to employ therapy which not only lowers LDL cholesterol but also decreases serum triglyceride and/or increases HDL cholesterol. These conclusions have important implications for future guidelines on CHD prevention.

Cholesterol, LDL↗

The role of low density lipoprotein apheresis in the treatment of familial hypercholesterolemia.

The chief indication for low density lipoprotein (LDL) apheresis is the treatment of homozygous familial hypercholesterolemia (FH), a potentially fatal condition that responds poorly to conventional therapy. Dextran sulfate/cellulose adsorption columns (Kaneka) and on-line heparin precipitation (HELP) are the most popular systems used in LDL apheresis. Weekly or biweekly procedures plus concomitant drug therapy enable LDL cholesterol to be maintained at 30-50% of its untreated level, with regression of xanthomas, arrest of progression of coronary atherosclerosis, and improved life expectancy. However, aortic stenosis may progress despite apheresis and necessitate valve replacement. Better control of hypercholesterolemia results from combining apheresis with a new 3-hydroxy-3-methylglutaryl coenzyme A reductase inhibitor, atorvastatin. LDL apheresis can also be useful in treating drug-resistant FH heterozygotes with coronary disease. However, the FH Regression Study showed no evidence that reduction by apheresis of both LDL and lipoprotein(a), was more advantageous than reduction by combination drug therapy of LDL alone.

Blood Component Removal↗

The familial hypercholesterolemia regression study: a randomized comparison of therapeutic reduction of both low-density lipoprotein and lipoprotein(a) versus low-density lipoprotein alone.

Lipoprotein (a) [Lp (a)] is a risk factor for coronary heart disease (CHD), especially in the presence of a raised low-density lipoprotein (LDL)-cholesterol (LDL-C). To ascertain whether reduction of both LDL and Lp(a) is more advantageous than reduction of LDL alone, patients with heterozygous FH and CHD were selected randomly to receive either LDL apheresis fortnightly plus simvastatin 40 mg/day or colestipol 20 g plus simvastatin 40 mg/day. Quantitative coronary angiography was undertaken before and after 2.1 years. Changes in serum lipids were similar in both groups except for the greater reduction of LDL-C and Lp(a) by apheresis. There were no significant differences in primary angiographic endpoints, and none of the angiographic changes correlated with Lp(a). Although LDL apheresis plus simvastatin was more effective than colestipol plus simvastatin in reducing LDL-C and Lp(a), it was not more beneficial in influencing coronary atherosclerosis. Decreasing Lp(a) seems unnecessary if LDL-C is reduced below 130 mg/dl.

Colestipol↗

Inhibition of cholesterogenesis decreases hepatic secretion of apoB-100 in normolipidemic subjects.

We examined the effect of simvastatin, an inhibitor of 3-hydroxy-3-methylglutaryl coenzyme A reductase, on the kinetics of very low-density lipoprotein apolipoprotein B-100 (VLDL apoB) in 13 normolipidemic men in a placebo-controlled crossover study. Simvastatin significantly decreased the plasma concentrations of low-density lipoprotein (LDL) cholesterol by 36%, triglycerides by 26%, mevalonic acid by 34%, and lathosterol by 32%. Hepatic secretion of VLDL apoB was measured using a primed constant intravenous infusion of [1-13C]leucine with monitoring of isotopic enrichment of apoB by gas chromatography-mass spectrometry; fractional turnover rate was derived using a monoexponential function. Simvastatin decreased VLDL apoB pool size by 53% and the hepatic secretion rate of VLDL apoB by 46% but did not significantly alter its fractional catabolism. The change in hepatic VLDL apoB secretion was significantly and independently correlated with changes in plasma mevalonic acid and lathosterol concentrations and the lathosterol-to-cholesterol ratio. The data support the hypothesis that the rate of de novo cholesterol synthesis directly regulates the hepatic secretion of VLDL apoB in normal subjects.

Adult↗

Prolonged inhibition of cholesterol synthesis explains the efficacy of atorvastatin.

HMG-CoA reductase inhibitors or statins are effective in both the primary and secondary prevention of coronary heart disease, the extent of benefit being proportional to the reduction in low density lipoprotein (LDL) cholesterol achieved. Atorvastatin, a newly licensed compound, reportedly lowers LDL with greater efficacy than other statins. The mechanism of this action was, therefore, explored in twenty patients with refractory familial hypercholesterolemia who received in a single-blind sequence simvastatin 40 mg/day, placebo and atorvastatin 10 mg/day each for 4 weeks. At the end of the placebo period the effects of single 40-mg doses of simvastatin and atorvastatin on plasma levels and urinary excretion of mevalonic acid, indices of HMG-CoA reductase activity, were compared. Administration of atorvastatin 10 mg daily for 1 month lowered LDL cholesterol by 32.5%, compared with placebo (P = 0.0001), which was 4.5% less than the decrease after simvastatin 40 mg daily (P = 0.33). The area under the plasma curve and urinary mevalonic acid/ creatinine ratio were both significantly less during the 24 h after a single dose of atorvastatin 40 mg than after a single dose of simvastatin 40 mg (P < 0.01). These findings suggest that the greater efficacy of atorvastatin compared with simvastatin is due to more prolonged inhibition of HMG-CoA reductase, presumably reflecting longer residence of atorvastatin or its active metabolites in the liver.

Anticholesteremic Agents↗

Decreased production of low density lipoprotein by atorvastatin after apheresis in homozygous familial hypercholesterolemia.

Apheresis only partially controls raised low density lipoprotein cholesterol levels in patients with homozygous familial hypercholesterolemia, who usually respond poorly to lipid-lowering drugs. The efficacy and mechanism of action of a new 3-hydroxy-3-methylglutaryl coenzyme A reductase inhibitor, atorvastatin, was therefore investigated in seven homozygotes undergoing apheresis. One receptor-negative and six receptor-defective homozygotes undergoing plasma exchange or LDL apheresis every 2 weeks were studied during 2 months each on placebo and on atorvastatin 80 mg daily. Changes in plasma lipids and mevalonic acid, an index of cholesterol synthesis, were measured and the kinetics of the rebound of low density lipoprotein cholesterol and apolipoprotein B after apheresis were analyzed. All subjects had significant improvements on atorvastatin. Mean decreases in low density lipoprotein cholesterol were 31% greater both pre- and post-apheresis on atorvastatin compared with placebo, accompanied by a 63% decrease in mevalonic acid. Percentage changes in low density lipoprotein cholesterol and mevalonic acid were closely correlated (r = 0.89, P = 0.007). The mean production rates of low density lipoprotein cholesterol and apolipoprotein B were 21% and 25% lower, respectively, on atorvastatin than on placebo (P < 0.005 and <0.02) but changes in mean fractional clearance rates were not statistically significant. We conclude that atorvastatin enhances the efficacy of plasma exchange and low density lipoprotein apheresis in patients who lack low density lipoprotein receptors. This effect appears to be due to marked inhibition of cholesterol synthesis which results in a decreased rate of production of low density lipoprotein.

Adolescent↗

Serum lipoprotein(a) level is related to thrombin generation and spontaneous intermittent coronary occlusion in patients with acute myocardial infarction.

BACKGROUND: Thrombotic occlusion of the infarct-related coronary artery is often intermittent in the early, evolving phase of acute myocardial infarction. To assess their relationship to this pattern of coronary occlusion, serum or plasma concentrations of cholesterol, triglyceride, lipoprotein(a), and coagulation and fibrinolytic factors were measured in venous blood before the initiation of thrombolytic therapy. METHODS AND RESULTS: Thirty-two patients (23 men, 9 women: age, 30 to 70 years) with acute myocardial infarction received intravenous recombinant tissue plasminogen activator (20 to 60 megaunits) within 6 hours of the onset of symptoms. Continuous ECG ST-segment recording demonstrated intermittent occlusion of the infarct-related coronary artery in 12 patients (group 1) before the start of thrombolytic treatment and persistent occlusion in 20 patients (group 2). Groups 1 and 2 were similar in age, sex, race, duration of symptoms, blood sample collection time, location of the infarct-related coronary artery, and extent of coronary artery disease. The serum level (median [interquartile range]) of lipoprotein(a) was 34 (13 to 47) mg/dL versus 11.5 (5 to 27) mg/dL (P = .02), and the plasma level (median [interquartile range]) of thrombin-antithrombin III complex was 10.85 (6.4 to 21.5) versus 6.8 (4.2 to 8.7) micrograms/L-1 (P < .04) in groups 1 and 2, respectively. The levels of the other factors were similar in both groups. CONCLUSIONS: The phenomenon of spontaneous intermittent closure and reopening of coronary arteries early during acute myocardial infarction in humans is associated with a higher level of lipoprotein(a) and of a marker of thrombin generation, suggesting that lipoprotein(a) and thrombin are closely related to coronary patency in these patients.

Acute Disease↗

Apolipoprotein E1-Hammersmith (Lys146-->Asn;Arg147-->Trp), due to a dinucleotide substitution, is associated with early manifestation of dominant type III hyperlipoproteinaemia.

Apolipoprotein E (apoE) is one of the major protein constituents of chylomicron and very low density lipoprotein (VLDL) remnants and plays a central role as a ligand in the receptor-mediated uptake of these particles by the liver. Here we describe a new variant of apoE, apoE1-Hammersmith, which is associated with dominantly expressed type III hyperlipidaemia. The propositus, aged 26, developed tubero-eruptive xanthomas at the age of 3, her daughter developed similar lesions at age 7 but her son, aged 3, shows no clinical abnormality so far. All three cases had an apoE3E1 phenotype and a broad beta band on lipoprotein electrophoresis. Cysteamine modification resulted in a shift of apoE1 to the apoE2 isoform position, indicating that the mutation leading to apoE1-Hammersmith occurred on an apoE3 background. ApoE genotyping confirmed these results. Sequence analysis of DNA of the propositus was performed for exons 3 and 4 and revealed a dinucleotide substitution causing two amino acid changes at adjacent positions (Lys146-->Asn) and (Arg147-->Trp).

Adult↗

Plasma mevalonic acid, an index of cholesterol synthesis in vivo, and responsiveness to HMG-CoA reductase inhibitors in familial hypercholesterolaemia.

Fasting plasma mevalonic acid (MVA), an indicator of in vivo cholesterol synthesis, was measured in 35 patients with familial hypercholesterolaemia (FH) of whom 7 were treated with pravastatin 10-40 mg/day, 7 with simvastatin 10-40 mg/day and 21 with atorvastatin 80 mg/day. Reductions in low density lipoprotein (LDL) cholesterol and MVA on maximal dose therapy differed significantly between the three drugs: 34.7%, 42.9% and 54.0% (P = 0.0001), and 31.6%, 48.9% and 58.8% (P = 0.004), respectively. Patients on atorvastatin were subdivided according to whether their reduction in LDL cholesterol on treatment was above or below the mean percentage change for the whole group. Basal values of LDL cholesterol did not differ significantly, but above average responders had a significantly higher mean pre-treatment level of MVA (6.2 +/- 0.60 vs. 4.3 +/- 0.61 ng/ml, P < 0.05) than below average responders. When all three drug groups were pooled above average responders showed a significantly greater absolute decrease in MVA on treatment than below average responders (3.85 +/- 0.48 vs. 2.33 +/- 0.40 ng/ml, P < 0.05). However, there was no significant correlation between the magnitude of the decreases in LDL cholesterol and MVA. These findings suggest that FH patients who responded well to statins had a higher basal level of plasma MVA, i.e. a higher rate of cholesterol synthesis, which was more susceptible to pharmacological inhibition. The more marked cholesterol lowering effect of atorvastatin 80 mg/day presumably reflects, at least in part, its ability to inhibit HMG-CoA reductase to a greater extent than maximal recommended doses of pravastatin and simvastatin of 40 mg/day.

Adult↗