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Biomedical subjects

P J Grant

Publications and source records attributed to P J Grant.

At least 19 recordsLinked to original sources

Neel revisited: the adipocyte, seasonality and type 2 diabetes.

The modern epidemic of obesity and insulin resistance with cardiovascular risk factor clustering is related to the development of type 2 diabetes and cardiovascular disease. Over 40 years ago, Neel postulated that insulin resistance should confer survival benefit. Extrapolating Neel's hypothesis, we propose that the cluster of associated abnormalities also confers survival benefit and is related to metabolic responses seen in seasonally responsive animals. Weight gain in preparation for winter is accompanied by a range of acute metabolic changes virtually identical to the long-term changes seen in type 2 diabetes. In seasonal animals the responses are acute, physiological and protective. In man, similar responses that would once have conferred survival benefit have become chronic, pathological and harmful in modern life. We hypothesise that type 2 diabetes and cardiovascular disease in man are the result of chronic and inappropriate pineal-hypothalamic-adipocyte interactions biologically related to seasonal change.

Adipocytes↗

Molecular mechanisms involved in the resistance of fibrin to clot lysis by plasmin in subjects with type 2 diabetes mellitus.

AIMS/HYPOTHESIS: The aim of this study was to determine the influence of type 2 diabetes on fibrinolysis by assessing interactions between the regulatory components of fibrinolysis and the fibrin clot, using fibrinogen purified from 150 patients with type 2 diabetes and 50 matched controls. METHODS: Clot lysis rates were determined by confocal microscopy. Plasmin generation was measured using a plasmin-specific chromogenic substrate. Surface plasmon resonance was used to determine the binding interactions between fibrin, tissue-type plasminogen activator (t-PA) and Glu-plasminogen; cross-linkage of plasmin inhibitor to fibrin by factor XIII was determined using a microtitre plate assay. RESULTS: Lysis of diabetic clots was significantly slower than that of controls (1.35 vs 2.92 microm/min, p<0.0001) and plasmin generation was significantly reduced. The equilibrium binding affinity between both t-PA and Glu-plasminogen and fibrin was reduced in diabetic subjects: t-PA, K (D)=0.91+/-0.3 micromol/l (control subjects), 1.21+/-0.5 micromol/l (diabetic subjects), p=0.001; Glu-plasminogen, K (D)=97+/-19 nmol/l (control subjects), 156+/-66 nmol/l (diabetic subjects), p=0.001. Cross-linkage of plasmin inhibitor to fibrin by factor XIII was enhanced in diabetic subjects, with the extent of in vitro cross-linkage correlating with in vivo glycaemic control (HbA(1c)) (r=0.59, p=0.001). CONCLUSIONS/INTERPRETATION: These results indicate that impairment of the fibrinolytic process in diabetic patients is mediated via a number of different mechanisms; these may be a consequence of post-translational modifications to fibrinogen molecules, resulting from their exposure to the abnormal metabolic milieu associated with diabetes.

Aged↗

Fibrinolytic risk factor clustering and insulin resistance in healthy male relatives of men with intermittent claudication.

BACKGROUND: Raised fibrinolytic factors predict cardiovascular risk in healthy subjects. The aim of this study was to measure fibrinolytic factors and insulin resistance in healthy male first-degree relatives of men with intermittent claudication younger than 65 years. METHODS: The study compared 165 healthy first-degree relatives with 165 age-, sex- and race-matched control subjects free from a personal or family history of premature cardiovascular disease. Primary outcome measures were plasminogen activator inhibitor 1 (PAI-1), tissue plasminogen activator (tPA) and D-dimer levels. Insulin resistance was estimated by Homeostasis Model Assessment. Clinical and biochemical risk factors were measured and subjects genotyped for the PAI-1 4G/5G polymorphism. RESULTS: First-degree relatives had significantly higher mean PAI-1 (10.23 versus 7.85 ng/ml; P = 0.024), tPA (9.98 versus 8.29 ng/ml; P < 0.001) and D-dimer levels (56.6 versus 46.1 ng/ml; P = 0.004). They also had significantly higher insulin resistance (1.85 versus 1.53; P < 0.001) and clustered multiple atherogenic risk factors. On multivariate analysis the association between both tPA and D-dimer levels and relative status was independent of other variables. CONCLUSION: Raised levels of PAI-1, tPA, D-dimer and estimated insulin resistance were present in the healthy male first-degree relatives of men with intermittent claudication. These data support the hypothesis of fibrinolytic risk factor clustering in this high-risk population.

Cardiovascular Diseases↗

The influence of type 2 diabetes on fibrin structure and function.

AIMS/HYPOTHESIS: The precise mechanisms underlying the increased risk of cardiovascular disease (CVD) in type 2 diabetes are unclear. Fibrin clot structure has been related to CVD risk in the general population. We therefore assessed this in type 2 diabetic patients as a potential mechanism whereby diabetes influences CVD risk. METHODS: Fibrin clots were formed from fibrinogen purified from 150 subjects with type 2 diabetes and varying degrees of glycaemic control (assessed by HbA1c), and from 50 matched control subjects. Clot structure was assessed by turbidity, permeation and confocal microscopy. The specific effect of glucose itself was assessed by analysing the structure of clots formed from purified fibrinogen in the presence of increasing concentrations of the sugar. RESULTS: Clots formed by fibrinogen purified from type 2 diabetic subjects had a denser, less porous structure than those from control subjects. The structural changes found were related to the individual's glycaemic control; HbA1c correlated negatively with permeation coefficient (Ks) values (indicates clot pore size) (r = -0.57, p < 0.0001) and positively with maximum absorbance (indicator of fibre size) (r = 0.33, p < 0.0001), branch point number (r = 0.78, p < 0.0001) and fibre density (r = 0.63, p < 0.0001). The ambient glucose level influenced clot structure; hypo- (< 5 mmol) and hyperglycaemia (> or = 10 mmol/l) were both associated with a reduction in Ks values and maximum absorbance, and with increased fibre density and branch point number within clots. CONCLUSIONS/INTERPRETATION: The structural differences found to occur in type 2 diabetes and in association with hypo- and hyperglycaemia may confer increased resistance to fibrinolysis, and in consequence contribute to the increase in CVD risk in diabetic patients.

Blood Coagulation↗

Metformin reduces C-reactive protein but not complement factor C3 in overweight patients with Type 2 diabetes mellitus.

AIMS: To determine the influence of metformin treatment on plasma C-reactive protein (CRP) and complement factor C3. METHODS: A double-blind, placebo-controlled trial of metformin in patients with poorly controlled Type 2 diabetes mellitus and body mass index > 25 kg/m2. CRP and C3 were analysed in stored plasma samples by in-house ELISAs. Patients attended two baseline visits before randomization and subsequently attended at 3, 6, 12 and 24 weeks post randomization. All patients gave informed consent according to a protocol approved by the Leeds Teaching Hospitals Research Ethics Committee. RESULTS: Baseline CRP in the patients randomized to placebo [1.33 (0.79, 2.25) mg/l] and metformin [1.24 (0.89, 1.71) mg/l] were similar (P = 0.8). Baseline CRP correlated with baseline C3 (r = 0.366) and HbA1c (r = 0.327). The difference in ratios of CRP levels at each visit to baseline between placebo- (n = 16) and metformin-treated (n = 26) subjects was significantly different at the 12-week (P = 0.002) and 24-week (P = 0.03) visits. The difference in CRP ratios between the two treatment groups remained significant after accounting for glycaemic control at both visits (P = 0.001 and P = 0.003, respectively). Baseline C3 was correlated with CRP. Baseline C3 was lower in the placebo-treated group [0.97 (0.88, 1.05) mg/ml] compared with the metformin-treated group [1.09 (1.02, 1.17) mg/ml, P = 0.03]. There was no difference in the mean change in C3 at any visit from baseline between placebo- and metformin-treated groups. CONCLUSION: Metformin may have a specific interaction with mechanisms involved in CRP synthesis or secretion, not directly related to improved insulin sensitivity and dampening of chronic inflammation.

C-Reactive Protein↗

Inflammatory, atherothrombotic aspects of type 2 diabetes.

BACKGROUND: There is a tight association between diabetes and cardiovascular disease - both occur more commonly together than independently. The development of vascular disease is dependent upon complex interactions between a number of metabolic pathways involving both fluid phase proteins and cellular components. Inflammation and coagulation are two intimately linked processes that are co-regulated. The characteristic cluster of risk factors - hypertension, hyperinsulinaemia, hyperglycaemia and lipid abnormalities, which are associated with insulin resistance - have been expanded to include inflammation and thrombotic risk. Studies in patients with diabetes indicate a higher prevalence of both inflammatory cells and thrombosis in coronary plaques in comparison to non-diabetic subjects and measures of C-reactive protein predict the development of both diabetes and cardio vascular disease in prospective studies. SCOPE: This review (based on MEDLINE searches, 1990 to 2005) looks at the inflammatory, atherothrombotic aspects of type 2 diabetes that may be involved in the accelerated development of vascular disease in the population with diabetes.

Arteriosclerosis↗

Type 2 diabetes: an atherothrombotic syndrome.

Insulin resistance is found in around 80-90% of subjects with older onset (type 2) diabetes and in approximately 25% of the general population. Insulin resistance prior to the development of frank type 2 diabetes and type 2 diabetes itself is associated with a significant increase in the risk of atherothrombotic disease, which is due in part to a disruption in the balance of factors regulating coagulation and fibrinolysis. Both insulin resistance and type 2 diabetes are associated with the development of endothelial dysfunction, and enhanced platelet aggregation and activation. Whilst the plasma levels of many clotting factors including fibrinogen, FVII, FVIII, FXII, FXIII b-subunit are elevated, the fibrinolytic system is relatively inhibited as a consequence of an increase in plasminogen activator inhibitor type-1 (PAI-1) levels. These changes favour the development of a hypercoagulable pro-thrombotic state, which may in turn enhance cardiovascular risk by increasing the likelihood of developing an occlusive thrombus within a coronary/cerebral artery, and/or contributing to the development of atherosclerotic lesions. This article reviews the current published evidence of the pro-thrombotic changes that occur in association with type 2 diabetes and insulin resistance, and the putative underlying mechanisms which lead to these changes.

Animals↗

Beneficial effects of metformin on haemostasis and vascular function in man.

Type 2 diabetes is characterised by insulin resistance in association with clustering of atherothrombotic risk factors (dysglycaemia, hyperinsulinaemia, hypertension, raised triglyceride, low HDL cholesterol and increased levels of plasminogen activator inhibitor-1 (PAI-1) and clotting factor VII). There is a 3-5 fold increase in risk of myocardial infarction rising to 10-20 fold in the presence of microalbuminuria and overall around 70-75% of subjects with type 2 diabetes die of cardiovascular disease. However, classical risk factors which associate with insulin resistance do not account for all the increased burden of vascular disease in diabetic subjects. Metformin is a biguanide compound which is antihyperglycaemic, reduces insulin resistance and has cardioprotective effects on lipids, thrombosis and blood flow. Metformin has a weight neutral/weight lowering effect and reduces hypertriglyceridaemia, elevated levels of PAI-1, factor VII and C-reactive protein. In addition recent studies indicate that metformin has direct effects on fibrin structure/function and stabilises platelets, two important components of arterial thrombus. The United Kingdom Prospective Diabetes Study (UKPDS) reported that metformin was associated with a 32% reduction in any diabetes related endpoint (p<0.002), a 39% reduction in myocardial infarction (p<0.01) and a non-significant 29% fall in microvascular complications. The figures for macrovascular complications compare favourably for those described for other cardioprotective agents such as ACE inhibitors and statins. These findings confirm metformin as first line therapy in the management of obese insulin resistant type 2 diabetes and in the prevention of the vascular complications of this common condition.

Arteriosclerosis↗

Rosiglitazone in Type 2 diabetes mellitus: an evaluation in British Indo-Asian patients.

AIMS: To evaluate the effectiveness of rosiglitazone in reducing hyperglycaemia in patients with Type 2 diabetes mellitus (DM) of Indo-Asian origin taking concurrent sulphonylurea therapy. METHODS: A randomized, double-blind, placebo-controlled study of 26 weeks' duration at 31 primary and secondary care centres in areas of the UK with a high Indo-Asian population, including 177 patients aged 28-78 years. Rosiglitazone 8 mg/day or matching placebo was added to existing sulphonylurea therapy. The primary endpoint was change from baseline in glycosylated haemoglobin A1c (HbA1c) at week 26. RESULTS: The mean changes in HbA1c were -1.16% with rosiglitazone (baseline 9.21%) and +0.26% with placebo (baseline 9.06%) (treatment difference P < 0.001; 95% confidence interval (CI) -1.81, -1.08). HbA1c fell below 8% in 55% and 19% of patients, respectively (treatment difference P < 0.001; 95% CI 0.22, 0.51). The greatest improvements occurred in patients whose glycaemic control was initially poor. Improvements in homeostasis model assessment of insulin sensitivity and pancreatic beta-cell function with rosiglitazone were not accompanied by a change in plasma insulin or C-peptide after 26 weeks. Free fatty acids fell by 0.09 mmol/l with rosiglitazone and increased by 0.03 mmol/l with placebo (treatment difference P < 0.001; 95% CI -0.19, -0.07). CONCLUSION: Rosiglitazone improved insulin sensitivity, pancreatic beta-cell function, and glycaemic control in Indo-Asian patients with Type 2 DM who are at greater risk of the complications of Type 2 DM than other ethnic groups.

Adult↗

Associations between insulin resistance and thrombotic risk factors in high-risk South Asian subjects.

AIMS: There is recognized association of thrombotic factors to insulin resistance in White Europeans. South Asians are more insulin resistant compared with white Europeans and express increased metabolic features of insulin resistance. The aim of the study was to determine whether there was any relationship between insulin resistance and thrombotic risk factors in healthy South Asian subjects. METHODS: Healthy South Asians (n = 185) clinically free from ischaemic heart disease, ischaemic stroke or peripheral vascular disease were randomly recruited. Partial correlations of homeostasis model assessment (HOMA) (surrogate of insulin resistance) were analysed with two fibrinolytic and five coagulation factors. RESULTS: Age and gender-adjusted HOMA was significantly correlated to plasminogen activator inhibitor-1 (0.51, P = 0.0001), tissue plasminogen activator antigen (r = 0.40, P = 0.0001), fibrinogen (r = 0.28, P = 0.0001), von Willebrand factor (r = 0.17, P = 0.03), factor XIIa (r = 0.22, P = 0.006) factor VII antigen (r = 0.19, P = 0.02) and factor XIII B subunit (r = 0.30, P = 0.001). CONCLUSIONS: Insulin resistance significantly clusters with fibrinolytic and coagulation factors in South Asians, which may contribute to high prevalence of vascular disease in this population.

Age Factors↗

The genetics of atherothrombotic disorders: a clinician's view.

The development of coronary artery disease is dependent on the interaction of multiple biochemical pathways that lead to the development of plaque in the arterial wall and ultimately plaque instability, plaque rupture and thrombosis. The latter stages lead to vascular obstruction, tissue death and the final phenotype of myocardial infarction. Hemostasis gene association studies of atherothrombotic disorders have been unrewarding, with largely underpowered studies reporting inconsistent results. Clinical studies such as the Multiple Risk Factor Intervention Trial clearly indicate that clustering of classical risk increases the likelihood of myocardial infarction, and the addition of diabetes mellitus to the risk profile exponentially increases the risk of a vascular event. The development of insulin resistance is considered to be a pivotal event in vascular risk with associated clustering of dysglycemia, hyperinsulinemia, systolic hypertension, raised triglyceride and low high-density lipoprotein cholesterol. Additionally, elevated levels of plasminogen activator inhibitor-1, factor (F)VII, FXII, fibrinogen and tissue plasminogen activator occur with insulin resistance to create an atherothrombotic risk cluster. Heritability studies of insulin resistance and the vascular risk profile demonstrate genetic pleitropy between diabetes and vascular risk, which indicate that common genes have an important role. Increasingly, it is felt that inflammation underpins both diabetes and cardiovascular disease and that the expression of the final phenotype(s) may depend on complex gene-environment interactions with regulatory genes, including those for nuclear transcription factors and RNA-binding proteins. The complexity of coronary artery disease and the risk factor interactions make it unlikely that genetic epidemiology will identify genes involved in these processes without a better understanding of environmental influences.

Cholesterol↗

Soluble P-selectin levels, P-selectin polymorphisms and cardiovascular disease.

P-selectin is a member of the selectin family of cell adhesion molecules which are important in the transient attachment of leukocytes to endothelial cells and platelets. A number of polymorphisms in the gene encoding P-selectin have been identified. Objectives were to investigate the relationship of soluble P (sP)-selectin with P-selectin gene polymorphisms and coronary artery disease (CAD). Two hundred and forty-nine patients, with extent of CAD characterized by >or=50% stenosis in one or more coronary arteries, and 252 healthy controls were studied. Soluble P-selectin was significantly higher in the patients than controls after adjustment for age, sex and smoking [patients 49.8 (47.5-52.1) ng mL-1; controls 46.7 (44.5-49.1) ng mL-1, P = 0.03). There was no association of sP-selectin with myocardial infarction (MI) or presence of >or=50% stenosis. The -1817 T/C, -1969 G/A and -2123 C/G (but not the Thr715Pro) polymorphisms were in strong linkage disequilibrium. The Thr715Pro polymorphism was significantly associated with sP-selectin even after adjustment for covariates [TT 48.9 (46.9-50.0) ng mL-1; TP + PP 40.7 (38.1-43.6) ng mL-1, P < 0.0001]. A significant interaction of Thr715Pro and smoking status was identified in the determination of sP-selectin levels. There was no significant association of genotype at any of the polymorphism in relation to MI or stenosis. The Thr715Pro polymorphisms is associated with plasma sP-selectin. This association is modulated by smoking, although the underlying mechanism remains unclear.

Aged↗

Hyperglycaemic siblings of Type II (non-insulin-dependent) diabetic patients have increased PAI-1, central obesity and insulin resistance compared with their paired normoglycaemic sibling.

AIMS/HYPOTHESIS: First-degree relatives of Type II (non-insulin-dependent) diabetic patients in cross-sectional studies have increased insulin resistance, associated cardiovascular risk factors and abnormalities of fibrinolysis and coagulation. To minimise between-family genetic and environmental confounders, we investigated within-family relationships between early hyperglycaemia and risk factors. METHODS: Thirteen age and gender matched sibling pairs of Type II (non-insulin-dependent) diabetic patients, one hyperglycaemic, one normoglycaemic (fasting plasma glucose at screening 6.0-7.7 mmol.l(-1) and < 6.0 mmol.l(-1), respectively) were assessed for plasminogen activator inhibitor antigen (PAI-1), tissue plasminogen activator antigen (t-PA), fibrinogen, Factor VII and Factor VIII/von Willebrand factor antigen. Fasting lipid profiles, blood pressure and HOMA insulin sensitivity (%S) were also measured in siblings and in matched subjects without family history of diabetes. RESULTS: Hyperglycaemic and normoglycaemic siblings (7 female, 6 male) were aged, mean (SD) 56.8 (8.7) and 55.8 (8.4) years. Hyperglycaemic siblings had increased PAI-1 antigen, geometric mean (i.q.r.): 26.3 (15.1-45.6) vs 11.1 (2.1-23.3) ng/ml, p=0.0002, similar t-PA antigen, mean (SD) 9.5 (4.3) vs 7.4 (2.5) ng/ml, p=0.2 and fibrinogen 2.2 (0.3) vs 2.3 (0.6) g/l, p=0.5, and reduced %S 66.3 (30.5) vs 82.9 (25), p=0.04. PAI-1 correlated negatively with %S ( r=-0.55, p=0.005). No significant differences were found in blood pressure or fasting lipids. CONCLUSION/INTERPRETATION: A minor increase in plasma glucose in non-diabetic sibling pairs of Type II (non-insulin-dependent) diabetic patients was associated with reduced insulin sensitivity, increased central adiposity and a doubling of PAI-1 antigen concentration, suggesting impaired fibrinolysis. It is possible that this could contribute to increased cardiovascular risk in these subjects.

Blood Glucose↗