Gene/Protein Disease Symptom Drug Enzyme Compound
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Endothelium has many important functions including the control of blood-tissue permeability and vascular tonus, regulation of vascular surface properties for homeostasis and inflammation. Nitric oxide is the chief molecule in regulation of endothelial functions. Nitric oxide deficiency, which is also known as endothelial dysfunction, is the first step for the occurrence of many disease states in cardiovascular system including heart failure, hypertension, dyslipidemia, insulin resistance, diabetes mellitus, hyperhomocysteinemia and smoking. This review deals with the importance of nitric oxide for cardiovascular system. It also includes the latest improvements in the diagnosis and treatment of endothelial dysfunction.
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PMID:Nitric oxide and cardiovascular system. 1716 86

The next decade will face an increase in the number of patients affected by end-stage renal disease. In line with the growing incidence of type 2 diabetes, hypertension and old age in the general population, we can expect a dramatic increase of uremic patients needing a substitutive treatment of renal function. On the basis of the current trends, we expect an exponential growth of cardiovascular complications in both dialysis and transplant populations. Progress in the treatment of end-stage renal disease will aim at the prevention of cardiovascular complications, that remain the leading cause of morbidity and mortality in uremic patients. Preventive interventions for cardiovascular complications should focus on traditional risk factors, such as hypertension, dyslipidemia and obesity, diabetes mellitus, smoking, as well as on the non traditional risk factors inherent in the uremic state, such as anemia, hyperphosphoremia, hyperhomocysteinemia, inflammation and malnutrition. Recent and future innovations in peritoneal dialysis solutions include a larger use of icodextrin, a glucose polymer able to enhance ultrafiltration while inducing less glycation and caloric absorption, and perhaps improving blood pressure control. The gene therapy directed to the mesothelial cells should bring about improvements in nutrition, cardiovascular comorbidity, and dialysis adequacy. Patients submitted to increased hemodialysis time or to the implementation of a night or daily hemodialysis program have shown better blood pressure control, cardiovascular stability, tolerability and perhaps reduced mortality. Modifications of dialysis schedules clearly indicate another road to future improvements in renal replacement therapy. In the field of kidney transplantation, much improvement has already been achieved regarding the prevention of acute rejection, and the new therapeutic strategies are aimed at reducing the incidence of the adverse reactions of immunosuppressive drugs, as well as of the chronic allograft nephropathy. Induction of transplantation tolerance remains the most attractive target, which now seems closer than before because many of the mechanisms involved in the tolerance induction have been better elucidated.
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PMID:[Perspectives on treatment of the renal failure]. 1725 35

Despite good outcomes in pediatric renal transplantation, life expectancy is reduced, mostly as a result of accelerated atherosclerosis. A comprehensive evaluation of cardiac status and risk factors for cardiovascular disease was performed in 60 patients after renal transplantation (age 3 to 29 yr; mean 15.8). Posttransplantation diabetes was diagnosed in 7%. Half of the patients did not engage in any physical activity, and this was associated with increased body mass index. Uncontrolled hypertension was found in 13% of patient, and 53% were on antihypertensive medications. BP index was associated with left ventricular mass index (LVMI). Dyslipidemia was relatively uncommon, with hypercholesterolemia found in 15% and elevated LDL cholesterol found in 10% of patients. Hyperhomocysteinemia was frequent (58%); in most patients, it was not due to folate or B(12) deficiency. Lipid and homocysteine abnormalities were associated with cyclosporine therapy. Echocardiography demonstrated normal LVMI in 93% of patients, although LVMI was higher than in healthy control subjects. Cardiac troponin I was normal in all patients, but N-terminal pro-brain natriuretic peptide was elevated in 35% and was associated with LVMI and renal function. Although present cardiac status is relatively normal in pediatric renal transplantation patients, cardiac risk factors are common, and strategies to prevent cardiovascular disease need to be developed.
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PMID:Risk factors for cardiovascular disease in children and young adults after renal transplantation. 1769 60

Rheumatoid arthritis (RA) is a chronic systemic inflammatory disease affecting approximately 1% of the adult general population. Cardiovascular disease is recognized as the leading cause of death in RA patients, accounting for nearly 40% of their mortality. Patients with RA are at a twofold increased risk for myocardial infarction and stroke, with risk increasing to nearly threefold in patients who have had the disease for 10 years or more. Congestive heart failure appears to be a greater contributor to excess mortality than ischemia. This increased cardiovascular disease risk in RA patients seems to be independent of traditional cardiovascular risk factors. Pathogenic mechanisms include pro-oxidative dyslipidemia, insulin resistance, prothrombotic state, hyperhomocysteinemia, and immune mechanisms such as T-cell activation that subsequently lead to endothelial dysfunction, a decrease in endothelial progenitor cells, and arterial stiffness, which are the congeners of accelerated atherosclerosis observed in RA patients. This paper discusses pathogenic mechanisms, effects of methotrexate, tumor necrosis factor antagonists, steroids, and statins, with a perspective on therapy.
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PMID:Rheumatoid arthritis and cardiovascular disease. 1841 67

Epigenetics, which is the study of changes in gene expression that occur without changes in DNA sequence, is a novel discipline that has languished in the shadow of its genomic big brother. So far, studies of the epigenome have attracted little interest in nephrology. Chronic kidney disease is an example of complex disease in which the phenotype arises from a combination of environmental and heritable factors. Evidence suggests that the contribution made by the environment may be mediated via modifications of the epigenome. In the uremic milieu, several features such as inflammation, dyslipidemia, hyperhomocysteinema, oxidative stress as well as vitamin and nutritional deficiencies may affect aberrant global DNA methylation. However, as hyperhomocysteinemia seems to promote global DNA hypomethylation and persistent inflammation DNA hypermethylation, the effects of the uremic milieu on aberrant global DNA methylation may be complex and context-sensitive. It should be emphasized that in analogy to the unspecific nature of fever, aberrant global DNA methylation is only a sign of a generalized epigenetic dysregulation. Thus, to provide better understanding of the effects of aberrant DNA methylation on the uremic phenotype, further studies evaluating site-specific information on methylation in various candidate genes are needed. The science of epigenetics may not only uncover etiologic and pathogenic mechanisms in uremia, but may also be of help to develop novel treatment strategies targeting the unacceptable high death risk in cardiovascular complications in this patient population.
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PMID:Epigenetics and the uremic phenotype: a matter of balance. 1845 58

Peripheral arterial occlusive disease is a frequent disease due to the classical vascular risk factors such as smoking, diabetes mellitus, dyslipidemia, and hypertension. Despite these risk factors, many thrombophilias (physiological inhibitors defects, Factor V Leiden and 20210A prothrombin gene variant, antiphospholipid antibodies, mild hyperhomocysteinemia 15-30micromol/l) can be evoked in some clinical forms of peripheral arterial occlusive disease. This paper provides a synthesis of the published data about this topic. Screening for these thrombophilias is justified in patients with venous thromboembolic disease, or signs of antiphospholipid syndrome and possibly in different situations such as premature atheroma of lower limbs, chronic ischaemia, evolutive disease despite adapted treatment and revascularisation failures without evident technical explanation. Except for the antiphospholipid syndrome, there is currently no consensus for systematic screening of thrombophilia and treatment in patients with peripheral arterial occlusive disease.
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PMID:[Thrombophilias and peripheral arterial occlusive disease]. 1855 34

In chronic inflammatory diseases such as rheumatoid arthritis (RA), systemic inflammation appears as an independent risk factor, contributing to increased cardiovascular mortality. This high cardiovascular mortality reveals the existence of accelerated atherosclerosis, the pathogenesis of which may be associated with traditional risk factors such as smoking, hypertension, dyslipidemia, deterioration of insulin sensitivity, and less traditional risk factors such as hyperhomocysteinemia, inflammatory conditions and endothelial dysfunction. Control of systemic inflammation theoretically provides a means of preventing this higher cardiovascular mortality among RA patients. In this review we address the question of the impact of anti-rheumatic drugs currently used in RA, such as non-steroidal anti-inflammatory drugs (e.g. non-selective or cyclooxygenase-2 selective inhibitors), steroidal anti-inflammatory drugs (glucocorticoids), traditional disease-modifying anti-rheumatic drugs (e.g. methotrexate) or biologics (e.g. anti-tumour necrosis factor alpha anti-tumour necrosis factor alpha) on cardiovascular diseases in RA patients. We also discuss the specific mechanisms involved in the differential cardiovascular effects of these therapeutic agents.
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PMID:Impact of traditional therapies and biologics on cardiovascular diseases in rheumatoid arthritis. 1867 61

TREATMENT OF ARTERIAL HYPERTENSION - Blood pressure (BP) should be regularly measured in all patients with CKD (Strength of Recommendation C). - BP control and proteinuria reduction delay progression of CKD (Strength of Recommendation A) and reduce cardiovascular risk (Strength of Recommendation C). Thus, control of both factors should be the treatment objective. - The BP target in patients with CKD should be < 130/80 mmHg, and 125/75 mmHg if proteinuria is > 1 g/24 hours (Strength of Recommendation A). - Lifestyle changes should be made: low-sodium diet (less than 100 mEq/day of sodium or 2.4 g/day of salt); weight reduction if patient is overweight (body mass index 20-25 kg/m2); regular aerobic physical exercise and moderate alcohol intake for BP control and prevention of cardiovascular risk (Strength of Recommendation A). - The choice of the antihypertensive drug in patients with CKD depends on the etiology of CKD, cardiovascular risk, or presence of clinical or subclinical cardiovascular disease (Strength of Recommendation A). - Two or more antihypertensive drugs are usually required to control blood pressure in patients with CKD (Strength of Recommendation B), and will frequently include a diuretic, which in stages 4-5 should be a loop diuretic (Strength of Recommendation B). - Renin-angiotensin-aldosterone system (RAAS) inhibitors are first choice drugs in patients with diabetic nephropathy, patients with non-diabetic nephropathy with a protein/creatinine ratio higher than 200 mg/g, and patients with heart failure (Strength of Recommendation A). The combination of ACEIs and ARBs is indicated for reducing proteinuria that remains high despite treatment with a RAAS inhibitor, provided potassium levels do not exceed 5.5 mEq/L (Strength of Recommendation B). - When RAAS blockers are started or their dose is changed in patients with advanced CKD, kidney function and serum potassium levels should be monitored at least after 1-2 weeks. DIAGNOSIS AND TREATMENT OF DYSLIPIDEMIA - A complete evaluation of the lipid profile including total cholesterol, LDL-C, HDL-C, and triglycerides should be performed in any patient with CKD at baseline and at least annually (Strength of Recommendation B). - In patients with stage 4-5 CKD and LDL-C >or= 100 mg/dL, treatment to decrease levels to < 100 mg/dL should be considered because of their high CV risk. This reduction is recommended in secondary prevention and in primary prevention in diabetic patients. Lipid-lowering treatment is recommended in all other patients, although no evidence showing its benefits is available yet (Strength of Recommendation C). - In patients with stage 4-5 CKD and triglyceride levels >or= 500 mg/dL which are not corrected by treating the underlying cases, treatment with triglyceride-lowering drugs may be considered to reduce the risk of pancreatitis. However, treatment with fibrates should be used with caution, and these drugs should not be associated to statins due to the risk of rhabdomyolysis (Strength of Recommendation C). There is little experience on the efficacy and safety of omega-3 fatty acids for the treatment of hypertriglyceridemia in patients with grade 4-5 CRF, but they may be considered a possibly safer alternative to fibrates (Strength of Recommendation C). SMOKING - Smoking is a cardiovascular risk factor and a risk factor for progression of kidney disease in patients with CRF (Strength of Recommendation B). - Use of active measures to achieve smoking cessation is recommended in patients with CRF (Strength of Recommendation C). HOMOCYSTEINE - Hyperhomocysteinemia has been postulated as a cardiovascular risk factor in the general population and in kidney patients, but the available evidence is not consistent. - There is no evidence that vitamin therapy decreases cardiovascular risk in patients with CRF, and recommendation of routine vitamin measurement and start of vitamin therapy to reduce cardiovascular risk in these patients is therefore questionable (Strength of Recommendation B). LEFT VENTRICULAR HYPERTROPHY - Left ventricular hypertrophy (LVH) is a cardiovascular risk factor in patients with CRF (Strength of Recommendation B). - It is advisable to perform an echocardiogram at baseline and every 12-24 months and to consider treatments allowing for LVH regression (Strength of Recommendation C). The approach to LVH should be early and multifactorial because its reversibility is limited once established (Strength of Recommendation C). - RAAS blockade with ACEIs or ARBs partially reverts LVH in patients with CRF (Strength of Recommendation B). ANTI-PLATELET AGGREGATION - Because of the high cardiovascular risk in patients with CKD, anti-platelet aggregant therapy, especially low-dose aspirin, would be indicated in patients with type 2 diabetes as primary prevention, and in all patients with CKD as secondary prevention. There is however no evidence of the benefits of anti-platelet aggregant therapy in primary prevention in patients with CKD, particularly in stages 4-5; indication for treatment in this situation should therefore be individualised because of its greater risk of bleeding. - Adequate good blood pressure control should previously be achieved to minimise the risk of haemorrhagic stroke (Strength of Recommendation C).
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PMID:[Arterial hypertension and dyslipidemia in patients with chronic kidney disease (CKD). Anti-platelet aggregation. Goal oriented treatment]. 1901 37

This article provides an overview on the management of risk factors to prevent primary strokes, the gaps in successful management, and future directions for the research and management of stroke risk factors. The major focus is given to the management of modifiable risk factors for stroke, including hypertension, diabetes, dyslipidemia, atrial fibrillation and other cardiac conditions, carotid artery stenosis, smoking, poor diet, physical inactivity, and obesity. A brief discussion on the management of potentially modifiable risk factors, such as alcohol and drug abuse, sleep apnea, and hyperhomocysteinemia, is included, as is the use of antiplatelet therapy in primary stroke prevention. Finally, prognostic scores to assess an individual risk for a first stroke are reviewed.
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PMID:Risk factor management to prevent first stroke. 1902 1

Successful kidney transplantation leads to restoration of renal function. Some metabolic disorders from chronic renal failure may persist and new metabolic abnormalities can develop (obesity, diabetes, hypertension, bone disease, and anemia). Additionally, influence of immunosuppressive drugs (corticosteroids, cyclosporine A, tacrolimus, and rapamycin) may aggravate the course of diabetes, hypertension, and dyslipidemia. Nutritional management of renal transplantation is divided into the pretransplant period, transplant surgery, and early and late posttransplant period. Patients in the pretransplant period in dialysis treatment may develop protein-energy malnutrition and negative nitrogen balance, with loss of lean body mass and fat deposits. Nutritional management in the early posttransplant period with a functioning kidney graft necessitates fluid and electrolyte balance control with protein intake of 1,2/kg BW/day and 30-35 kcal/kg BW/day. In a nonfunctioning kidney graft, dialysis treatment continues and the therapeutic dose of immunosuppressive drugs must be reduced. The principal objective in the late posttransplant period is the maintenance of optimal nutritional status. Nutrition is important in managing obesity, insulin resistance, diabetes, hyperlipidemia, and hypertension. Other posttransplant conditions for which diet and/or nutritional supplements may be beneficial include hypomagnesemia, hypophosphatemia, hyperuricemia, hyperkalemia, hyperhomocysteinemia, chronic renal allograft failure, renal anemia, and renal bone disease.
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PMID:Nutritional consequences of renal transplantation. 1912 81


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