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临床试验/NCT05687058
NCT05687058进行中(未招募)1 期

Empagliflozin in ESKD - A Feasibility Study

University of Mississippi Medical Center4 个研究点 分布在 1 个国家目标入组 24 人开始时间: 2023年11月1日最近更新:
适应症
干预措施
相关药物

试验速览

阶段
1 期
状态
进行中(未招募)
入组人数
24
试验地点
4
主要终点
Success rate of obtaining consent from those eligible patients

研究概览

简要总结

The aim of this study is to learn about the safety of empagliflozin in dialysis patients as a preparation for a future large clinical trial. Empagliflozin has been approved by the Food and Drug Administration for the treatment of either type 2 diabetes, heart failure, or chronic kidney disease among patients not on dialysis. The use of empagliflozin has not been studied or approved among patients on dialysis for kidney failure because empagliflozin acts on the kidneys. However, recent experimental studies have indicated that empagliflozin may provide direct heart benefits. Some dialysis patients have substantial residual kidney function, which may be protected by empagliflozin.

Participants will be given empagliflozin for three (3) months on top of the standard of care (usual medical care for participants' condition) and will be followed up until one (1) month after the last dose. The investigators will collect information about participants' general health, obtain blood, urine, and imaging studies, check home blood pressure, monitor home blood sugar levels, and ask health-related questions to assess the safety and potential benefits of empagliflozin over four (4) months, including one month before the three (3)-month empagliflozin treatment.

详细描述

The incidence of end-stage kidney disease (ESKD) in the US ranks among the highest in the world. ESKD is the last phase of chronic kidney disease when the kidneys are functioning below 10-15% of normal capacity, and the patient is on dialysis. According to the US Renal Data System (USRDS), 120,834 individuals started dialysis and nearly 524,000 people were living on dialysis in 2017.1 Although advancement in technology and general medical care has led to a modest decrease in mortality among dialysis patients, their mortality rate remains extremely high at approximately 16.5 per 100 patient-years. The leading cause of death among dialysis patients is cardiovascular disease (CVD), accounting for almost 45% of deaths. Unfortunately, established therapies to prevent incident CVD in the general population, such as renin-angiotensin system inhibitors or statins, have not been shown to be effective in the dialysis population.

Sodium-glucose transporter type 2 (SGLT2) inhibitors are originally approved by FDA for the treatment for type 2 diabetes. SGLT2 is localized to the brush border of the early proximal tubule, and hence, SGLT2inhibitors induce osmotic diuresis and natriuresis but do not activate the systemic renin-angiotensin-aldosterone system.2 Recent clinical trials have consistently shown their potent renal and cardiovascular benefits in both diabetic and non-diabetic patients, which cannot be explained only by their glucose-lowering and diuretic properties. In fact, diuretics have not been shown to reduce cardiovascular mortality and such benefits of SGLT2 inhibitors are clear even among non-diabetic populations.3-5 Their renoprotective effect potentially extends to the dialysis population where residual kidney function (RKF) still plays a major role in solute clearance and volume control and has a strong association with patient outcomes.6 Patients who retain greater RKF can consume a more liberal diet and have better nutritional status, less pill burden, better blood pressure, and less interdialytic fluid gain with less frequent intradialytic hypotension, as well as greater quality of life and better survival.6 The pathophysiology underlying the cardiovascular benefits of SGLT2 inhibitors are yet to be fully elucidated, but a recent in-vitro studies indicate its direct effects on cardiomyocytes. Therefore, the investigators hypothesize that dialysis patients also benefit from SGLT2 inhibitors even if they do not have any RKF.

Efficacy and safety studies with SGLT2 inhibitors did not enroll end-stage kidney disease (ESKD) patients on dialysis. Empagliflozin, canagliflozin, and dapagliflozin can be started if the glomerular filtration rate is more than 20-25 mL/min per 1.73 m2 and can be continued until dialysis initiation or kidney transplant. From a pharmacokinetics standpoint, those SGLT2 inhibitors are extensively metabolized by glucuronidation into inactive metabolites, and are not likely to cause dose-dependent toxicity even in ESKD. Nevertheless, extra caution is necessary for their use in the setting of ESKD because SGLT2 inhibitors are not well dialyzable due to large distribution volumes and high protein binding rates.

Our overall goal is to conduct a non-randomized feasibility clinical trial of empagliflozin in the dialysis population to obtain data that will help plan future larger, sufficiently powered efficacy clinical trials. The investigators plan to enroll a total of 24 dialysis patients (18 patients on hemodialysis and 6 patients on peritoneal dialysis). After one month of the run-in period, participants will take oral empagliflozin for 3 months.

*Hemodialysis is a form of renal replacement therapy that utilizes an external filter (dialyzer) to remove wastes from the bloodstream. Peritoneal dialysis utilizes the peritoneum as a filter to remove wastes.

研究设计

研究类型
Interventional
分配方式
Non Randomized
干预模型
Parallel
主要目的
Treatment
盲法
None

入排标准

年龄范围
18 Years 至 —(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • age ≥18 years;
  • diagnosis of end-stage kidney disease requiring dialysis, and
  • ability to provide informed consent.

排除标准

  • systolic blood pressure <100 mm Hg (pre-dialysis for HD patients)
  • two or more episodes of urinary tract infection within the last 12 months
  • history of urinary retention or urinary tract obstruction
  • liver cirrhosis
  • advanced heart failure requiring heart assist device or inotropic support
  • heart or liver transplant recipient
  • major surgery performed within the last 3 months ("major" per the investigator's assessment)
  • major surgery scheduled within 3 months after screening ("major" per the investigator's assessment)
  • active cancer
  • pregnant or lactating women
  • known allergy or hypersensitivity to any SGLT2 inhibitors
  • history of ketoacidosis during the last 12 months
  • any other medical condition considered unappropriated by their nephrologists or a study physician (i.e., cachexia, short life expectancy, or uncontrolled personality/phycological disorder).

研究组 & 干预措施

Empagliflozin 10 mg daily dosing

Experimental

Patients undergoing thrice-weekly hemodialysis (HD) on the Tuesday-Thursday-Saturday (TTS) schedule, patients on twice-weekly HD, or patients on peritoneal dialysis will receive empagliflozin 10 mg daily (Group II).

干预措施: Empagliflozin 10 mg daily dosing (Drug)

Empagliflozin 25 mg thrice-weekly post-hemodialysis dosing

Experimental

All participants undergoing thrice-weekly hemodialysis (HD) on the Monday-Wednesday-Friday (MWF) schedule will be assigned to the empagliflozin 25 mg thrice-weekly post-hemodialysis dosing arm (Group I).

干预措施: Empagliflozin 25 mg thrice-weekly post-hemodialysis dosing (Drug)

结局指标

主要结局

Success rate of obtaining consent from those eligible patients

时间窗: During the enrollment process

Proportion of missing doses

时间窗: 3 months

The investigators will do pill count using medication bottles and calculate the proportion of missing doses from each patient.

Proportion of empagliflozin discontinuation

时间窗: 3 months

Proportion of participants who discontinue empagliflozin for any reason

Blood empagliflozin concentrations after the first dose among patients on peritoneal dialysis

时间窗: At 24 hours of the first dose

The 10th blood draw for the pharmacokinetic study among patients on peritoneal dialysis

Random blood empagliflozin level

时间窗: At Month 3

Time since the last dose will be recorded.

Proportion of eligible patients out of screened patients

时间窗: During the screening process

Dropout rate

时间窗: 3 months

Proportion of participants who dropped out from the study for any reason

Length of time on continuous glucose monitoring

时间窗: 3 months

Continuous glucose monitoring will be done for up to 14 days.

Completion rate of timed urine collection

时间窗: 3 months

Peritoneal dialysis clearance of empagliflozin

时间窗: At Month 3

Peritoneal dialysis fluid will be collected for 24 hours.

次要结局

  • Cardiovascular mortality(3 months)
  • All-cause mortality(3 months)
  • Number of Participants with Hepatic injury(3 months)
  • Average glucose(At Month 2)
  • Number of Participants with Skin and soft tissue infection(3 months)
  • % Time of active CGM(At Month 2)
  • Time in high range (%)(At Month 2)
  • Number of Participants with Symptomatic urinary tract infection(3 months)
  • Number of Participants with Nausea(3 months)
  • Number of Participants with Vomiting(3 months)
  • Time in very high range (%)(At Month 2)
  • Changes from baseline to Month 3 in left ventricular end-diastolic volume(3 months)
  • Number of Participants with Ketoacidosis(3 months)
  • Number of Participants with Lower limb amputation(3 months)
  • Number of Participants with genital infection(3 months)
  • Glucose management indicator (estimated A1C level based on the average glucose level from CGM readings for 14 or more days)(At Month 2)
  • Glucose variability(At Month 2)
  • Time in low range (%)(At Month 2)
  • Number of Participants with Prolonged hypoglycemia(At Month 2)
  • Changes from baseline to Month 3 in left ventricular end-systolic volume(3 months)
  • Changes from baseline to Month 3 in left ventricular diastolic function(3 months)
  • Number of Participants with Tinea cruris(3 months)
  • Days on continuous glucose monitoring (CGM)(At Month 2)
  • Time in target range (%)(At Month 2)
  • Time in very low range (%)(At Month 2)
  • Number of Participants with Hypoglycemia levels 2(At Month 2)
  • Number of Participants with Hypoglycemia levels 1(At Month 2)
  • Changes from baseline to Month 3 in Kidney Disease Quality of Life (KDQOL)-36 questionnaire(3 months)
  • Changes from baseline to Month 3 in left ventricular mass index(3 months)
  • Changes from baseline to Month 3 in left ventricular ejection fraction(3 months)
  • Changes from baseline to Month 3 in longitudinal global strain(3 months)
  • Changes from baseline to Month 3 in circumferential global strain(3 months)
  • Changes from baseline to Month 3 in erythropoiesis stimulating drug dose(3 months)
  • Changes from baseline to Month 3 in radial global strain(3 months)
  • Changes from baseline to Month 3 in home systolic blood pressure(3 months)
  • Changes from baseline to Month 3 in home diastolic blood pressure(3 months)
  • Changes from baseline to Month 3 in residual kidney function(3 months)
  • Changes from baseline to Month 3 in hemoglobin(3 months)
  • Hospitalization/Emergency room visit rate for heart failure(3 months)
  • Changes Estimated glomerular filtration rate (GFR) from baseline to Month 3(3 months)

研究者

申办方类型
Other
责任方
Sponsor

研究点 (4)

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