View clinical trials related to Renal Insufficiency.
Filter by:The research protocol is a Randomized Clinical Trial that has the effectiveness of a given respiratory muscle training protocol over the indicative variables: Pulmonary function; Markers of oxidative stress and inflammation, endothelial markers and Quality of life in patients with chronic kidney disease undergoing hemodialysis. According to the Investigators, this topic was proposed since it is known that several pulmonary complications occur as a consequence of chronic kidney disease due to uremic myopathy. Therefore, the hypothesis is that the application of a respiratory muscle training protocol will contribute positively pulmonary functionality and a decrease in oxidative stress and inflammation in chronic kidney patients, consequently, will bring improvement in the quality of life for these patients. The Patients will be divided into two groups: control group - No intervention of the Muscular Training (CG) And Intervention Group (GI). The intervention protocol will be composed of respiratory muscle training And lasts for two (2) months, with three (3) visits per week. It will be carried out through Threshold PeP appliance. The twelve (12) first training sessions will have a total duration of 30 minutes 15 minutes with inspiratory load of 20 cmH2O and 15 minutes with expiratory load of 20 CmH 2 O; and the others (12) twelve sessions will last 40 minutes each, with 20 minutes with an inspiratory load of 20 CmH2O and 20 minutes with expiratory load of 20 cmH2O. The variables evaluated will be: muscular strength Respiratory (maximum inspiratory pressure and maximum expiratory pressure - Pimáx and Pemáx); Lung function (Slow Vital Capacity - CVL, forced expiratory volume in the first minute - VEF1, Vital Capacity Forced - CVF and Maximum Voluntary Ventilation - VVM); Serum levels of oxidative stress markers, endothelial markers and endothelin.
About 35% of patients hospitalized with Acute Coronary Syndromes (ACS) have some degree of renal dysfunction. Chronic kidney disease (CKD) is not only associated to worse prognosis in ACS patients, but leads also to an increased risk of bleeding, which may importantly influence the risk-benefit ratio of antiplatelet therapy in this population. The responsible mechanisms for increased rate of ischemic events in this population are not completely elucidated. Antiplatelet therapy is of paramount importance in the treatment of ACS, but its benefit in CKD patients is not well established. This population is often excluded or underrepresented in large clinical trials, and the indication of antiplatelet therapy is often extrapolated from studies in patients with preserved renal function. In recent meta-analysis, Palmer et al. sought to evaluate the benefits and risks of antiplatelet agents in patients with CKD and concluded that in patients with ACS or scheduled for angioplasty already taking aspirin, the addition of clopidogrel or glycoprotein IIb / IIIa inhibitors have little or no impact in reducing the incidence of myocardial infarction, death or need for revascularization. In the PLATO trial, ticagrelor (a new reversible inhibitor of P2Y12 receptor with faster onset of action and greater platelet inhibition) was compared to clopidogrel in patients with high risk ACS and was associated to a 16% risk reduction on the occurrence of death from vascular causes, myocardial infarction, or stroke. In a pre-specified sub-analysis, data from patients with CKD were compared to those obtained from the population with normal renal function and suggests that the benefit of ticagrelor may be even greater in patients with CKD. Two hypotheses were considered to explain these results: 1. Greater and more consistent platelet inhibition achieved with ticagrelor would be more effective in reducing ischemic events in this population at increased thrombotic risk; 2. Pleiotropic effects of ticagrelor besides inhibition of the P2Y12 receptor. Ticagrelor might be associated with an elevation in serum levels of adenosine. This could improve myocardial perfusion through coronary vasodilation, and this effect would be more pronounced in patients with renal dysfunction. This project aims to validate (or not) these hypotheses, analyzing platelet aggregation and circulating adenosine levels in patients taking dual antiplatelet therapy with aspirin and clopidogrel or ticagrelor.
The purpose of this study is to assess the ease of use, preference, and safety after 8 weeks subcutaneous administration of EutropinPen Inj. in patients pretreated with recombinant human growth hormone by reusable device.
The purpose of this study is to investigate the effects of oral administration of probiotics on the metabolism of uremic toxins, in the patients with End Stage Renal Disease (ESRD). One hundred and fifty hemodialysis patients are recruited, and a Double Blind Randomized Parallel Controlled Trial was performed.The microbiota-derived uremic toxin, such as indoxyl sulfate and p-cresol sulfate, are measured as Primary Outcome. The Fecal microbiome, fecal metabolites, blood metabolites, defecation, Gastrointestinal Symptoms The Kidney Disease Quality of Life and The Occurrence of Cardiovascular Event are also assessed.
The purpose of this study is to investigate the differences of gut Microbiome/Metabolite between ESRD patients and healthy subjects. Two hundred and twenty three hemodialysis patients and 70 healthy subjects are recruited, and a cross-sectional study is performed.
This is a multi-center, open-label, non-randomized, parallel-group, adaptive, single dose study. This study will enroll up to 32 participants using an adaptive design that can include up to 3 groups of 8 participants with different degree of renal impairment and one group of 8 control participants with normal renal function. Screening data will be reviewed to determine participant eligibility. Participants who meet all inclusion criteria and none of the exclusion criteria will be entered in the study. First, approximately 16 participants will be enrolled with severe renal impairment and matched participants with normal renal function. There will be 8 participants in each of the following groups based on renal function at screening: - Group 1: Healthy participants with normal renal function (estimated glomerular filtration rate [eGFR] ≥ 90 milliliters per minute per 1.73 meters squared [mL/min/1.73m²]) - Group 2: Severe renal impairment participants (eGFR < 30 mL/min/1.73m²) Based on safety and pharmacokinetic (PK) results from participants with severe renal impairment (Group 2), Group 3 (Moderate Renal Impairment) and Group 4 (Mild Renal Impairment) will be enrolled if substantial change in the exposure of lasmiditan is observed in participants with severe renal impairment.
Despite many efforts to increase the size of the donor pool, there is a large and growing disparity between the number of donor kidneys available for transplantation and the number of patients on the transplant waiting list. Increasing the quality of currently available donor kidneys would potentially improve the longevity of deceased donor kidney transplants by years, thus increasing the rate of transplantation patients on the kidney transplant waiting list. In addition, recipients of higher quality kidneys have shorter hospital stays and lower total hospital charges. By innovating the organ donation process, such that deceased donor kidneys are removed prior to the cessation of cardiac activity, rather than after, it may be possible to improve the quality of the kidney before transplantation, resulting in improved function after transplantation and increased longevity of these transplanted kidneys. Further, this improved kidney quality is highly likely to translate to reduced need for renal dialysis and other high-cost interventions, yielding lower total hospital charges. In this study we will test the hypothesis that, through a cost-free technical innovation, the quality of deceased donor kidneys could be improved significantly, saving thousands more lives per year and reducing total health care expenditures on renal transplantation.
To evaluate in patients with chronic kidney disease the impact of two dosages of per os vitamin D3 supplementation (cholecalciferol) on large arterial stiffness (evaluated non invasively by pulse wave velocity and high-resolution echotracking system). We will also study arterial calcification (lateral abdominal radiography and echocardiogram), arterial remodeling (high-resolution echotracking system), endothelial function (evaluated by a non-invasive finger biosensor device), and bone remodeling (evaluated by serum biomarkers and bone mineral density).
E7080-A001-010 is a multicenter, parallel-group study in participants with mild, moderate, or severe hepatic or renal impairment and age-, gender-, and smoking status-matched healthy participants. The primary objective of the study is to obtain plasma from participants for use in in vitro protein binding studies.
Patients with kidney, or renal, failure require life-saving treatment with regular dialysis. Dialysis is a form of treatment that simulates some kidney functions; to remove harmful waste products and extra water from the blood. Almost one-third of people with kidney failure also have diabetes, as diabetes is one of the leading causes of kidney disease in the United Kingdom, usually due to poor blood sugar control over a long period of time. Malnutrition is common in patients needing dialysis due to kidney failure causing fatigue, taste changes and a build up of waste products, which can reduce appetite. Treatment of malnutrition involves increasing both the energy and protein intake from food and drinks, and milk-drink style specialist nutrition drinks are often given to dialysis patients due to their specific dietary needs. These nutrition drinks can increase blood sugar levels and optimal control for diabetes may be difficult. This research study aims to measure the blood sugar response to a "slow-release" sugar nutrition drink specifically designed for dialysis patients, which may result in a lower blood sugar level, compared to standard nutrition drinks, consumed during a dialysis session. 28 patients with diabetes and having regular dialysis treatment will enrol in the study. Patients will be asked to drink 1 of 3 different nutrition drinks, once a week for 3 weeks during their regular dialysis treatment. Blood sugar levels will be measured from the blood samples taken from the patient's circulation directly before it enters the dialysis machine over 3 hours and the maximum blood sugar reading and total blood sugar response will be measured. Differences between the 3 drinks will be tested statistically. The results will help to advise patients with diabetes and kidney failure on the most suitable type of nutrition drink to consume during dialysis.