We propose to test the effectiveness of the combination of CF pancreatic enzyme replacement therapy (PERT) on absorption of Ravicti® and subsequent restoration of nasal epithelial cystic fibrosis transmembrane conductance regulator (CFTR)-mediated chloride transport during the nasal potential difference (NPD) test. Funding source FDA Office of Orphan Products Development.
We were the first to test 4-phenylbutyrate (Buphenyl) as a systemic corrector of these defects in F508del under an investigator-initiated Investigational New Drug (IND)application held by P. Zeitlin. In a series of Phase 1 and 2 trials we established the maximum tolerated dose as 20 gm daily divided t.i.d. and the maximum induction of cyclic AMP (cAMP)-mediated nasal epithelial chloride transport with 30 gm daily as a median of -10 millivolt (mV) on days 4 and 7 of treatment.1;2 Under those conditions there was no significant decrease in sweat chloride values or in amiloride-inhibited nasal potential difference (NPD). We interpreted these results as a proof of concept of corrector therapy, but corrector therapy alone was likely an insufficient therapy for this mutation in CF, and therefore closed the IND for 4-phenylbutyrate. In the ensuing years, Vertex Pharmaceuticals, Inc. has had success with the development of ivacaftor3;3;4 (VX-770) as a potentiator of G551D CFTR and has studied the drug alone and in combination with their corrector lumacaftor5 (VX-809) and VX-661. We at Johns Hopkins University (JHU), University of Alabama at Birmingham (UAB) and Childrens' Hospital of Philadelphia/University of Pennsylvania (CHOP/Penn) have participated in many of the clinical trials and are pleased and encouraged by the success of VX-770. It is not yet certain that future combinations of corrector(s) and potentiator(s) will be safe and effective, and it is prudent to explore alternative correctors and potentiators. Furthermore, recent structural investigations in a number of laboratories support the idea that more than one corrector may be necessary to fully restore F508del to the trafficking pathway 6. Precedent for combination of 4PBA with other CFTR modulators has been established in vitro 7;8 4-Phenylbutyrate tablets are formulated for oral delivery, and we showed that the pharmacokinetics were similar in CF to that in patients with urea cycle disorders. However the large number of tablets that had to be ingested at each meal were somewhat daunting at the 30 gm daily dose. A new pro-drug of 4-phenylbutyrate, glycerol phenylbutyrate or Ravicti®(owned by Hyperion Pharmaceuticals, Inc.) was approved in February 2013 by the US FDA. This new formulation is a significant advance for patients with urea cycle disorders because it is an oral, odorless, tasteless liquid, that contains 3 molecules of 4-phenylbutyrate for every molecule of the triglyceride. Simple arithmetic would suggest that one mole equivalent of the pro-drug provides three moles of active drug. However, pancreatic lipase enzymes are required to break the covalent bonds and release the active drug in the intestines. Because most CF patients homozygous for F508del are pancreatic-insufficient and already on enzyme therapy, we propose to test the effectiveness of the combination of CF pancreatic enzyme replacement therapy (PERT) on absorption of Ravicti® and subsequent restoration of nasal epithelial CFTR-mediated chloride transport during the nasal potential difference (NPD) test.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
QUADRUPLE
Enrollment
16
8 am, 4pm and midnight
8 am, 4pm and midnight
National Jewish Health
Denver, Colorado, United States
Johns Hopkins University School of Medicine
Baltimore, Maryland, United States
Children's Hospital of Philadelphia
Philadelphia, Pennsylvania, United States
Change in Chloride and Sodium Transport in Nasal Epithelium
Change in average measurement of nasal potential difference in millivolts (mV) between baseline (Visit 0) and Day 4 (Visit 2) or Day 7 (Visit 3). Note: the outcome is assessed as change in mV at each visit, and then comparisons between visits are made.
Time frame: 7 days
Change in Average Sweat Chloride
Change in average sweat chloride measurement between baseline Day 1 (Visit 1) and Day 7 (Visit 3).
Time frame: 7 days of treatment as measured on Day 1 (Visit 1) and Day 7 (Visit 3)
Change in Baseline Nasal Potential Difference (NPD)
Change in baseline nasal potential difference (NPD) measured before initiation of study drug between Day 1 (Visit 1) and Day 4 (Visit 2) and between Day 1 (Visit 1) and Day 7 (Visit 3).
Time frame: 4 days and 7 days of study drug treatment
Change in Nasal Potential Difference With Perfusion of a Solution Containing Amiloride
Change in the nasal potential difference response (in mV) with perfusion of a solution containing amiloride from baseline to Days 4 and 7.
Time frame: 4 and 7 days
Change in Nasal Potential Difference During Perfusion With a Low Chloride Solution Containing Amiloride
Change in nasal potential difference (in mV) with perfusion of a low chloride solution containing amiloride from baseline to Days 4 and 7.
Time frame: 4 and 7 days
Change in Nasal Potential Difference With a Low Chloride Solution Containing Amiloride Plus the Change With a Low Chloride Solution Containing Amiloride and Isoproterenol
Change in Nasal Potential Difference (in mV} with perfusion of a low chloride solution (containing amiloride) followed by the low chloride solution containing amiloride and Isoproterenol from baseline to Days 4 and 7.
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Time frame: 4 and 7 days
Change in FEV1
Change in FEV1 from baseline to Days 4 and 7.
Time frame: 7 days
Safety and Tolerability - Electrolytes (Meq/L)
Electrolytes are presented in meq/L. Mean and SD reported at Screening and V4.
Time frame: 14 days
Safety and Tolerability-Liver Function-Total Bilirubin
Total Bilirubin on a comprehensive metabolic panel obtained from a serum sample and reported in mg/dl.
Time frame: 14 days
Safety and Tolerability - Liver Function-Liver Enzymes
Hepatic enzymes obtained from a serum sample -AST and ALT in units/L.
Time frame: 14 days
Safety and Tolerability - Liver Function-Alkaline Phosphatase (IU/L)
Alkaline Phosphatase obtained on a Comprehensive Metabolic Panel (IU/L).
Time frame: 14 days
Safety and Tolerability - Blood Protein Biomarkers (g/dl)
Safety and Tolerability - serum protein biomarkers in g/dl.
Time frame: 14 days
Safety and Tolerability - Blood Cell Counts (K/ul)
White blood cells, red blood cells, and platelet cell counts from a complete blood cell count panel (K/ul).
Time frame: 14 days
Safety and Tolerability - Blood Cell Counts (%)
White blood cells are fractionated into different types of white blood cells and presented as the fraction of total white blood cells counted.
Time frame: 14 days
Safety and Tolerability - Erythrocyte Sedimentation Rate (mm/hr)
Erythrocyte sedimentation rate is an indicator of inflammation that measures the rate at which red blood cells settle to the bottom of a test tube in mm/hr.
Time frame: 14 days
Safety and Tolerability - Serum Glucose (mg/dl)
Serum glucose was obtained in a comprehensive metabolic panel in mg/dl.
Time frame: 14 days
Safety and Tolerability - Blood Waste Metabolites (mg/dl)
Blood urea nitrogen (BUN), serum creatinine, and serum uric acid were obtained in a comprehensive metabolic panel in mg/dl.
Time frame: 14 days
Safety and Tolerability - Blood Biomarker of Inflammation (mg/dl)
C reactive protein (cRP) is a systemic marker of inflammation and was measured in mg/dl.
Time frame: 14 days
Safety and Tolerability - Hematocrit (%)
Hematocrit is resulted as the fraction of red blood cells in total volume of blood from which they are measured.
Time frame: 14 days