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B Angelin

Publications and source records attributed to B Angelin.

At least 55 records · Page 3Linked to original sources

Low-density lipoprotein metabolism and its association to plasma lipoprotein(a) in the nephrotic syndrome.

Patients with nephrotic syndrome have multiple abnormalities of lipoprotein metabolism, but the cause and exact nature of these abnormalities have not been established. In the present study we have determined the kinetics of plasma low-density lipoprotein (LDL) apoB in seven nephrotic patients demonstrating an elevated LDL apoB production rate (25.7 +/- 6.4 vs. 13.1 +/- 0.3 mgkg-1 day-1; P < 0.001) but a normal LDL apoB fractional catabolic rate (FCR) (0.31 +/- 0.04 vs. 0.33 +/- 0.008 pools day-1; NS) compared with 41 healthy control subjects. However, two out of the seven patients had a markedly low LDL apoB-FCR. Serum albumin was inversely correlated with the LDL apoB production rate (R = -0.82; P < 0.05). Plasma lipoprotein (a) [Lp(a)] levels were significantly (P < 0.001) increased in the nephrotic patients compared with control subjects. Significant correlations were observed between log Lp(a) and LDL apoB production rate (R = 0.90; P < 0.01), VLDL-cholesterol (R = 0.95; P < 0.001) and VLDL-triglycerides (R = 0.80; P < 0.05) respectively. In summary, the present study suggests that nephrotic hyperlipidaemia may be caused by at least two independent mechanisms. The elevated LDL apoB production rate is highly correlated with the prevailing levels of serum albumin, whereas some nephrotic patients seem to have a decreased LDL apoB clearance, suggesting impaired LDL receptor-mediated clearance. The present results also suggest that the elevated plasma Lp(a) levels in nephrosis are related to an increased hepatic synthesis rather than a decreased catabolism of lipoproteins.

Adolescent↗

The influence of age on low density lipoprotein metabolism: effects of cholestyramine treatment in young and old healthy male subjects.

OBJECTIVE: The plasma concentration of low density lipoproteins (LDL) increases with age, mainly as the result of a reduced clearance of LDL. Because the conversion of cholesterol to bile acids is reduced with age, we hypothesized that the response of plasma LDL to stimulation of bile acid production would be different in young and old subjects. DESIGN, SUBJECTS AND SETTING: Comparison of the response to cholestyramine treatment in two groups of normolipidaemic, normal weight males: seven young (23-34 years) and eight old (64-73 years). Outpatients at the metabolic ward of a university hospital given a standardized diet of natural type. INTERVENTION: Cholestyramine was given 8 g b.i.d. for 3 weeks and continued during the second LDL turnover study. MAIN OUTCOME MEASURES: Kinetics of autologous radiolabelled LDL before and during treatment. Mean values of lipoprotein lipid levels obtained during the two turnover studies. Changes in LDL particle composition and LDL receptor affinity between the two study periods. RESULTS: Both age groups responded with decreased levels of LDL cholesterol and apolipoprotein-B (apoB), the change being more pronounced in the old subjects. The LDL apoB fractional catabolic rate was increased by approximately 11% in both groups. In contrast, there was a reduced ability in the old subjects to sustain their production rates for LDL apoB with resin therapy, resulting in a 23% reduction in LDL input. No effect on the apparent LDL apoB synthesis rate was observed in the young subjects. LDL particles isolated from cholestyramine-treated subjects were triglyceride-enriched and cholesterol-depleted, and showed a lowered affinity for the LDL receptor in tissue culture studies. CONCLUSIONS: The results demonstrate that stimulation of bile acid production by cholestyramine treatment decreases LDL cholesterol levels in both young and old subjects. This therapy increases LDL apoB elimination in both age groups, but reduction of apparent LDL apoB production is only seen in old subjects.

Adult↗

Haemostatic markers, inflammatory parameters and lipids in male and female patients in the Angina Prognosis Study in Stockholm (APSIS). A comparison with healthy controls.

OBJECTIVES: To investigate haemostatic markers (especially fibrinolysis), inflammatory parameters and lipids in patients with stable angina pectoris. Special attention was paid to differences between male and female patients, and to the reactivity to exercise or the diurnal variation of certain parameters. SUBJECTS: Eight hundred and nine patients (31% females) and a matched healthy control group (n = 50). RESULTS: The patients had signs of disturbed fibrinolysis, with elevated plasma levels of tissue plasminogen activator (tPA) antigen and plasminogen activator inhibitor (PAI-1) activity at rest, and attenuated responses of tPA antigen and activity to exercise. Elevated levels of fibrinogen, white blood cell counts and orosomucoid were found, suggesting increased inflammatory activity, as well as a more disturbed lipid profile (higher triglycerides and lower HDL cholesterol levels) than among controls. Female patients had higher HDL cholesterol and lower triglyceride levels than male patients, but higher platelet counts and signs of enhanced platelet activity (beta-thromboglobulin excretion). In addition, female patients had lower white blood cell counts, suggesting lesser inflammatory activity. CONCLUSIONS: Patients with stable angina pectoris have signs of markedly disturbed fibrinolysis both at rest and in response to exercise, as well as signs of enhanced inflammatory activity and dyslipidemia. The observed sex differences suggest that male patients with stable angina pectoris may have a more lipid-related disease, whereas it may be more dependent on platelet function in females.

Angina Pectoris↗

Therapy for lowering lipoprotein (a) levels.

Elevated levels of lipoprotein (a), a complex between apolipoprotein (a) and LDL, indicate an increased risk of atherosclerosis and cardiovascular disease. The important genetic regulation of lipoprotein (a) is now relatively well understood, but the progress in finding ways of influencing plasma lipoprotein (a) has been disappointingly slow. Nicotinic acid, pharmacological doses of sex hormones and anabolic steroids, as well as LDL apheresis may provide sufficient lowering of lipoprotein (a) for the evaluation of clinical response. Presently, the most important aspect is to take an evaluated lipoprotein (a) level into consideration when deciding to institute particularly aggressive lipid lowering treatment in a given individual.

Arteriosclerosis↗

Adipose tissue lipoprotein lipase and hormone-sensitive lipase. Contrasting findings in familial combined hyperlipidemia and insulin resistance syndrome.

The metabolism of free fatty acids (FFA) is altered in two common atherosclerosis-promoting disorders: familial combined hyperlipidemia (FCHL) and insulin resistance syndrome (IRS). It has been suggested that these two conditions may have a common etiology. The enzymes lipoprotein lipase (LPL) and hormone-sensitive lipase (HSL) are rate-limiting steps for the turnover of fatty acids in adipose tissue, because they hydrolyze extracellular triglycerides in lipoproteins (LPL) and intracellular triglycerides in adipocytes (HSL). The present study was undertaken to simultaneously determine the activities of LPL and HSL in subcutaneous adipose tissue from male patients with FCHL and IRS. LPL and HSL activity was investigated in 10 nonobese FCHL patients and compared with 10 matched healthy nonobese subjects, and in 8 essentially normolipidemic IRS patients (who did not have overt diabetes mellitus) and compared with 9 nonobese matched control subjects. LPL activity was 43% lower in patients with IRS (P < .0005), as compared with control subjects, but HSL activity was not significantly different in the two groups, On the other hand, HSL activity was decreased by 45% in FCHL patients (P < .01), as compared with control subjects, but LPL activity was not significantly different in FCHL patients and the control group. In conclusion, triglyceride metabolism in adipose tissue is altered in both FCHL and IRS. However, the abnormalities observed involve impaired function of LPL in IRS and impaired function of HSL in FCHL, suggesting separate etiologies for the altered lipolysis in these conditions, at least in male subjects.

Adipose Tissue↗

No influence of simvastatin treatment on platelet function in vivo in patients with hypercholesterolemia.

Hypercholesterolemia is associated with platelet activation. Reduction of plasma cholesterol levels by the 3-hydroxy-3-methylglutaryl coenzyme A reductase inhibitor simvastatin has been found to improve certain aspects of platelet function in vitro and in vivo, but controlled trials are largely lacking. The present randomized, double-blind, crossover study was performed to evaluate whether 10- to 12-week treatment with simvastatin or placebo affects platelet function in vivo in 23 hypercholesterolemic men. Measurements were performed at rest and during mental stress. Simvastatin treatment reduced plasma total cholesterol levels by 18 +/- 2% and low density lipoprotein cholesterol levels by 26 +/- 2% (P < .001 for both), whereas high density lipoprotein cholesterol levels increased slightly (6 +/- 2%, P < .05). Platelet aggregability as assessed by filtragometry ex vivo was unaffected by simvastatin treatment both at rest and during mental stress. Plasma beta-thromboglobulin levels, which reflect platelet secretion, were also unaltered by simvastatin treatment both at rest (antilog of the mean: 20.2 versus 20.0 ng/mL during placebo) and during mental stress. Moreover, nocturnal excretion of 11-dehydrothromboxane B2 in urine did not differ between placebo and active treatment: 218 versus 216 ng/mmol creatinine, respectively. The corresponding values for urinary excretion of high-molecular-weight beta-thromboglobulin were 1.78 versus 1.92 ng/mmol creatinine. Thus, simvastatin treatment had no clear-cut effect on platelet function, as assessed by four different in vivo related platelet function variables, in hypercholesterolemic men.

Blood Platelets↗

Importance of estrogen receptors in hepatic LDL receptor regulation.

Treatment with pharmacological doses of estrogen is the most potent way to stimulate hepatic LDL receptor expression in vivo. The mechanism for this effect is unclear, in part because of difficulties in inducing this stimulation in vitro. A fundamental question, whether estrogen receptors (ERs) mediate this stimulation, has not been addressed. The aim of the current study was to determine the involvement of ERs in the estrogen-induced stimulation of LDL receptors. Treatment of rats with high doses of ethynylestradiol for 7 days increased the hepatic LDL receptor protein and mRNA levels four- and threefold, respectively. LDL receptor stimulation in estrogen-treated rats was not due to their reduced food intake because hepatic LDL receptor expression did not increase in rats fasted for 72 hours. Treatment with antiestrogen (tamoxifen or clomiphene) abolished the LDL receptor stimulatory effect of ethynylestradiol at both the protein and mRNA levels. Antiestrogen alone had no effect on hepatic LDL receptor expression and did not influence the strong resistance to dietary cholesterol normally present in rats. It is concluded that ERs are critically involved in the induction of hepatic LDL receptor expression by ethynylestradiol. The known role of growth hormone for the expression of hepatic ERs may therefore play a role in the modulation of the effects of estrogen on cholesterol metabolism and hepatic LDL receptors in the rat.

Animals↗

Contrasting effects of growth hormone and insulin-like growth factor I on the biological activities of endotoxin in the rat.

We previously demonstrated that GH potentiates the biological activities of endotoxin in the rat. In the present study, we wanted to determine if the potentiating effects of GH on the biological activities of endotoxin could be reproduced by insulin-like growth factor I (IGF-I). Endotoxin (5 mg/kg BW) was injected in rats primed with or without GH or IGF-I for 3 days. As expected, endotoxin administration markedly increased circulating tumor necrosis factor (TNF) and interferon-gamma (IFN gamma) and induced organ injury, hypoglycemia, and hyperlipidemia. In GH-primed rats, endotoxin induced a further increase of serum IFN gamma (but not TNF); and five out of six of those rats died within 15 h after giving endotoxin. However, little difference between endotoxin-treated rats with and without IGF-I priming could be seen. Furthermore, IGF-I infusion altered blood glucose, urea, and circulating ICF-I levels more than GH infusion. Therefore, IGF-I does not enhance the biological activities of endotoxin in the rat, suggesting that the enhancement of endotoxin effects by GH is via an IGF-I-independent pathway. Priming rats by GH (but not by IGF-I) induced a further increased response of serum IFN gamma but not TNF to subsequent endotoxin challenge, suggesting that IFN gamma rather than TNF is likely to be involved in this process.

Animals↗

Novel effects of histamine on lipoprotein metabolism: suppression of hepatic low density lipoprotein receptor expression and reduction of plasma high density lipoprotein cholesterol in the rat.

Histamine has been shown to be involved in atherosclerosis and coronary heart disease. Little information is available regarding the effects of histamine on lipoprotein metabolism. In the current study, we investigated the effects of histamine on the expression of hepatic low density lipoprotein (LDL) receptors and on plasma lipoproteins in the rat. Injection of compound 48/80 (C48/80, a histamine releaser) or histamine reduced hepatic LDL receptor expression, but not LDL receptor messenger RNA levels. Oral administration of polymyxin B (an antiendotoxin antibiotic and a histamine releaser) before the injection of C48/80 or histamine did not attenuate their effects. Polymyxin B itself had effects similar to those of C48/80 and histamine on LDL receptors. These results suggest that the effects of histamine are not mediated by the induction of gut-derived endotoxemia. Histamine H2 agonists (dimaprit and impromidine), but not H1 agonists (2-methylhistamine and 2-thiazolylethylamine), also reduced hepatic LDL receptor expression. The suppressive effect of C48/80 on hepatic LDL receptor expression was not attenuated by either the H1 antagonist (chlorpheniramine) or the H2 antagonist (cimetidine). Administration of C48/80 also reduced plasma high density lipoprotein (HDL) cholesterol. The H1 antagonist (chlorpheniramine), but not the H2 antagonist (cimetidine), almost completely reversed the effect of C48/80 on plasma HDL cholesterol. In conclusion, histamine suppresses hepatic LDL receptor expression via a non-H1 receptor-mediated pathway, and histamine reduces plasma HDL cholesterol via an H1 receptor-mediated pathway.

Animals↗

Lipoprotein metabolism in the fat Zucker rat: reduced basal expression but normal regulation of hepatic low density lipoprotein receptors.

Hyperlipoproteinemia is one of the phenotypic characteristics of the fat Zucker rat that carries a mutation in the leptin receptor gene. In the present study, we studied the regulation of hepatic low density lipoprotein (LDL) receptor expression in lean and fat Zucker rats. Compared with lean rats, the fat ones had a pronounced (approximately 60%) reduction in hepatic LDL receptor expression, whereas the levels of receptor messenger RNA (mRNA) were not reduced. Fat rats had increased levels of very low density lipoproteins and high density lipoproteins, but their plasma apo B100 within LDL was reduced. Challenge with 2% dietary cholesterol for 8 days suppressed hepatic LDL receptor expression in lean animals to similar levels as seen in fat ones, whereas the reduction in mRNA levels was much less pronounced. Treatment with ethynylestradiol (5 mg/kg BW per day) for 4 days strongly stimulated hepatic LDL receptor expression in both lean and fat rats; this treatment also increased LDL receptor mRNA levels, but to a lesser extent. In conclusion, the basal expression of hepatic LDL receptors is reduced in fat Zucker rats, but the capacity for the regulation of the receptors remains intact.

Analysis of Variance↗

Endotoxin suppresses rat hepatic low-density lipoprotein receptor expression.

Endotoxin induces hyperlipidaemia in experimental animals. In the current study, we investigated whether endotoxin alters hepatic low-density lipoprotein (LDL) receptor expression in rats. Endotoxin treatment suppressed hepatic LDL receptor expression in a dose- and time-dependent manner. Eighteen hours after intraperitoneal injection of increasing amounts of endotoxin, LDL receptor and its mRNA levels were determined by ligand blot and solution hybridization respectively. LDL receptor expression was inhibited by about 70% at a dose of 500 micrograms/100 g body weight. However, LDL receptor mRNA levels were markedly increased in all endotoxin-treated groups at this time point (by 83-136%; P < 0.001). Time-course experiments showed that LDL receptor expression was already reduced by 48% 4 h after endotoxin injection and was maximally reduced (by 63-65%) between 8 and 18 h. Changes in hepatic LDL receptor mRNA showed a different pattern. By 4 h after endotoxin injection, LDL receptor mRNA had decreased by 78% (P < 0.001). However, by 8 h after endotoxin injection, LDL receptor mRNA had returned to levels similar to controls, and 18 and 24 h after endotoxin injection, they were increased by about 60% (P < 0.05). Separation of plasma lipoproteins by FPLC demonstrated that endotoxin-induced changes in plasma triacylglycerols and cholesterol were due to accumulation of plasma apolipoprotein B-containing lipoproteins among very-low-density lipoprotein, intermediate-density lipoprotein and LDL. It is concluded that endotoxin suppresses hepatic LDL receptor expression in vivo in rats.

Animals↗

Regulation of rat hepatic low density lipoprotein receptors. In vivo stimulation by growth hormone is not mediated by insulin-like growth factor I.

Growth hormone (GH) has an important role in the regulation of hepatic LDL receptor expression and plasma lipoprotein levels. This investigation was undertaken to evaluate if these effects of GH on hepatic LDL receptors are direct or mediated by insulin-like growth factor I (IGF-I). Two models were studied in which substitution with GH is important for the regulation of hepatic LDL receptors: hypophysectomized rats receiving high-dose ethynylestradiol or challenge with dietary cholesterol. The hypophysectomized rats were hormonally substituted by infusion with dexamethasone and L-thyroxine, and either GH or IGF-I. In both models, GH was essential for maintaining normal expression of LDL receptors. In contrast, despite fully normalized plasma levels, IGF-I did not support the expression of hepatic LDL receptors. Analysis of plasma lipoproteins revealed that substitution with GH, but not with IGF-I, reduced LDL and intermediate density lipoproteins. In addition, determination of hepatic mRNA levels for apo B-100 and apo B-48 indicated that GH may be more effective than IGF-I in the promotion of apo B mRNA editing. In conclusion, GH has specific effects on hepatic LDL receptor expression and plasma lipoprotein levels that are not mediated by IGF-I.

Animals↗

Bile acid kinetics and biliary lipid composition in cystic fibrosis.

AIMS/METHODS: Bile acid kinetics and biliary lipid composition were studied in seven patients, aged 17-70 years with cystic fibrosis. All patients were of normal height and weight, and were in good clinical condition. Ultrasonography indicated a small gallbladder in one and non-visualized gallbladder in two patients. Serum concentrations of cholesterol and transaminases were essentially normal. Substitution with pancreatic enzymes was discontinued at least 1 week before the investigation. Bile acid kinetics were determined by the isotope dilution technique using [24-14C] cholic and [24-14C] chenodeoxycholic acids. RESULTS: The mean pool size of cholic acid was 3.3 (range 0.8-6.9) mmol, and that of chenodeoxycholic acid 2.3 (1.2-2.7) mmol, corresponding to 49 +/- 16 and 36 +/- 4 mumol/kg, respectively. The mean synthesis of cholic acid was 1.3 (0.5-3.6) mmol/day and of chenodeoxycholic acid 0.8 (0.2-1.7) mmol/ day and related to body weight 20 +/- 6 and 12 +/- 3 mumol.kg.day-1, respectively. Fractional turnover rates averaged 0.48 (0.24-0.67) and 0.36 (0.10-0.65) day-1, respectively. The kinetic values were not significantly different from controls, aged 21 to 68 years. The biliary lipid composition of fasting gallbladder bile showed a low-normal molar percentage of cholesterol, and in no case was bile supersaturated. The duodenal bile acid concentration was similar in patients and controls, but the bile acid distribution was significantly different; cholic acid constituted a higher percentage (p < 0.001) and chenodeoxycholic and deoxycholic acid lower percentages (p < 0.05 and p < 0.01, respectively) in cystic fibrosis patients than in controls. CONCLUSIONS: The findings of normal concentrations of bile acids in duodenal bile and normal to large pool sizes of bile acids in all patients, despite a marked fat malabsorption, are in contrast to some previous reports. The data indicate that biliary lipid metabolism is normal in well-nourished and well-controlled adult patients with cystic fibrosis.

Adolescent↗

Reduction in serum levels of antimitochondrial (M2) antibodies following immunoglobulin therapy in severe combined immunodeficient (SCID) mice reconstituted with lymphocytes from patients with primary biliary cirrhosis (PBC).

The effect of gammaglobulin treatment on autoantibody production was investigated in SCID mice reconstituted with human peripheral blood mononuclear cells (PBMC) obtained from patients with PBC. All reconstituted mice displayed the presence of human antimitochondrial antibodies (alpha M2Ab) of both IgG and IgM types before treatment with human immunoglobulin. Two weeks after i.p. injection of 20 x 10(6) PBMC into SCID mice, i.p. treatment with various preparations of human immunoglobulin was initiated. In control animals treated with saline, serum levels of human alpha M2Ab of the IgG type increased with time, peaking around 4 weeks after reconstitution. In contrast, human IgG autoantibodies rapidly decreased in all animals treated with human IgG. Treatment with a human IgM preparation had no effect on serum levels of alpha M2Ab of the IgG type. The results may suggest that the pronounced reduction of specific IgG autoantibodies was due to an increased catabolism of human IgG, including the autoantibodies, in the gammaglobulin-treated mice. Although the production of human alpha M2Ab in reconstituted mice could be easily shown, PBC-specific liver lesions or bile duct destruction were not observed, irrespective of treatment protocol.

Animals↗

Growth hormone potentiates the in vivo biological activities of endotoxin in the rat.

To investigate if growth hormone (GH) alters the effects of endotoxin in rats, endotoxin (5 mg kg-1 body weight) was injected into normal rats and into rats primed with GH for 3 days. Endotoxin had injurious effects on renal and liver function and induced hypoglycaemia and hyperlipidaemia as expected. GH-primed rats became extremely sick after endotoxin challenge and had more marked abnormalities of renal and liver function and much more pronounced hypoglycaemia and hyperlipidaemia than non-primed rats. It is concluded that growth hormone potentiates the in vivo biological activities of endotoxin in the rat. The results may also suggest that caution should be exerted when considering GH treatment in catabolic situations with endotoxaemia and that special attention should be paid to the prevention of infection during GH therapy in such situations.

Animals↗

Gemfibrozil treatment of combined hyperlipoproteinemia. No improvement of fibrinolysis despite marked reduction of plasma triglyceride levels.

Hypertriglyceridemia is linked to impaired fibrinolytic function, and lipid-lowering treatment with fibric acid derivatives could hypothetically improve fibrinolysis in this condition. We therefore conducted a double-blind, placebo-controlled, crossover study of gemfibrozil treatment on fibrinolytic function in 21 men with combined hyperlipoproteinemia. Measurements were performed at rest and during mental stress and after venous occlusion. The patients had clearly disturbed fibrinolytic function, with elevated plasminogen activator inhibitor-1 (PAI-1) activity at rest ( approximately 25 U/mL; reference, <15 U/mL). Gemfibrozil reduced plasma total and VLDL cholesterol as well as all triglyceride fractions, whereas HDL cholesterol increased (P <.001 for all). Total triglyceride levels were reduced by 57 +/- 4% (from 5.3 to 2.1 mmol/L). Fasting serum insulin levels were not altered by gemfibrozil treatment. Plasma levels of PAI-1 activity and tissue-type plasminogen activator (TPA) activity or antigen were unaffected by gemfibrozil treatment both at rest and during the provocations. The levels of D-dimer, plasmin/antiplasmin complex, and fibrinogen were also uninfluenced by gemfibrozil treatment. Mental stress elevated plasma TPA (P=.0036) and lowered PAI-1 (P=.0012) activity during placebo but not gemfibrozil treatment (P=.28 and P=.17, respectively), but treatment effects did not differ by ANOVA on delta values (ie, stress minus rest). Venous occlusion reduced PAI-1 activity, whereas TPA and plasmin/antiplasmin complex increased during both treatments. Thus, gemfibrozil treatment did not improve fibrinolysis or lower fibrinogen levels in men with combined hyperlipoproteinemia despite marked reduction of plasma triglyceride levels. It seems unlikely that improved fibrinolysis explains the primary preventive effect of gemfibrozil.

Adult↗