fenofibrate
Drug145 mg oral fenofibrate daily for 76 weeks. Dosage is decreased to 48 mg daily if iGFR is or is estimated to be below 30 ml/min/1.73 m2.
NCT Number: NCT04929379
Diabetic kidney disease remains the leading cause of end-stage kidney disease (ESKD), rising in frequency in parallel with the epidemic of diabetes worldwide. The estimated lifetime risk of kidney disease in persons with type 1 diabetes (T1D) has been reported to be as high as 50-70%, although risk may be lower in excellent care environments. Two previous studies have suggested that a generic drug used to lower fats in blood (fenofibrate) may protect the kidney from damage due to diabetes. These data, however, were obtained among people with type 2 diabetes with clinical characteristics optimized for cardiovascular studies. Thus, a clinical trial specifically designed to evaluate the effects on the kidney is required to firmly show that this drug can prevent kidney damage in T1D. The goals of the present pilot study are to demonstrate the feasibility of such trial, gather essential information for designing and planning this study, and generate preliminary data. To this end, 40 participants with T1D and early-to-moderate diabetic kidney disease (DKD), at high risk of ESKD, will be enrolled at two clinical sites and assigned in a 1:1 ratio to treatment with fenofibrate or placebo for 18 months. Kidney function will be measured at the beginning and at the end of the study to evaluate the effect of fenofibrate.
This study is active but is not currently recruiting participants.
18 year–70 year
All sexes
Interventional
Phase 2
Joslin Diabetes Center, Boston, Massachusetts, United States
Despite improvements in the past 20 years in glycemic and blood pressure control, and the introduction of "reno-protective" drugs such as renin-angiotensin system blockers (RASB), the overall incidence of end-stage kidney disease (ESKD) in type 1 diabetes (T1D) remains high. To seek new treatments to prevent diabetic kidney disease (DKD) and/or slow its progression to ESKD in T1D, the investigators have established a unique consortium of high-quality academic centers, which has been named PERL (Preventing Early Renal Function Loss in Diabetes) to emphasize the focus on intervening relatively early in the course of DKD in T1D, when renal damage can more likely be slowed or stopped. Findings from the FIELD and ACCORD trials suggest a reno-protective effect of the PPAR-alpha agonist fenofibrate, raising the exciting possibility of using this inexpensive generic drug to prevent GFR decline in persons with T1D. These data, however, were obtained through post-hoc analyses of type 2 diabetes (T2D) populations with clinical characteristics optimized for CVD studies. Thus, a clinical trial specifically designed to evaluate effects on GFR decline is required to firmly establish a DKD indication for fenofibrate in T1D. As a first step, the investigators are conducting a pilot study including 40 participants with T1D and early-to-moderate DKD, at high risk of ESKD, who will be enrolled at two of the PERL sites and randomized in a 1:1 ratio to treatment with fenofibrate or placebo for 18 months, followed by a two-month washout. The goal of this pilot study are to:
The results of this pilot will allow the investigators to seek support for a pivotal trial to establish a kidney indication for fenofibrate in T1D.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
145 mg oral fenofibrate daily for 76 weeks. Dosage is decreased to 48 mg daily if iGFR is or is estimated to be below 30 ml/min/1.73 m2.
Inactive tablets identical to fenofibrate
Time frame: 8 weeks after randomization
GFR measured by iohexol plasma disappearance (ml/min/1.73 m2), adjusted by its baseline value
Time frame: 84 weeks after randomization
GFR measured by iohexol plasma disappearance (ml/min/1.73 m2), adjusted by its baseline value
Time frame: 84 weeks after randomization
Levels of the following 21 serum biomarkers, adjusted by their baseline values: CD160, CD27, DLL1, EDA2R, EFNA4, EPHA2, GFRA1, IL1RT1, KIM1, LAYN, LTBR, PI3, PVRL4, RELT, SYND1, TNFR1, TNFR2, TNFRSF10A, TNFRSF4, TNFRSF6B, WFDC2
Time frame: 76 weeks after randomization
GFR measured by iohexol plasma disappearance (ml/min/1.73 m2), adjusted by its baseline value
Time frame: 76 weeks after randomization
GFR measured by iohexol plasma disappearance (ml/min/1.73 m2), adjusted by its value at week 8
Time frame: 8 weeks after randomization
GFR estimated from serum creatinine (ml/min/1.73 m2) using the CKD-EPI equation, adjusted by its baseline value
Time frame: 76 weeks after randomization
GFR estimated from serum creatinine (ml/min/1.73 m2) using the CKD-EPI equation, adjusted by its baseline value
Time frame: 76 weeks after randomization
GFR estimated from serum creatinine (ml/min/1.73 m2) using the CKD-EPI equation, adjusted by its value at week 8
Time frame: 84 weeks after randomization
GFR estimated from serum creatinine (ml/min/1.73 m2) using the CKD-EPI equation, adjusted by its baseline value
Time frame: 8 weeks after randomization
GFR estimated from serum cystatin C (ml/min/1.73 m2) using the CKD-EPI equation, adjusted by its baseline value
Time frame: 76 weeks after randomization
GFR estimated from serum cystatin C (ml/min/1.73 m2) using the CKD-EPI equation, adjusted by its baseline value
Time frame: 76 weeks after randomization
GFR estimated from serum cystatin C (ml/min/1.73 m2) using the CKD-EPI equation, adjusted by its value at week 8
Time frame: 84 weeks after randomization
GFR estimated from serum cystatin C (ml/min/1.73 m2) using the CKD-EPI equation, adjusted by its baseline value
Time frame: 8 weeks after randomization
Urinary Albumin excretion rate (uAER, mg/24/hr) based on overnight urine collection, adjusted by its baseline value
Time frame: 76 weeks after randomization
Urinary albumin excretion rate (uAER, mg/24 hr) based on overnight urine collection, adjusted by its baseline value
Time frame: 76 weeks after randomization
Urinary Albumin excretion rate (uAER, mg/24 hr) based on overnight urine collection, adjusted by its value at week 8
Time frame: 84 weeks after randomization
Urinary albumin excretion rate (uAER, mg/24 hr) based on overnight urine collection, adjusted by its baseline value
Time frame: 8 weeks after randomization
Creatinine clearance (ml/min) based on overnight urine collection, adjusted by its baseline value
Time frame: 8 weeks after randomization
Effective renal plasma flow (ml/min) measured by means of para-aminohippurate infusion, adjusted by its baseline value
Time frame: 8 weeks after randomization
Afferent renal arteriolar resistance (dyne/s/cm5) measured by means of para-aminohippurate infusion, adjusted by its baseline value
Time frame: 8 weeks after randomization
Efferent renal arteriolar resistance (dyne/s/cm5) measured by means of para-aminohippurate infusion, adjusted by its baseline value
Time frame: 8 weeks after randomization
Glomerular hydrostatic pressure (mmHg) measured by means of para-aminohippurate infusion, adjusted by its baseline value
Time frame: 8 weeks after randomization
Glomerular filtration pressure (mmHg) measured by means of para-aminohippurate infusion, adjusted by its baseline value
Time frame: 8 weeks after randomization
Glomerular oncotic pressure (mmHg) measured by means of para-aminohippurate infusion, adjusted by its baseline value
Time frame: 8 to 76 weeks from randomization
Trajectory of GFR estimated from serum creatinine (ml/min/year/1.73 m2) using the CKD-EPI equation
Time frame: 8 to 76 weeks from randomization
Trajectory of GFR estimated from serum cystatin C (ml/min/year/1.73 m2) using the CKD-EPI equation
Time frame: 76 weeks after randomization
Levels of the following 21 serum biomarkers, adjusted by their baseline values: CD160, CD27, DLL1, EDA2R, EFNA4, EPHA2, GFRA1, IL1RT1, KIM1, LAYN, LTBR, PI3, PVRL4, RELT, SYND1, TNFR1, TNFR2, TNFRSF10A, TNFRSF4, TNFRSF6B, WFDC2
Time frame: 76 weeks after randomization
Levels of the following 21 serum biomarkers, adjusted by their values at week 8: CD160, CD27, DLL1, EDA2R, EFNA4, EPHA2, GFRA1, IL1RT1, KIM1, LAYN, LTBR, PI3, PVRL4, RELT, SYND1, TNFR1, TNFR2, TNFRSF10A, TNFRSF4, TNFRSF6B, WFDC2
Alessandro Doria
Other
Acronym: PERL-FENO
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View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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