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Nephropathy may develop in patients with type 1 diabetes because poor glycemic control produces effects that eventually lead to glomerular scarring and renal failure. The worse and more prolonged the hyperglycemia, the greater the risk of diabetic nephropathy. In patients with type 2 diabetes, hyperglycemia, as well as insulin resistance and generalized vascular disease, is involved in the pathogenesis of nephropathy. The glomerular changes of early diabetic nephropathy can be identified only by renal biopsy or by testing for microalbuminuria. Once macroalbuminuria occurs (albumin excretion rate, > 300 mg/day), usually after type 1 diabetes has been present for 10 to 15 postpubertal years, end-stage renal disease is almost inevitable. However, aggressive control of hypertension in diabetic patients without microalbuminuria helps avoid nephropathy, and tight glycemic control in those with microalbuminuria can avoid or delay its onset. Even when macroalbuminuria is present, treatment can prolong renal function. Aggressive antihypertensive therapy, especially with ACE inhibitors, can reduce renal decline by half. Avoiding circumstances that may damage the kidneys (e.g., use of radiocontrast materials or nephrotoxic drugs, dehydration, hyperlipidemia, urinary tract infection, buildup of AGEs) is critical. Some treatment methods are controversial (dietary protein restriction) or still under investigation (use of injected or oral heparin) but may help delay renal transplantation or dialysis.
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PMID:Dealing with diabetic nephropathy. 1002 5

Congestive heart failure (CHF) is growing epidemiologic and clinical problem, and is the only common cardiovascular condition that is increasing in incidence, prevalence and mortality. During last years numerous clinical trial have been conduced evaluating the effect of various treatment procedures on clinical endpoints in patients with CHF. The major risk factor for CHF are hipertension and atherosclerotic vascular diseases, and now it is clear that aggressive treatment of hypertension and hyperlipidemia can be effective in preventing CHF. Treatment strategies for CHF are aimed at preventing and delaying progression of the disease and improving survival. In the treatment of CHF diuretics are at present the first drugs line for patients with fluid retention and are necessary to relieve symptoms but cannot halt progression or improve the prognosis of CHF. Angiotensin-converting enzyme inhibitors (ACE inhibitors) therapy has been shown to decrease mortality and progression of CHF and should be used early in patients with left ventricular dysfunction whether they have symptomatic or asymptomatic CHF. Digoxin therapy is associated with decrease in the risk of worsening CHF irrespective of rhythm, systolic function, severity of CHF or therapy with ACE inhibitors. In patients with symptomatic CHF due to systolic dysfunction the addition of diuretics and digoxin appears to reducing worsening CHF without improving survival. Other than digoxin oral inotropic agents (amrinone, pimobendan, vesnarinone, ibopamine) increase mortality in patients with CHF and have not improved symptom status and other clinical endpoints during long-term therapy. Hydralazine and isosorbide dinitrate administrated in combination are less effective alternative to ACE inhibitors. Beta-blockers and particular carvedilol may prolong survival and decrease worsening CHF when used in combination with digoxine, diuretics and ACE inhibitors. Beta-blockers therapy improve hemodynamics, LVEF and functional status patients with CHF and the ideal candidate for this therapy is stable patients with NYHA II-III CHF due to nonischemic cause. Calcium antagonists do not appear to be useful in patients with CHF, although amlodipine and mibefradil appears to be safe for treatment of angina or hypertension in this group. On the basis of current data, antiarrhythmic agents should not be given to patients with CHF free from arrhythmia but those with sustained ventricular tachycardia or ventricular fibrillation amiodaron appears to be safe.
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PMID:[Trends in pharmacological treatment of congestive heart failure]. 1036 2

Renal transplant recipients die of CVD at an accelerated rate compared with the general population. Successful management of CVD risk would prolong patient and renal allograft life, but management must begin early in the pretransplant period. By the time a renal transplant becomes available, patients often have advanced CVD because of prolonged and progressive renal disease. The most effective way to reduce premature CVD in renal transplant recipients is to address the problem of cardiac disease and vascular disease at the earliest stages in the natural history of progressive renal disease. Based largely on the success of such treatments in the general population, pretransplant modification may include the use of statins to control hyperlipidemia and ACE inhibitors to control elevated blood pressure. Elevated blood pressure has been related to the development of cardiomyopathy prior to transplantation; thus, therapeutic goals should be revised to include reversal of LVH. Longitudinal studies are needed to evaluate the effects of blood pressure lowering on LVH (and other echocardiographic abnormalities) in patients with progressive renal disease, patients on dialysis, and even following transplantation. Echocardiographic parameters have been shown to be stronger determinants of CVD mortality than conventional risk factors in the transplant population, and studies are needed to look at regression of these echocardiographic abnormalities with blood pressure control.
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PMID:Pretransplant management of end-stage renal disease patients to minimize posttransplant risk. 1115 31

Erectile dysfunction is a frequent condition in cardiovascular patients. Since the arrival of oral erection-supporting medication, patients want to know how safe sexual activity is in cardiovascular disease in general and during use of erection-supporting medication in particular. Sexual intercourse with a steady partner causes no more cardiovascular risk than normal daily activities such as ironing, 2 kilometers of walking without climbing, paperhanging, playing golf or gardening. The relative risk of myocardial infarction during sexual activity is not significantly higher than for healthy persons. The incidence of cardiovascular morbidity and mortality is not higher among users of sildenafil. Sildenafil is contraindicated in patients using long-acting nitrates or who may need to use short-acting nitrates, because the combination may cause a sharp fall of the blood pressure. No interactions have been observed with beta-receptor blockers, calcium antagonists, thiazide and loop diuretics and ACE inhibitors. Before prescribing a symptomatic (pharmaceutical) treatment for patients with an erection disorder, attention should be given tot the sexological, psychological and medical backgrounds of the disorder. Secondary prevention of atherosclerotic risk factors is also important: regulation of blood pressure and blood sugar level, hyperlipidaemia and obesity, as well as a change of lifestyle (giving up smoking, adapting of diet and more physical exertion). Patients with a very low cardiac capacity should be advised to refrain from treatment of the erection disorder.
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PMID:[Drug treatment of erection disorders in patients with cardiovascular disease]. 1121 61

Left ventricular hypertrophy (LVH) is supposed to be a useful marker of cardiovascular complications during the course of hypertension. Authors compared the presence of heart failure, left ventricular diastolic dysfunction and chronic atrial fibrillation in hypertensive patients with and without left ventricular hypertrophy defined by echocardiography. Hospital records of 192 hypertensives treated in our medical department during years 1996-1999 were analysed. Left ventricular hypertrophy was defined by echocardiography (Penn convention) as left ventricular mass index > 134 g/m2 in men and > 110 g/m2 in women. Presence of LVH was found in 128 patients (mean age 65.9 years), absence of LVH in 64 patients (mean age 64.8 years). Both groups of hypertensives were matched by demographic parameters, by the presence of hyperlipidemia, by smoking habits. Hypertensive patients with left ventricular hypertrophy were more often treated by ACE inhibitors. There were statistically significant more patients with heart failure, left ventricular diastolic dysfunction and chronic atrial fibrillation in LVH-positive patients than in LVH-negative once. There was also statistically significant lower ejection fraction (50.3 +/- 11.4% vs 56.5 +/- 7.4%) in LVH-positive patients than in LVH-negative once. Left ventricular hypertrophy in patients with hypertension brings usually a complicated course of the disease with a high contribution to the development of chronic heart failure.
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PMID:[Heart failure in hypertensive patients with left ventricular hypertrophy]. 1149 79

Type II diabetes and hypertension are two pathologies which are frequently associated in adults, especially in developed countries. All the more so when patients are also obese: obesity is today, and will be in the next future, a true epidemic in these countries. These three pathologies imply a risk for cardiovascular complications much higher than that due to an isolated arterial hypertension. This increased risk is probably due to many factors: hyperglycemia, a dismetabolic syndrome (hyperlipemia, hyperuricemia, thrombophilia, altered Na(+)-H+ membrane exchanges = syndrome X) and hyperinsulinemia which favor atherosclerosis and clinical events. Consequently non-pharmacological and aggressive pharmacological therapy is necessary. Even if the trials done in the last years are questionable and not totally convincing, all researchers agree that lowering blood pressure to normality is the best way to improve prognosis of these patients. Usually for this purpose we need a therapy with more than one drug. Among the antihypertensive drugs, ACE-inhibitors (and perhaps also angiotensin receptor blockers) are preferred, especially in those hypertensives with diabetes who have also microalbuminuria or a frank proteinuria.
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PMID:[Diabetes and arterial hypertension]. 1177 8

Individuals with diabetes are at high risk of cardiovascular (CV) disease, a risk that is significantly greater in the presence of traditional CV risk factors (hyperlipidaemia, hypertension, prothrombotic state). Glucose control and management of these risk factors decreases but does not eliminate CV events, reflecting the complexity of atherosclerosis. Novel risk factors (C-reactive protein, lipoprotein a, homocysteine, and endothelial dysfunction) have been proposed and are potentially modifiable. However, clinical trials data are not yet available to guide therapy. At this time, no single agent can achieve adequate risk reduction in patients with diabetes. Even with the use of multiple agents and classes of agents to manage CV risk, 75% of patients with diabetes are expected to die from CV causes. Despite the recent advances in primary and secondary prevention of CV events, new approaches are needed. Data from the Heart Outcomes Prevention Evaluation (HOPE) trial demonstrated that CV risk can be further reduced by the addition of the ACE inhibitor ramipril to the existing treatment regimen of high-risk patients with diabetes.
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PMID:Attenuating CV risk factors in patients with diabetes: clinical evidence to clinical practice. 1184 49

In recent years several multicentric prospective studies have demonstrated the efficacy of some therapeutic measures to slow the progression of renal diseases. Inhibition of renin-angiotensin system (RAS) both by ACE inhibitors (ACEI) and angiotensin II receptor antagonists (ARA) is probably the strongest therapeutic alternative: The antiproteinuric effect of these drugs is an excellent surrogate marker and a predictor of the beneficial influences on the progression of renal failure. The type of renal disease, an inadequate control of blood pressure, and the presence of obesity may counteract the beneficial influences of RAS inhibition, whereas early treatment of all patients with significant proteinuria before the appearance of renal insufficiency and combined therapy with an ACEI and an ARA may augment it. Dietary protein restriction is a classic treatment of chronic renal insufficiency whose effectiveness has been validated by multicentric studies. However, a poor compliance of the patient and the risk of malnutrition with very strict protein restriction could limit the benefits of this treatment. Treatment of hyperlipidemia, prevention of obesity, avoidance of smoking, and regular physical exercise are interventions whose therapeutic potential is progressively recognized, particularly in type 2 diabetic nephropathy. Early correction of anemia may contribute to the slowing of renal disease progression. Although further studies are required, the accumulated evidence and the likelihood of additive beneficial effect of these therapeutic measures advise their combined implementation in patients with chronic renal diseases.
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PMID:Slowing the progression of renal failure. 1198 7

The aim of this study was to investigate whether a combined treatment of ACE inhibitor and exercise training is more effective than either treatment alone in alleviating the insulin resistant states in the Otsuka Long-Evans Tokushima Fatty (OLETF) rat, a model of type 2 diabetes. OLETF rats (25 weeks old) were randomly divided into 5 groups; sedentary control, exercise-trained, temocapril (ACE inhibitor; 2 mg/kg/day)-treated, with and without exercise, and losartan (AT1 receptor antagonist; 1 mg/kg/day)-treated. Long-Evans Tokushima Otsuka rats were used as a non-diabetic control. Body weight, the amount of abdominal fat and blood pressure were higher for OLETF rats than for control rats. However, glucose infusion rate (GIR), an index of insulin resistance, was decreased greatly in OLETF rats. The fasting levels of blood glucose, insulin and lipids were also increased in the diabetic strain. In OLETF rats, both temocapril and losartan reversed hypertensive states significantly, whereas GIR and hyperlipidemia were improved when rats were treated with ACE inhibitors, but not with the AT1 receptor antagonist. Exercise training decreased body weight and the amount of abdominal fat, and also increased GIR in parallel with improved dislipidemia. The combination of the ACE inhibitor with exercise training also improved obesity, hyperinsulinemia, dislipidemia and fasting level of blood glucose, and this combination resulted in the greatest improvement of insulin resistance. These results suggest that the combination of ACE inhibitor and exercise training may be a beneficial treatment for mixed diabetic and hypertensive conditions.
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PMID:Combined effect of ACE inhibitor and exercise training on insulin resistance in type 2 diabetic rats. 1200 25

IRS is a complex disease consisting of a clustering of metabolic disorders, of which hyperglycaemia, hyper-insulinaemia and dyslipidaemia are the most important. Endothelial dysfunction plays an important role in the pathogenesis of atherosclerosis. The effects of hyperinsulinaemia seem to depend on lipidaemia and glycaemia. Hyperglycaemia and hyperlipidaemia have detrimental effects on endothelial function in the fasting as well as the postprandial states. In both situations, the generation of ROS and vasoactive molecules plays a major role in interfering with the atheroprotective endothelium-dependent NO system. Treatment of IRS in regard to endothelial function should be focused initially on lifestyle improvement, such as stopping smoking and eating a balanced diet containing antioxidant vitamins, folic-acid, L-arginine and long-chain omega-3 unsaturated FA. Strict glucose control has shown to improve endothelial function and decrease microvascular complications. However, macrovascular complications, in line with endothelial functional improvement, have so far been reduced only when treatment was focused on other characteristics of the IRS syndrome, in particular dyslipidaemia. Other relevant treatments include ACE inhibitors and thiazolidinediones, and probably tetrahydrobiopterin and folic acid supplementation. Future studies should address the effects of therapeutic neovascularization on endothelial dysfunction.
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PMID:Insulin resistance and vessel endothelial function. 1221 28


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