PubMed Health⌕ Search

Biomedical subjects

Giuseppe Remuzzi

Publications and source records attributed to Giuseppe Remuzzi.

At least 73 records · Page 4Linked to original sources

Mechanisms of disease: Pre-eclampsia.

Pre-eclampsia, a syndrome of pregnant women, is one of the leading causes of maternal and fetal morbidity and mortality. Despite active research, the etiology of this disorder remains an enigma. Recent work has, however, provided promising explanations for the causation of the disorder and some of its phenotypes. Evidence indicates that the symptoms of hypertension and proteinuria, upon which the diagnosis of pre-eclampsia is based, have several underlying causes. Nevertheless, the treatment of pre-eclampsia has not changed significantly in over 50 years. This review describes the most recent insights into the pathophysiology of pre-eclampsia from both basic and clinical research, and attempts to provide a unifying hypothesis to reconcile the abnormalities at the feto-placental level and the clinical features of the maternal syndrome. The novel findings outlined in this review provide a rationale for potential future prophylactic and therapeutic interventions for pre-eclampsia.

Female↗

Lipid oxidative stress and the anti-inflammatory properties of statins and ACE inhibitors.

Observational studies in different populations indicate a positive relationship between dyslipidemia, cardiovascular events, and kidney disease progression. Patients with chronic renal diseases usually present with conditions (inflammation, oxidative stress) that can induce quantitative and qualitative changes in lipoprotein composition, making these particles more atherogenic. Several large randomized trials have shown that lowering cholesterol with statins reduces coronary mortality and morbidity across a wide range of cholesterol levels. Moreover, statins ameliorated renal function and structure in experimental models of progressive renal disease as well as in patients with proteinuric disease. It has been hypothesized that statins may directly modulate intracellular signaling systems involved in cellular proliferation, inflammatory, and fibrogenic responses. In addition, studies in animals have shown that the mevalonate pathway also may be involved in the regulation of the renin-angiotensin system, providing the rationale for the use of statins in combination with angiotensin-converting enzyme inhibitors and/or angiotensin II receptor antagonists, 2 classes of drugs that have evidenced beneficial effects in different forms of renal diseases. Preliminary studies have shown that a multidrug approach may induce remission of proteinuria, lessen renal injury, and protect from loss of function in those patients whose condition does not fully respond to a single treatment.

Angiotensin-Converting Enzyme Inhibitors↗

The hemolytic uremic syndromes.

PURPOSE OF REVIEW: Recent studies have provided a better understanding of the molecular mechanisms responsible for hemolytic uremic syndromes. In this review, we summarize biochemical and genetic data that may lead to new clinical approaches. RECENT FINDINGS: The structures and modes of action of Shiga toxins have been deciphered. Patients with non-Shiga-like toxin hemolytic uremic syndrome have been found to carry mutations in three genes that encode for regulators of the complement system (factor H, membrane cofactor protein, and factor I). SUMMARY: Shiga-like toxin-1 and Shiga-like toxin-2 regulate genes that encode for chemokines, cytokines, cell adhesion molecules, and transcription factors involved in immune response and apoptosis. Mutations in factor H, membrane cofactor protein and factor I have recently been identified. Reduced expression of compliment regulators might prevent restriction of complement deposition on glomerular endothelial cells, leading to microvascular cell damage and tissue injury. Shiga-like toxin hemolytic uremic syndrome in children has a favorable prognosis in 90% of cases; kidney transplantation shows a good graft survival rate (80%) in children who progress to end stage renal disease. As for non-Shiga-like toxin hemolytic uremic syndrome, treatment with plasma infusion or exchange has been used with controversial effects. Kidney transplantation is not recommended in those patients with mutations in factor H and factor I; however, a kidney transplant corrects membrane cofactor protein dysfunction. These findings vividly underscore the clinical heterogeneity of outcomes depending upon the nature of the underlying cause of the disease.

Complement Factor H↗

Activation of porcine endothelium in response to xenogeneic serum causes thrombosis independently of platelet activation.

BACKGROUND: Endothelial cell activation and microvascular thrombosis are hallmarks of hyperacute xenograft rejection. However, the molecular determinants of platelet-endothelial interaction and thrombus formation are poorly understood. This study investigated whether: (i) xenogeneic human serum (HS), as a source of xenoreactive antibodies and complement, activates porcine aortic endothelial cells (PAEC) to promote thrombus formation under high shear stress; (ii) the endothelial adhesive proteins vitronectin receptor and P-selectin are involved in the von Willebrand factor (VWF)-platelet interaction during the thrombotic process under flow; (iii) reactive oxygen species (ROS) are activated by complement and served as intracellular signals for adhesive protein up-regulation. METHODS: The PAEC were pre-exposed for 90 min in static conditions to medium plus 10, 20, and 50% HS or 20% porcine serum (PS), as control, then cells were perfused at 50 dynes/cm2 in a parallel plate flow chamber with human blood and area occupied by thrombi was measured. The role of complement in HS-induced thrombus formation was assessed by incubating PAEC with 20% HS in the presence of soluble complement receptor type 1 (sCR1) before blood perfusion. The effect of platelet activation was assessed using human blood treated or not with ADP and then flowed over PAEC pre-exposed to 20% HS or 20% PS as control. To identify the endothelial adhesive proteins involved in thrombus formation PAEC treated with 20% HS were then incubated with anti-vitronectin receptor antibody, anti-P-selectin antibody or P-selectin glycoprotein ligand-1 (PSGL-1), the soluble ligand of P-selectin, before the adhesion assay. Confocal microscopy was used to detect changes in endothelial adhesive protein expression. VWF interaction with platelet receptors GPIb and alphaIIbbeta3 was assessed adding aurin tricarboxylic acid (ATA) and anti-alphaIIbbeta3 antibody to blood before perfusion. The ROS involvement in xenogeneic serum-induced thrombus formation was determined studying the intracellular production of hydrogen peroxide (H2O2). The effect of antioxidants and metal chelators on HS-induced thrombus formation was evaluated treating PAEC with pyrrolidine dithiocarbamate (PDTC) or 1,3-dimethyl-2-thiourea (DMTU) before and during incubation with 20% HS followed by blood perfusion. The effect of antioxidants and sCR1 on ROS generation was investigated treating PAEC with PDTC or DMTU before and during incubation with 20% HS. Intracellular ROS generation was measured by fluorescence spectroscopy using the probe dihydrorhodamine 123 (DHR-123). RESULTS: Human serum but not PS caused thrombus formation on PAEC under high shear stress. Blockade of complement activation by sCR1 prevented xenogeneic serum-induced thrombus formation. Activated platelets did not promote thrombus formation on resting endothelium, and did not further increase platelet deposition on xenogeneic serum-treated PAEC. Vitronectin receptor and P-selectin were up-regulated on the endothelial surface by HS. Their functional blockade by specific antibodies prevented platelet deposition and thrombus formation. H2O2 production significantly increased when PAEC were exposed to the xenogeneic condition. Antioxidants and sCR1 completely prevented thrombus formation by reducing excessive ROS production and the expression of vitronectin receptor and P-selectin. CONCLUSIONS: Xenogeneic complement induces endothelial cell activation and thrombosis which is independent of platelet activation. Complement deposition elicits a rapid generation of ROS that lead to overexpression of endothelial adhesive molecules instrumental for platelet deposition.

Animals↗

Generic cyclosporine formulations: more open questions than answers.

The introduction of cyclosporine (CsA) in clinical practice has significantly improved patient and allograft survival after organ transplantation. The new microemulsion CsA formulation, Neoral, has been associated with a more reproducible absorption and a better patient outcome as compared to the old formulation Sandimmune. Recently, several generic CsA formulations have been tested as bioequivalent to Neoral. Bioequivalence tests have been performed in selected groups of young, healthy male volunteers usually in single-dose studies, and then extended to completely different population, such as transplant recipients. However, growing body of evidence shows that CsA pharmacokinetics in healthy subjects is different from that of transplant patients, treated chronically with CsA. Therefore, converting patients from Neoral to the new generic formulations could be detrimental, exposing patients to increased risk of graft function deterioration and graft loss. Thus, more research and more accurate bioequivalence tests are required to address the unanswered problems dealing with the generic CsA formulations.

Cyclosporine↗

Inhibition of the chemokine receptor CXCR2 prevents kidney graft function deterioration due to ischemia/reperfusion.

BACKGROUND: Ischemia/reperfusion (I/R) injury after organ transplantation is a major cause of delayed graft function. Following I/R, locally produced CXC chemokines attract and activate granulocytes, which in turn promote graft damage. METHODS: We examined the involvement of granulocyte recruitment via the CXCR2 pathway in a rat model of 4 hours cold ischemia followed by kidney transplantation. Serum creatinine and intragraft granulocyte infiltration were monitored in the early phase posttransplant. A CXCR2 inhibitor, repertaxin, was given to recipients before transplantation (at -24 hours or -8 hours or -2 hours), immediately before reperfusion and 2 hours later. RESULTS: An increase of granulocyte chemoattractant CINC-1/interleukin-8 (IL-8) mRNA expression after I/R both in syngeneic and allogeneic transplantation was associated with a marked infiltration of granulocytes in renal tissue. In syngeneic transplantation, Lewis rats given 15 mg/kg repertaxin 24 hours before surgery had granulocyte graft infiltration and serum creatinine levels significantly reduced in respect to vehicle-treated animals. Intermediate effects were observed with 5 mg/kg, whereas the dose of 30 mg/kg had toxic effects. We found that reducing the pretreatment time to 8 hours before surgery was still effective. Prevention of granulocyte infiltration and serum creatinine increase was also obtained in allogeneic transplantation, when Brown Norway recipients of Lewis kidneys were given 15 mg/kg repertaxin starting 8 hours before surgery. CONCLUSION: Repertaxin treatment of the recipient animal was effective in preventing granulocyte infiltration and renal function impairment both in syngeneic and in allogeneic settings. The possibility to modulate I/R injury in this rat model opens new perspectives for preventing posttransplant delayed graft function in humans.

Animals↗

Safety and efficacy of long-acting somatostatin treatment in autosomal-dominant polycystic kidney disease.

BACKGROUND: The fluid filling renal cysts in human polycystic kidneys is secreted chiefly by the tubular epithelium lining the cysts via secondary chloride transport. Inhibiting this process by somatostatin therapy should induce shrinking of renal cysts. METHODS: In this randomized, cross-over, placebo-controlled trial we compared the risk/benefit profile of 6-month treatment with long-acting somatostatin (octreotide-LAR, 40 mg intramuscularly every 28 days) or placebo in autosomal-dominant polycystic kidney disease (ADPKD) patients with mild-to-moderate renal insufficiency and no evidence of other kidney disease. Volumes of kidney structures were evaluated by a two-slice computed tomography (CT) scanner; while glomerular filtration rate (GFR) was estimated by iohexol plasma clearance. RESULTS: One patient on somatostatin and one on placebo were prematurely withdrawn because of nonsymptomatic, reversible colelithiasis and asthenia, respectively. In the remaining 12 patients somatostatin was well tolerated. Kidney volume increased by 71 +/- 107 mL (P < 0.05) on somatostatin and by 162 +/- 114 mL (P < 0.01) on placebo. The percent increase was significantly lower on somatostatin (2.2 +/- 3.7% vs. 5.9 +/- 5.4%) (P < 0.05). Cystic volume tended to increase less on somatostatin than on placebo (3.0 +/- 6.5% vs. 5.6 +/- 5.8%). The "parenchymal" volume nonsignificantly increased by 2.5 +/- 8.4% on placebo and slightly decreased by 4.4 +/- 8.9% on somatostatin. The GFR did not change significantly during both treatment periods. CONCLUSION: In ADPKD patients, 6-month somatostatin therapy is safe and may slow renal volume expansion. This may reflect an inhibited growth in particular of smallest cysts beyond the detection threshold of CT scan evaluation. Whether this effect may prove renoprotective in the long term should be tested in additional trials of longer duration.

Adult↗

A report with consensus statements of the International Society of Nephrology 2004 Consensus Workshop on Prevention of Progression of Renal Disease, Hong Kong, June 29, 2004.

This report summarizes the discussions of the International Society of Nephrology (ISN) 2004 Consensus Workshop on Prevention of Progression of Renal Disease, which was held in Hong Kong on June 29, 2004. Three key areas were discussed during the workshop: (1) screening for chronic kidney disease; (2) evaluation and estimating progression of chronic kidney disease; and (3) measures to prevent the progression of chronic kidney disease. Fifteen consensus statements were made in these three areas, as endorsed by the participants of the workshop. The ISN can make use of and take reference to these statements in formulating its policy for tackling chronic kidney disease, a disease with significant global impact.

Hong Kong↗

Strategies for national health care systems in emerging countries: the case of screening and prevention of renal disease progression in Bolivia.

There are close to 1 million people in the world who are alive simply because they have access to one form or another of renal replacement therapy (RRT). Ninety percent live in high-income countries. Little is known of prevalence and incidence of chronic kidney disease and of end-stage renal disease (ESRD) in middle-income and low-income countries, where the use of RRT is scarce or nonexistent. However, no intervention is undertaken, these people will experience progression to ESRD and death from uremia, because RRT is out of reach for them. These are the individuals for whom efforts should be focused to prevent or delay progression toward ESRD. In 1992, the Mario Negri Institute for Pharmacological Research in Bergamo, Italy, with the cooperation of the young doctors of the Ospedale Giovanni XXIII in La Paz (Bolivia), activated a specific project titled "El Proyecto de Enfermedades Renales en Bolivia" (The Project for Renal Diseases in Bolivia). The project sought to demonstrate that in emerging countries the best strategies against renal disease are prevention and early detection. After proper training of local personnel at the Clinical Research Center "Aldo e Cele Dacco" of the Mario Negri Institute in Bergamo, Italy, an educational campaign titled "First Clinical and Epidemiological Program of Renal Diseases"-under the auspices of the Renal Sister Center Program of the International Society of Nephrology-was conducted in 3 selected areas of Bolivia, including tropical, valley, and plains areas. The goal was to define the frequency of asymptomatic renal disease in these areas by screening a large population of patients at relatively low costs. The screening was formally performed at first-level health centers (Unidad de Salud). Participants were instructed to void a clean urine specimen, and a dipstick test was performed. Patients with positive urinalysis were enrolled in a follow-up program with subsequent laboratory and clinical checks. The study was conducted by 21 clinical centers. Apparently healthy patients (14,082) were enrolled over a period of 7 months. Urinary abnormalities were found on first screening in 4261 patients, but only 1019 patients (23.9%) were available for follow-up. At second urinalysis, 35% of patients had no abnormalities. In the remaining positive group of patients, further investigations disclosed the following abnormalities: urinary tract infection (48.4%), isolated hematuria (43.9%), chronic renal failure (1.6%), renal tuberculosis (1.6%), and other diagnoses 4.3% (kidney stones, 1.3%; diabetic nephropathy, 1%; polycystic kidney diseases, 1.9%). The experience gained from this initial screening program formed the basis for a second study aimed to prevent renal disease progression in a selected Bolivian population with high altitude polycythemia. In conclusion, our studies show that mass screening of the population for renal disease is feasible in developing countries and can provide useful information on frequency of renal diseases. Also, in patients with altitude polycythemia, long-term treatment with low doses of enalapril safely prevents increase in arterial blood pressure and progressively reduces hematocrit and proteinuria. Aside from its scientific value, this last study can be taken as an example of how, by rationalizing resources and investing in research programs, renal disease progression and cardiovascular risk may eventually improve, which ultimately should translate into less demand for dialysis, and thus provide alternatives to costly RRT. The transformation of the Bolivian pilot model into a systematic program applicable to most emerging countries may be seen as a task of national nephrology societies, along with methodologic and economic support of international bodies.

Bolivia↗

The future of renoprotection.

Chronic kidney diseases are emerging as a global threat to human health. Renal replacement therapy by dialysis or renal transplantation prolongs survival in patients with end-stage renal disease (ESRD) and, in most cases, provides a good quality of life. In all wealthy countries, new patients on dialysis outnumber those who die, and the group of patients on renal replacement therapy is growing. The provision of adequate treatment to all is absorbing a large proportion of the health care budget and is being looked at with concern by policymakers. Because rationing of dialysis or deciding that some patients cannot be treated is out of the question, clinicians should be looking for ways to prevent the need for dialysis in as many patients as possible. Simple and inexpensive treatments are plausible and possibly effective. There is robust experimental evidence that proteinuria is responsible for interstitial inflammation and subsequent fibrosis, which thereby contributes to progressive renal function loss. Clinical studies and clinicopathologic correlations in patients with progressive nephropathies indicate that observations in experimental models are relevant to understanding human disease. Researchers have identified an important correlation between urinary protein excretion and rate of glomerular filtration rate decline in patients with diabetic and nondiabetic chronic nephropathy. Renoprotection is a strategy that aims to interrupt or reverse this process. The current therapeutic approach for proteinuric chronic nephropathies is based on blockade of the renin-angiotensin system with angiotensin converting-enzyme inhibitors and/or angiotensin-receptor blockers that limit proteinuria, and reduce glomerular filtration rate decline and risk of ESRD more effectively than other antihypertensive treatments. Full remission of the disease, however, is seldom obtained, particularly when pharmacologic intervention is started late. For those who do not respond, treatment procedures to achieve remission and/or regression must include a multimodel strategy to implement renoprotection. The role of lifestyle changes, including smoking cessation, should not be overlooked. A more concerted, strategic, and multisectorial approach, underpinned by solid research evidence, is essential to help reverse the increasing incidence of these chronic diseases, not just for a few beneficiaries, but equitably and on a global scale.

Chronic Disease↗

Prevention of chronic kidney and vascular disease: toward global health equity--the Bellagio 2004 Declaration.

Chronic kidney disease (CKD) not only reflects target organ injury in systemic vascular disease in the general population and in association with diabetes, hypertension, and smoking, but it is recognized as one of the major risk factors in the pathogenesis and outcome of cardiovascular disease. Recent surveys have revealed that the prevalence of CKD, particularly the hidden mild form (mildly elevated levels of serum creatinine or urinary albumin excretion), is surprisingly high in the general population. In recent years, the global epidemic of type 2 diabetes has led to an alarming increase in the number of patients with CKD. Most patients with CKD (over 50 million individuals worldwide) succumb to cardiovascular events, while each year over 1 million develop end-stage renal failure, which requires costly treatment and in many countries of the world, unaffordable renal replacement therapy by chronic dialysis or renal transplantation. Alarmed by the immense challenge to human morbidity and the economic burden of CKD and ensuing systemic cardiovascular disease, the International Society of Nephrology convened a multidisciplinary group of expert physicians and public health leaders from around the world to develop strategies to delay and avert this bleak future by effective prevention of CKD based on awareness, early detection, and effective treatment.

Cardiovascular Diseases↗

Chronic renal diseases as a public health problem: epidemiology, social, and economic implications.

The impact of chronic kidney disease (CKD) on the global burden of diseases is probably underestimated by current methods of evaluation. However, CKD are emerging as a major health problem. First, the costs of renal replacement therapy are excedingly high and are consuming a significant proportion of health care budgets of developed countries, while in developing countries are out of reach. Second, complex interaction are clearly emerging between chronic kidney, cardiovascular disease, and diabetes.

Adult↗

Prevention of progression and remission/regression strategies for chronic renal diseases: can we do better now than five years ago?

The prevalence of chronic renal diseases is increasing worldwide. There is a great need to identify therapies that arrest disease progression to end-stage renal failure. Inhibition of renin-angiotensin system both by ACE inhibitors and angiotensin II receptor antagonists is probably the best therapeutic option available. Several large, multicenter studies have indeed shown a significant reduction in the risk of doubling baseline serum creatinine or progression toward end-stage renal failure in diabetic and nondiabetic patients with chronic nephropathies treated with ACE inhibitors or angiotensin II receptor antagonists. However, the number of patients that reach end-stage renal failure is still considerably high. Significant reduction of the incidence of end-stage renal disease is likely to be achieved in the next future for chronic nephropathies, provided that we can improve the degree of renoprotection. This goal may be attainable with a more complex strategy than with a single or dual pharmacologic intervention on the renin-angiotensin system. Strict control of blood pressure and protein excretion rate, lowering of blood lipids, tight glucose control for diabetics, and lifestyle changes form part of the future multimodal protocol for management of patients with chronic nephropathies.

Angiotensin Receptor Antagonists↗

The role of renin-angiotensin-aldosterone system in the progression of chronic kidney disease.

The renin-angiotensin-aldosterone system (RAAS) is a well known regulator of blood pressure (BP) and determinant of target-organ damage. It controls fluid and electrolyte balance through coordinated effects on the heart, blood vessels, and Kidneys. Angiotensin II (AII) is the main effector of the RAAS and exerts its vasoconstrictor effect predominantly on the postglomerular arterioles, thereby increasing the glomerular hydraulic pressure and the ultrafiltration of plasma proteins, effects that may contribute to the onset and progression of chronic renal damage. AII may also directly contribute to accelerate renal damage by sustaining cell growth, inflammation, and fibrosis. Interventions that inhibit the activity of the RAAS are renoprotective and may slow or even halt the progression of chronic nephropathies. ACE inhibitors and angiotensin II receptor antagonists can be used in combination to maximize RAAS inhibition and more effectively reduce proteinuria and GFR decline in diabetic and nondiabetic renal disease. Recent evidence suggests that add-on therapy with an aldosterone antagonist may further increase renoprotection, but may also enhance the risk hyperkalemia. Maximized RAAS inhibition, combined with intensified blood pressure control (and metabolic control in diabetics) and amelioration of dyslipidemia in a multimodal approach including lifestyle modifications (Remission Clinic), may achieve remission of proteinuria and renal function stabilization in a substantial proportion of patients with proteinuric renal disease. Ongoing studies will tell whether novel drugs inhibiting the RAAS, such as the renin inhibitors or the vasopeptidase inhibitors, may offer additional benefits to those who do not respond, or only partially respond, to this multimodal regimen.

Angiotensin II Type 1 Receptor Blockers↗