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Biomedical subjects

C J Packard

Publications and source records attributed to C J Packard.

At least 55 records · Page 3Linked to original sources

A longitudinal study of the relationships between haemostatic, lipid, and oestradiol changes during normal human pregnancy.

Increased activation of both blood coagulation and fibrinolysis occurs during normal pregnancy. The responsible mechanisms are unclear, but may include increases in both oestradiol and blood lipids. We, therefore, studied the associations between fasting serum oestradiol, plasma cholesterol and triglyceride, and Factor VII activity, PAI activity, t-PA antigen, fibrin D-dimer, and vWF antigen in 10 women, each sampled on 6 occasions between 10 weeks and 35 weeks during normal pregnancy. Strong and similar individual correlations were observed between increases in FVII, PAI, t-PA and D-dimer (but not vWF) and increases in both oestradiol and triglyceride. Associations between increments in plasma cholesterol and haemostatic factors (except for FVII), were somewhat weaker. We, therefore, suggest that oestradiol-induced hypertriglyceridaemia may be a cause of elevations in plasma Factor VII activity, PAI and t-PA, and fibrin turnover (D-dimer) during normal pregnancy, but is poorly related to the increase in vWF antigen.

Adult↗

Influence of polymorphism Q3405E and mutation A3371V in the apolipoprotein B gene on LDL receptor binding.

Familial defective apolipoprotein B (FDB) is due to mutations in the apolipoprotein B (apo B) gene at codon 3500 or 3531 that affect low density lipoprotein (LDL) receptor binding. From sequence analysis the putative receptor binding site was believed originally to be upstream from this at residues 3147-3157 and 3357-3367. Using denaturing gradient gel electrophoresis, mutations were sought in codons 3350-3466. This includes the important positively charged residues 3357-3367. DNA from 928 hyperlipidaemic individuals was studied and two hitherto unknown DNA changes were discovered, one of which resulted in an altered amino acid in the apo B. A known polymorphism Q3405E was also detected at a carrier frequency of 1.4%. Using growth of U937 cells as a measure of binding affinity of LDL to its receptor the newly discovered mutant A3371V permitted the same growth as LDL from normolipidaemic individuals of the U937 cells, however, the LDL from Q3405E individuals permitted only 77% of the normal growth (P=0.009).

Adult↗

Associations of indices of adiposity with atherogenic lipoprotein subfractions.

OBJECTIVE: To investigate the associations of indices of adiposity with cardiovascular risk factors. SUBJECTS: 93 men and 98 women aged 18-69 y. OUTCOME MEASURES: Body mass index (BMI), waist to hip ratio (WHR), waist circumference, waist to height ratio, blood pressure, fasting concentrations of blood glucose, insulin, plasma lipids and lipoprotein subfractions, apoproteins, lipoprotein(a) and post-heparin lipases. RESULTS: BMI and waist showed similar associations (P < 0.01) with a cluster of major cardiovascular risk factors including total cholesterol, low density lipoprotein-cholesterol and very low density lipoprotein-cholesterol in men, and ratio of low density lipoprotein-/high density lipoprotein-cholesterol for both genders. Large waist circumference was significantly (P < 0.01) associated (controlled for age and smoking) with features of the metabolic syndrome, including raised insulin concentration (men: r=0.37, women: r=0.49), reduced high density lipoprotein2 (men: r=-0.30, women: r=-0.34), increased very low density lipoprotein1 mass (men: r=0.31, women: r=0.42), raised small, dense low density lipoprotein (men: r=0.30, women: r=0.31), elevated blood pressure (men: r=0.27, women: r=0.28), increased triglyceride (men: r=0.43, women: r=0.48) and apolipoprotein-B (men: r=0.32, women: r=0.35). Waist circumference also correlated with hepatic lipase/lipoprotein lipase ratio in women (r=0.52). Height adjustment did not substantially change relationships between waist circumference and risk factors. WHR correlated with fewer risk factors. CONCLUSION: For the purpose of health promotion to prevent cardiovascular disease associated with overweight and intra-abdominal fat accumulation, the general public should be advised to be aware of the risk associated with large waist circumference.

Adipose Tissue↗

The effect of smoking on post-heparin lipoprotein and hepatic lipase, cholesteryl ester transfer protein and lecithin:cholesterol acyl transferase activities in human plasma.

INTRODUCTION: Smoking is associated with dyslipidaemia, particularly raised plasma triglycerides and reduced high-density lipoprotein (HDL)-cholesterol and a delayed clearance of triglyceride in fat tolerance tests. The aim of this study was to investigate whether these phenomena could be explained by a reduced lipoprotein lipase activity in smokers. METHODS: A group of 40 healthy individuals [plasma cholesterol 5.07 (SD 0.90) mmol L-1, plasma triglyceride 1.02 (SD 0.39) mmol L-1)] was studied to examine the effects of smoking on plasma enzyme activities, particularly post-heparin lipase activities. The group comprised 20 smokers and 20 non-smokers, who were matched for age, gender and body mass index (BMI). RESULTS: Post-heparin lipoprotein lipase (LPL) activity [3.89 (SD 1.58) vs. 5.85 (SD 2.30) mumol free fatty acids (FFA) mL-1 h-1, P < 0.005], but not post-heparin hepatic lipase (HL) activity, was reduced in smokers. Plasma cholesteryl ester transfer protein (CETP) activity and lecithin: cholesterol acyl transferase (LCAT) activity were measured in a subgroup of 18 individuals, comprising nine smokers with nine matched non-smokers. There was no difference in CETP activities between two groups, but smokers had a significantly reduced plasma LCAT activity [112 (SD 23) vs. 152 (SD 24) nmol cholesterol mL-1 h-1, P < 0.005]. In both smokers (r=-0.53, P < 0.05) and non-smokers (r=-0.54, P < 0.05), HDL2 concentration was negatively associated with HL activity. In non-smokers, HDL3 concentration was negatively associated with CETP activity (r= -0.77, P < 0.05), whereas in smokers HDL3 concentration was negatively associated with LCAT activity (r= -0.78, P < 0.050). CONCLUSION: It was shown by direct measurement that the activity of plasma post-heparin LPL is reduced in smokers, independently of age, gender and BMI. It is concluded that this enzyme perturbation associated with smoking may contribute to the development of the atherogenic lipoprotein phenotype seen in smokers.

Adult↗

A simultaneous study of the metabolism of apolipoprotein B and albumin in nephrotic patients.

BACKGROUND: The nephrotic syndrome is characterized by proteinuria, hypoalbuminemia and hyperlipidemia. Despite intensive research it is not clear at present what the causal links are between these pathological findings. METHODS: Stable isotope labeled amino acid tracer kinetic analysis was used to simultaneously investigate the metabolism of four apolipoprotein B-containing lipoproteins (VLDL1, VLDL2, IDL and LDL) and albumin in seven patients with nephrotic syndrome and marked hypercholesterolemia, in two additional nephrotic patients with concomitant renal failure and mixed hyperlipidemia, and in a matched group of normolipidemic controls. RESULTS: Increased concentrations of VLDL2, IDL and LDL were due to (a) impaired VLDL2 and IDL delipidation, (b) reduced LDL catabolism, and (c) a trend towards an increased rate of total apolipoprotein B production. The rate of fractional albumin elimination was three times higher in patients than in controls and the rate of albumin synthesis was increased by 45%. No correlations were detectable between rates of apolipoprotein B production and the rate of albumin synthesis. CONCLUSIONS: The results of this study suggest that hyperlipidemia in nephrotic syndrome is predominantly the result of delayed lipoprotein delipidation and catabolism. There is no evidence that it is driven by a general increase of the rate of hepatic protein synthesis.

Adult↗

Increased atherogenicity of low-density lipoprotein in heavy proteinuria.

BACKGROUND: Heavy proteinuria is associated with marked abnormalities of lipoprotein metabolism and increased risk of atherogenesis. It is possible that qualitative as well as quantitative changes occur in lipoproteins to contribute to increased cardiovascular risk; for example, it is known that LDL exhibits heterogeneity, with small, dense LDL III particles being more atherogenic. METHODS: We investigated LDL subfractions (measured by density gradient ultracentrifugation), VLDL subfractions, and post-heparin lipases in 12 patients with primary glomerular disease and 24-h albuminuria >2.5 g. These were compared to 23 age- and sex-matched controls. RESULTS: Total LDL concentrations were similar in proteinuric patients and controls; however, there was a shift in subfraction distribution. The larger LDL I and LDL II particles were lower in the proteinuric group (29 +/- 24 vs 62 +/- 26 mg/dl P=0.011 and 121 +/- 80 vs 197 +/- 74 mg/dl P=0.028), whereas the concentration of atherogenic LDL III (small dense) was higher (135 +/- 64 vs 75 +/- 71 mg/dl P=0.0016). The concentration of total VLDL and both its subfractions were increased in the patients with proteinuria. Post-heparin hepatic and lipoprotein lipase levels were similar to normal. CONCLUSIONS: These findings suggest that the atherogenicity of LDL is increased in patients with heavy proteinuria because of the redistribution towards smaller denser particles. Since small, dense LDL has a lower affinity for the LDL receptor, the altered nature of the lipoprotein in proteinuria may decrease its clearance by the receptor-mediated pathway and contribute to the reduced clearance of LDL observed in this population. This may contribute to progression of renal failure or the accelerated vascular disease found in patients with heavy proteinuria.

Adult↗

Heterogeneity of apolipoprotein B-100-containing lipoproteins: what we have learnt from kinetic studies.

Apolipoprotein B-100-containing lipoprotein assembly is dependent on the successive addition of triglyceride by microsomal transfer protein. Assembly may end at this point and the lipoprotein secreted or it may continue with the bulk addition of triglyceride by an unknown transfer process. These steps are independently regulated and result in the secretion of a spectrum of apolipoprotein B-100-containing particles. The production of small, dense LDL is determined by the type of VLDL secreted by the liver. Large, triglyceride-rich VLDL1 results in the formation of small, dense LDL through triglyceride exchange and subsequent hydrolysis. Small, dense LDL are cleared from plasma relatively slowly and tend to accumulate in the circulation where they exert their atherogenic effects.

Apolipoprotein B-100↗

Identification of a common low density lipoprotein receptor mutation (C163Y) in the west of Scotland.

Familial hypercholesterolaemia (FH) is an autosomal codominant disorder characterised by high levels of LDL cholesterol and a high incidence of coronary artery disease. Our aims were to track the low density lipoprotein receptor (LDLR) gene in individual families with phenotypic FH and to identify and characterise any mutations of the LDLR gene that may be common in the west of Scotland FH population using single strand conformational polymorphism analysis (SSCP). Patient samples consisted of 80 heterozygous probands with FH, 200 subjects who were related to the probands, and a further 50 normal, unrelated control subjects. Tracking of the LDLR gene was accomplished by amplification of a 19 allele tetranucleotide microsatellite that is tightly linked to the LDLR gene locus. Primers specific for exon 4 of the LDLR gene were used to amplify genomic DNA and used for SSCP analysis. Any PCR products with different migration patterns as assessed by SSCP were then sequenced directly. In addition to identifying probands with a common mutation, family members were screened using a forced restriction site assay and analysed using microplate array diagonal gel electrophoresis (MADGE). Microsatellite D19S394 analysis was informative in 20 of 23 families studied. In these families there was no inconsistency with segregation of the FH phenotype with the LDLR locus. Of the FH probands, 15/80 had a mutant allele as assessed by SSCP using three pairs of primers covering the whole of exon 4 of the LDLR gene. Direct DNA sequencing showed that 7/15 of the probands had a C163Y mutation. Using a PCR induced restriction site assay for the enzyme RsaI and MADGE, it was determined that the C163Y mutation cosegregated with the FH phenotype in family members of the FH probands. This mutant allele was not present in any of the control subjects. Microsatellite analysis has proven useful in tracking the LDLR gene and could be used in conjunction with LDL cholesterol levels to diagnose FH, especially in children and young adults where phenotypic diagnosis can be difficult.

Adult↗

Abdominal obesity, impaired nonesterified fatty acid suppression, and insulin-mediated glucose disposal are early metabolic abnormalities in families with premature myocardial infarction.

British Indian Asian men aged <40 years have a twofold to threefold increased risk of death from coronary heart disease (CHD) compared with British whites. Epidemiological studies have suggested an association between glucose intolerance and hyperinsulinemia with premature CHD in Indian Asians. We tested the association of insulin action with myocardial infarction (MI) by using the hyperinsulinemic-euglycemic clamp in 17 MI patients: 8 Punjabi Sikhs (PSMIs), 9 British whites (BWMIs), and 17 control subjects (9 PSCs and 8 BWCs). Metabolic factors associated with insulin resistance were investigated in 51 MI patients (24 PSMIs and 27 BWMIs) and 53 control subjects (28 PSCs and 25 BWCs). Familial aggregation of defective insulin action was examined by studying five pedigrees of Sikh survivors of MI. Sikh survivors of premature MI demonstrated impaired insulin-mediated glucose uptake (P<.001) by use of the clamp technique and nonesterified fatty acid (NEFA) suppression (P<.05) by using both clamp techniques and the oral glucose tolerance test, as compared with Sikh control subjects. White patients had impaired insulin-mediated glucose uptake but normal NEFA suppression. Metabolic factors usually associated with insulin resistance, including increased 2-hour post-oral glucose tolerance test triglycerides, smaller low density lipoprotein particle size, and increased plasminogen activator inhibitor-1, were present in white (all P<.05) but surprisingly absent in Sikh (all P>.05) MI patients compared with respective ethnic control subjects. Fasting glucose and total cholesterol levels did not differ between patients and control subjects. Abdominal obesity, impaired NEFA suppression after oral glucose, and fasting hyperinsulinemia were present in Sikh MI patients and their nondiabetic first-degree relatives compared with Sikh control subjects. PS survivors of premature MI demonstrated impaired insulin-mediated glucose disposal and NEFA suppression compared with ethnic control subjects. BWMI patients showed abnormalities of carbohydrate, but not of NEFA, metabolism compared with white control subjects. Defects of insulin action manifested as abdominal obesity, impaired NEFA suppression, and fasting hyperinsulinemia are present in Sikh MI patients and their asymptomatic, nondiabetic, first-degree relatives. We suggest that these defects may be early metabolic markers that predict risk of premature MI among PSs.

Abdomen↗

Effects of insulin and acipimox on VLDL1 and VLDL2 apolipoprotein B production in normal subjects.

The objective of the study was to examine the potential differential effect of insulin and acipimox (both of which reduce free fatty acid [FFA] availability) on VLDL apolipoprotein (apo) B metabolism. We studied eight healthy men (age 40 +/- 4 years, BMI 25.8 +/- 0.9 kg/m2, plasma triglycerides 1.30 +/- 0.12 mmol/l) after an overnight fast (control study, n = 8), during inhibition of lipolysis with an antilipolytic agent, acipimox (n = 8), and under 8.5-h euglycemic-hyperinsulinemic conditions (n = 5). Plasma FFAs were similarly suppressed in the acipimox and insulin studies (approximately 70% suppression). 2H3-leucine was used to trace apo B kinetics in VLDL1 and VLDL2 subclasses (Svedberg flotation rates: 60-400 and 20-60), and a non-steady-state multicompartmental model was used to derive the kinetic constants. The mean rate of VLDL1 apo B production was 708 +/- 106 mg/day at the beginning and 602 +/- 140 mg/day at the end of the control study. Production of the lipoprotein decreased to 248 +/- 93 mg/day during the insulin study (P < 0.05 vs. control study) and to 375 +/- 92 mg/day (NS) during the acipimox study. Mean VLDL2 apo B production was significantly increased during the acipimox study (399 +/- 42 vs. 236 +/- 27 mg/day, acipimox vs. control, P < 0.05) but not during the insulin study (332 +/- 51 mg/day, NS). The fractional catabolic rates of VLDL1 and VLDL2 apo B were similar in all three studies. We conclude that acute lowering of FFAs does not change the overall production rate of VLDL particles, but there is a shift toward production of smaller and denser VLDL2 particles, and, thus, the amount of total VLDL particles secreted remained constant. Insulin acutely suppresses the total production rate of VLDL apo B by decreasing the production of large triglyceride-rich VLDL1 particles. Based on these findings, we postulate that insulin has a direct suppressive effect on the production of VLDL apo B in the liver, independent of the availability of FFAs.

Adult↗

Overview of fenofibrate.

Fenofibrate is a broad spectrum lipid-lowering agent able to produce substantial reductions in plasma triglyceride and low density lipoprotein (LDL) and an increase in high density lipoprotein (HDL). It acts to promote the clearance of chylomicrons and very low density lipoproteins and can correct abnormalities in the LDL subfraction profile with a shift away from small, dense LDL. The drug is of particular use in correcting the atherogenic lipoprotein phenotype seen commonly in subjects with coronary heart disease. Recent investigations have revealed its likely mechanism of action at the molecular level. Fenofibrate binds to peroxisome proliferator activated receptor and initiates a sequence of events that leads to the reduction of apolipoprotein C-III synthesis in liver. This lipoprotein apoprotein inhibits the lipolysis and uptake of triglyceride-rich particles and suppression of its production causes enhanced catabolism. Further effects such as the changes in LDL and HDL follow from this primary action.

Apolipoprotein C-III↗

In vivo metabolism of apo A-I and apo A-II in subjects with apo A-I(Lys107-->0) associated with reduced HDL cholesterol and Lp(AI w AII) deficiency.

Apolipoprotein A-I (apo A-I) and apolipoprotein A-II (apo A-II) represent 80 90% of the protein content of high density lipoproteins (HDL). Previously we have identified a Finnish family with an apo A-I variant (Lys107-->0) associated with reduced plasma HDL cholesterol level and decreased lipoprotein (Lp)(AI w AII) concentration compared to unaffected family members. To determine the in vivo metabolism of apo A-I and apo A-II in the carriers of apo A-I (Lys107-->0) variant we radioiodinated normal apo A-I with 125I and apo A-II with 131I and compared the kinetic data of two heterozygous apo A-I(Lysl07-->0) patients (HDL cholesterol leves 0.31 and 0.69 mmol/l) to that of eight normolipidemic, healthy control subjects. Plasma radioactivity curves of 125I-labelled normal apo A-I of the patients demonstrated accelerated clearance of apo A-I compared to control subjects. In the two patients the fractional catabolic rates (FCR) of apo A-I were 0.347/day and 0.213/day, respectively, while the mean FCR of apo A-I of the control subjects was 0.151 +/- 0.041/day. Similarly, the plasma decay curves of the 131I-labelled apo A-II showed more rapid clearance of apo A-II in the two patients than in control subjects. The FCR of apo A-II in the two patients were 0.470/day and 0.234/day, while the mean FCR of apo A-II in control subjects was 0.154 +/- 0.029/day. The calculated production rates of apo A-I were similar in patients and in control subjects, and the production rates of apo A-II were significantly higher in patients than in control subjects. Our results show that the Lp(AI w AII) deficiency in patients with the apo A-I(Lys107-->0) is associated with increased fractional catabolic rates of normal apo A-I and apo A-II, while the production rates of these apolipoproteins are normal (apo A-I) or slightly increased (apo A-II).

Apolipoprotein A-I↗

Studies of apolipoprotein B-100 metabolism using radiotracers and stable isotopes.

Apolipoprotein B metabolism can be investigated in-vivo either by exogenous radiolabeling of preformed lipoproteins or by endogenous labelling of denovo synthesized apo B using a stable isotope substituted amino acid tracer. The potential of both methods and results obtained by in-vivo studies in genetically determined dys- or hyperlipidaemic subjects will be discussed.

Apolipoprotein B-100↗

Defective regulation of triglyceride metabolism by insulin in the liver in NIDDM.

Insulin administration to healthy subjects inhibits the production of very low density lipoprotein (VLDL)1 (Svedbergs flotation (Sf) rate 60-400) without affecting that of VLDL2 (Sf 20-60) sub-class. This study was designed to test whether this hormonal action is impaired in non-insulin-dependent diabetes mellitus (NIDDM). We studied six men with NIDDM (age 53 +/- 3 years, body mass index 27.0 +/- 1.0 kg/m2, plasma triglycerides 1.89 +/- 0.22 mmol/l) during an 8.5 h infusion of saline (control) and then in hyperinsulinaemic (serum insulin approximately 540 pmol/l) conditions during 8.5 h infusions of glucose and insulin to give either hyper- and normoglycaemic conditions. [3-2H]-leucine was used as tracer and kinetic constants derived using a non-steady-state multicompartmental model. Compared to the control study, patients with NIDDM reduced VLDL1 apo B production by only 3 +/- 8% after 8.5 h of hyperinsulinaemia (701 +/- 102 vs 672 +/- 94 mg/day respectively, NS) in hyperglycaemic conditions and by 9 +/- 21% under normoglycaemic conditions (603 +/- 145 mg/day). In contrast, in normal subjects insulin induced a 50 +/- 15% decrement in VLDL1 apo B production (p < 0.05). Direct synthesis of VLDL2 apo B in patients with NIDDM was not markedly affected by insulin. We conclude that a contributory factor to hypertriglyceridaemia in NIDDM is the inability of insulin to inhibit acutely the release of VLDL1 from the liver, despite efficient suppression of serum nonesterfied fatty acids.

Apolipoproteins B↗

Lipoprotein subfraction concentrations in preeclampsia: pathogenic parallels to atherosclerosis.

OBJECTIVE: To determine whether large triglyceride-rich lipoproteins, very-low-density lipoprotein1 (VLDL1), and small, dense low-density lipoprotein (LDL-III), are significantly increased in women with preeclampsia compared with concentrations seen in normal pregnancy. METHODS: Plasma concentrations of very-low-density and low-density lipoprotein subfractions and pre-heparin hepatic lipase activity were measured in eight women with preeclampsia and in eight healthy pregnant controls matched for age, gestational age, and weight. RESULTS: Women with preeclampsia exhibited higher median plasma triglyceride concentrations (3.68 versus 1.93 mmol/L, P = .004) compared with controls. This was reflected in an almost threefold increase in median VLDL1 (184 versus 68 mg/dL, P = .002) and a twofold increase in very-low-density lipoprotein2 (VLDL2) (146 versus 76 mg/dL, P = .014), whereas total plasma cholesterol, intermediate-density lipoprotein, and total LDL concentration were the same in subjects and controls. Furthermore, women with preeclampsia demonstrated significantly lower concentrations of the large, buoyant LDL subfractions, LDL-I and LDL-II, and markedly elevated median plasma concentrations of small, dense LDL, LDL-III (170 versus 55 mg/dL, P = .024). High-density lipoprotein-cholesterol concentration also was significantly lower (P = .021), and pre-heparin hepatic lipase activity was significantly elevated (29 versus 18 mumol fatty acids/mL/hour, P = .041) in the preeclamptic group. The concentration of small, dense LDL correlated positively with plasma triglyceride concentration (r2 = 0.504, P = .002). CONCLUSION: Women with preeclampsia exhibit markedly elevated concentrations of triglyceride-rich lipoproteins in the circulation. These particles are potential contributors to endothelial dysfunction and the expression of preeclampsia, both directly and, indirectly, through the generation of small, dense LDL.

Adult↗

Sodium-lithium countertransport, sodium-hydrogen exchange and membrane microviscosity in patients with hyperlipidaemia.

1. We measured sodium-lithium countertransport, sodium-hydrogen exchange and membrane micro-viscosity in 48 individuals with familial hypercholesterolaemia, 33 subjects with hypertriglyceridaemia and 54 normolipaemic controls. Full lipid profile, blood pressure, body mass index, fasting glucose and insulin levels were also measured. 2. Subjects with hypertriglyceridaemia had higher blood pressure, body mass index, fasting glucose and insulin levels than normal controls. 3. Vmax of the sodium-lithium countertransport was elevated in the hypertriglyceridaemic group compared with controls. Across the whole group log(e) triacylglycerols correlated with Vmax of the sodium-lithium countertransport. There was no difference in sodium-lithium countertransport K(m) between the groups. 4. Sodium-hydrogen maximal proton efflux rate (Vmax) and K(m) were not different between the three groups. There were no correlations between sodium-hydrogen exchange and sodium-lithium countertransport parameters. 5. Microviscosity as measured by diphenylhexatriene was reduced at the core of the membrane in subjects with hypertriglyceridaemia compared with those with familial hypercholesterolaemia or normolipaemic controls, suggesting an alteration in membrane structure. 6. Changes in sodium transport in hyperlipidaemia may be mediated by changes in membrane structure resulting in altered protein conformation or turnover.

Antiporters↗