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Sulforaphane as an Antagonist to Human PXR-mediated Drug-drug Interactions

Phase I Clinical Trial to Evaluate the Efficacy of Sulforaphane as an Antagonist to Human PXR-mediated Drug-drug Interactions

Status
Completed
Phases
Phase 1
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT00621309
Enrollment
29
Registered
2008-02-22
Start date
2008-03-31
Completion date
2010-09-30
Last updated
2019-09-06

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Adverse Drug Interactions

Keywords

drug interactions, cytochrome P4503A4, Pregnane X-receptor, induction, drug metabolism

Brief summary

Adverse drug-drug interactions (DDIs) are responsible for approximately 3% of all hospitalizations in the US, perhaps costing more than $1.3 billion per year. One of the most common causes of DDIs is the when one drug alters the metabolism of another. A key enzyme in the liver and intestine, called cytochrome P450 3A4 (CYP3A4) is generally considered to be the most important drug metabolizing enzyme. The gene for CYP3A4 can be 'turned on' by the presence of certain other drugs, resulting in much higher levels of CYP3A4 in the liver and intestine. Thus, when a drug that induces CYP3A4 is given with or before another drug that is metabolized by 3A4, a 'drug-drug' interaction occurs because the first drug (the inducer) greatly changes the rate at which the second drug (CYP3A4 substrate) is removed from the body. Many drugs increase CYP3A4 activity by binding to a receptor called the Pregnane-X-Receptor (PXR), which is a major switch that controls the expression of the CYP3A4 gene. Using human liver cells we have demonstrated that sulforaphane (SFN), found in broccoli, can block drugs from activating the PXR receptor, thereby inhibiting the switch that causes CYP3A4 induction. The purpose of this project is to determine if SFN can be used to block adverse DDIs that occur when drugs bind to and activate the PXR receptor and subsequently induce CYP3A4 activity. We will recruit 24 human volunteers to participate in the study. This project will determine whether SFN can prevent the drug Rifampin from binding to PXR and increasing CYP3A4 activity in humans following oral administration of SFN (broccoli sprout extract). The rate of removal of a small dose of the drug midazolam will be used to determine the enzymatic activity of CYP3A4 before and following treatment with Rifampin, in the presence or absence of SFN, since midazolam is only eliminated from the bloodstream by CYP3A4. . We predict that SFN will prevent the increase in midazolam clearance (metabolism) that normally follows treatment with the antibiotic, rifampicin. This research is important because it could potentially lead to a simple, cost-effective way of preventing one of the most common causes of adverse drug-drug interactions that occurs today. For example, rifampicin, which is a cheap and effective antibiotic used to treat TB, cannot be used in HIV/AIDS patients because it increases the metabolism of many of the antiretroviral drugs used to treat HIV/AIDS. TB is a major opportunistic infection in AIDS patients, so this is a serious clinical problem, especially in developing countries where more expensive alternative drug therapies are not available. We hypothesize that co-formulation of rifampicin with SFN could block this drug-drug interaction without altering its efficacy, thereby allowing its use in HIV/AIDS patients infected with TB. This is but one example of numerous drug-drug interactions that occur via this mechanism.

Interventions

DRUGRifampicin

Rifampicin, an antibiotic used to treat TB, is administered at a dose of 300 mg day x 7 days to induce CYP3A5.

DIETARY_SUPPLEMENTsulforaphane plus rifampicin

Sulforaphane (SFN) is an isothiocyanate derived from the plant phytochemical, glucoraphinin. It appears to inhibit ligand binding to the ligand activated nuclear transcription factor, Pregnane X-Receptor (PXR). This arm tests the hypothesis that SFN can block ligand binding to the PXR, thereby inhibiting transcriptional activation of PXR-regulated genes. Sulforaphane is administered daily for 7 days as a broccoli sprout extract, at a dose rate of 75 mg (\ 420 umoles)per day for 7 days. Rifampicin is also administered once per day at a dose rate of 300 mg/day for 7 days.

DIETARY_SUPPLEMENTsulforaphane alone

Sulforaphane (SFN) is an isothiocyanate derived from the plant phytochemical, glucoraraphinin. It appears to inhibit ligand binding to the ligand activated nuclear transcription factor, Pregnane X-Receptor (PXR). This arm tests the hypothesis that SFN can block ligand binding to the PXR, thereby inhibiting transcriptional activation of PXR-regulated genes

Sponsors

Fred Hutchinson Cancer Center
CollaboratorOTHER
National Institute of General Medical Sciences (NIGMS)
CollaboratorNIH
University of Washington
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
CROSSOVER
Primary purpose
OTHER
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to 40 Years
Healthy volunteers
Yes

Inclusion criteria

* Adults from all ethnicities will be encouraged to participate, with our recruitment efforts we expect similar profile as that of the greater Seattle area.

Design outcomes

Primary

MeasureTime frame
Midazolam Clearance (Pharmacokinetic Measure of Cytochrome P450 3A4 Activity)7 days

Countries

United States

Participant flow

Pre-assignment details

29 participants signed consent form. 23 participants had full measures for data analysis.

Participants by arm

ArmCount
Cross-Over Trial
Crossover trial, three-armed, randomized. The PXR ligand rifampicin (300 mg/d)was given alone for 7 days in Arm 1, or in daily combination with 450 μmol SFN (Broccoli Sprout extract) in Arm 2; SFN was given alone in arm 3. 29 participants consented, analysis done on 23 who finished all arms.
23
Total23

Withdrawals & dropouts

PeriodReasonFG000FG001FG002FG003FG004FG005
Overall StudyWithdrawal by Subject201111

Baseline characteristics

CharacteristicCross-Over Trial
Age, Continuous23.7 years
STANDARD_DEVIATION 3.6
Ethnicity (NIH/OMB)
Hispanic or Latino
0 Participants
Ethnicity (NIH/OMB)
Not Hispanic or Latino
23 Participants
Ethnicity (NIH/OMB)
Unknown or Not Reported
0 Participants
Race (NIH/OMB)
American Indian or Alaska Native
0 Participants
Race (NIH/OMB)
Asian
5 Participants
Race (NIH/OMB)
Black or African American
1 Participants
Race (NIH/OMB)
More than one race
0 Participants
Race (NIH/OMB)
Native Hawaiian or Other Pacific Islander
0 Participants
Race (NIH/OMB)
Unknown or Not Reported
0 Participants
Race (NIH/OMB)
White
17 Participants
Sex: Female, Male
Female
11 Participants
Sex: Female, Male
Male
12 Participants

Adverse events

Event typeEG000
affected / at risk
deaths
Total, all-cause mortality
— / —
other
Total, other adverse events
0 / 29
serious
Total, serious adverse events
0 / 29

Outcome results

Primary

Midazolam Clearance (Pharmacokinetic Measure of Cytochrome P450 3A4 Activity)

Time frame: 7 days

ArmMeasureGroupValue (MEAN)Dispersion
Rifampicin AloneMidazolam Clearance (Pharmacokinetic Measure of Cytochrome P450 3A4 Activity)MDZ AUC Day 1604 ng*min/mlStandard Deviation 212
Rifampicin AloneMidazolam Clearance (Pharmacokinetic Measure of Cytochrome P450 3A4 Activity)MDZ AUC Day 8156 ng*min/mlStandard Deviation 72
Broccoli Sprout Extract Plus RifampinMidazolam Clearance (Pharmacokinetic Measure of Cytochrome P450 3A4 Activity)MDZ AUC Day 1552 ng*min/mlStandard Deviation 171
Broccoli Sprout Extract Plus RifampinMidazolam Clearance (Pharmacokinetic Measure of Cytochrome P450 3A4 Activity)MDZ AUC Day 8135 ng*min/mlStandard Deviation 70
Broccoli Sprout Extract AloneMidazolam Clearance (Pharmacokinetic Measure of Cytochrome P450 3A4 Activity)MDZ AUC Day 1541 ng*min/mlStandard Deviation 222
Broccoli Sprout Extract AloneMidazolam Clearance (Pharmacokinetic Measure of Cytochrome P450 3A4 Activity)MDZ AUC Day 8558 ng*min/mlStandard Deviation 134

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026