Healthy
Conditions
Keywords
Non-steroidal Anti-inflammatory Drugs, Healthy volunteers, Celecoxib, Naproxen, Prostaglandin, Cyclooxygenase
Brief summary
This research study will evaluate inter-individual variability in the response to the non-steroidal anti-inflammatory drugs (NSAIDs), celecoxib and naproxen, among healthy adults. It will also investigate what factors, like age, sex, or genetic background, cause this variability.
Detailed description
Non-steroidal anti-inflammatory drugs (NSAIDs) are commonly used for the treatment of inflammatory pain. Pain is a highly subjective experience, and selecting an analgesic regimen that provides optimal pain relief for a specific patient can be challenging. Moreover, patients often express a preference for a particular NSAID, raising the possibility that the efficacy in relieving pain is variable among individuals. However this has never been studied systematically. The clinical decision-making process has been further complicated by the recognition that NSAIDs cause serious thrombotic adverse events in some patients (1). Elucidating the factors that influence an individual patient's risk of cardiovascular complications and the likelihood of analgesic efficacy will enable clinicians to prescribe NSAIDs rationally in order to maximize their therapeutic benefit while minimizing the risk of adverse cardiovascular events. NSAIDs are a chemically diverse class of therapeutic agents that exert their analgesic and anti-inflammatory effects via inhibition of cyclooxygenase (COX)-1 and/or COX-2, enzymes that catalyze the first committed step in prostaglandin (PG) synthesis. PGs produce a diverse array of biologic effects via activation of prostanoid receptors, and play important roles in a variety of pathologic and homeostatic processes (2). COX-2 is readily induced in response to pro-inflammatory stimuli and has been considered the primary source of inflammatory PGs. In contrast, the production of PGs with homeostatic functions, such as gastric epithelium cytoprotection, has been ascribed to COX-1, which is constitutively expressed in most tissues (2). Consequently, COX-2-selective NSAIDs, including rofecoxib, valdecoxib, and celecoxib, were developed in order to retain the anti-inflammatory and analgesic effects of inhibition of COX-2-derived PG formation, while avoiding the gastrointestinal toxicity of traditional NSAIDs (i.e. aspirin, ibuprofen, naproxen, etc) that inhibit both isoforms. Although fewer gastrointestinal complications were observed in clinical trials, treatment with COX-2-selective NSAIDs increased the risk of serious cardiovascular adverse events, including myocardial infarction, stroke, and heart failure (1,3). The risk of thrombotic events associated with the use of NSAIDs, particularly those selective for COX-2, is mediated via suppression of COX-2-derived prostacyclin formation in endothelial and vascular smooth muscle cells (4,5). Prostacyclin possesses potent anti-thrombotic and vasodilatory effects, and thus acts as a general inhibitor of platelet activation in vivo (2). Traditional NSAIDs also inhibit COX-2 in the vasculature, but the associated risk of thrombosis is mitigated to some extent by inhibition of formation of thromboxane A2 (TxA2), a COX-1-derived PG released by activated platelets that promotes platelet activation and aggregation (1,3). Thus, the risk of thrombosis for a particular NSAID is dependent upon its relative selectivity for COX-2 over COX-1 (3,6). In addition to their effects on vascular PG production, all NSAIDs inhibit renal PG formation, resulting in sodium retention and hypertension, which may further augment cardiovascular risk (1,3,7). Currently, it is recommended that NSAIDs be avoided or used only for a limited duration in patients classified as high cardiovascular risk (8). These recommendations are supported by studies demonstrating that even short-term NSAID use increased the incidence of cardiovascular events in patients undergoing coronary artery bypass grafting (9,10) and following a myocardial infarction (11,12). However, long-term treatment with COX-2-selective NSAIDs also increased the incidence of cardiovascular events in patients considered to be at low baseline risk (13,14), consistent with risk transformation due to atherogenesis and indicating traditional cardiovascular risk factors alone are not sufficient to guide therapeutic decisions. Thus, additional studies are necessary to define comprehensively the factors that modify the cardiovascular risk of NSAID use and facilitate the progressive personalization of NSAID therapy.
Interventions
Sponsors
Study design
Eligibility
Inclusion criteria
* Adult men and women greater than 18 years of age who are non-smokers and in good health based on medical history, physical examination, vital signs, and laboratory tests. Volunteers with adequately controlled hypertension and hyperlipidemia (total cholesterol of ≤270 mg/dL) may participate in the study.
Exclusion criteria
* Female subjects who are pregnant or nursing a child. * Subjects who have received an investigational drug or used an experimental medical device within 30 days prior to screening, or who gave a blood donation of ≥ one pint within 8 weeks prior to screening. * Subjects with any coagulation, bleeding or blood disorders. * Subjects who are sensitive or allergic to celecoxib (Celebrex) or naproxen (Naprosyn) or their components. * Subjects who are sensitive or allergic to aspirin or other NSAIDs. * Subjects with documented history of any gastrointestinal disorders, including bleeding ulcers. * History of significant cardiovascular disease (including stroke or TIA), renal, hepatic, respiratory (except infections which longer \> 6 months prior to screening), immune, endocrine, hematopoietic disorder or neurological disorders. * History of cancer within the last 5 years (except for cutaneous basal cell or squamous cell cancer resolved by excision, or carcinoma in situ of the cervix adequately treated). * Has taken any prescription medication other than hormone replacement therapy (including males taking testosterone as a hormone replacement to treat a documented low testosterone level), thyroid replacement hormones, anti-hyperlipidemic agents, or anti-hypertensive medications. Individuals taking other/additional chronic stable medications can be considered on a case-by-case basis for inclusion in the study if agreed upon by judgment of the investigators. * Has taken NSAIDs or anti-secretory agents (proton pump inhibitors or H2 receptor antagonists) within 14 days prior to study drug administration * Has ever taken the any anti-platelet or anti-coagulant agents * Used dietary or herbal supplements containing salicylates, Vitamin E, fish oil, or any other herbal supplements, within 14 days of study drug administration. * Subjects with any abnormal laboratory value or physical finding that according to the investigator may interfere with interpretation of the study results, be indicative of an underlying disease state, or compromise the safety of a potential subject. * Subjects who have had a history of drug or alcohol abuse within the last 6 months. * Subjects who are unwilling to provide a blood sample for genetic analyses and creation of a lymphoblastoid cell line.
Design outcomes
Primary
| Measure | Time frame | Description |
|---|---|---|
| COX-1 Activity ex Vivo | 12 hours | COX-1 activity was measured ex vivo using a whole blood assay. Thromboxane A2 serum concentrations were quantified before, and 0.5, 1, 2, 4, 8, and 12 h after treatment and expressed as AUC over the 12 hour dosing interval. |
| COX-2 Activity ex Vivo | 12 hours | COX-2 activity was assessed ex vivo using a whole blood assay. Prostaglandin E2 concentrations in LPS-treated plasma were quantified before, and 0.5, 1, 2, 4, 8, and 12 h after treatment and expressed as AUC over the 12 hour dosing interval. |
| COX-1 Activity in Vivo | 12 hours | COX-1 activity was measured in vivo by quantifying the urinary metabolite of thromboxane A2 before, and 1, 2, 4, 8, and 12 h after treatment, normalized to urinary creatinine and expressed as AUC over the 12 hour dosing interval. |
| COX-2 Activity in Vivo | 12 hours | COX-2 activity was measured in vivo by quantifying the urinary metabolite of prostaglandin I2 before, and 1, 2, 4, 8, and 12 h after treatment, normalized to urinary creatinine and expressed as AUC over the 12 hour dosing interval. |
Secondary
| Measure | Time frame | Description |
|---|---|---|
| Diastolic Blood Pressure | 12 hours | Blood pressure was measured over 12 hours using an automatic ambulatory blood pressure monitor. |
| Mean Arterial Pressure | 12 hours | Blood pressure was measured over 12 hours using an automatic ambulatory blood pressure monitor. |
| Systolic Blood Pressure | 12 hours | Blood pressure was measured over 12 hours using an automatic ambulatory blood pressure monitor. |
Countries
United States
Participant flow
Participants by arm
| Arm | Count |
|---|---|
| Total Enrollment During each treatment phase, subjects will receive celecoxib (100 mg by mouth twice daily), naproxen (250 mg by mouth twice daily), or placebo (twice daily) for 7 days. Subjects will be instructed to take the study medications twice a day (at approximately 8 AM and 8 PM) on an empty stomach with a full glass of water. | 16 |
| Total | 16 |
Baseline characteristics
| Characteristic | Total Enrollment |
|---|---|
| Age, Continuous | 34.7 years STANDARD_DEVIATION 13.4 |
| Body mass index | 22.6 kg/m^2 STANDARD_DEVIATION 1.9 |
| Diastolic blood pressure | 69.8 mm Hg STANDARD_DEVIATION 9.5 |
| Ethnicity (NIH/OMB) Hispanic or Latino | 3 Participants |
| Ethnicity (NIH/OMB) Not Hispanic or Latino | 13 Participants |
| Ethnicity (NIH/OMB) Unknown or Not Reported | 0 Participants |
| Race (NIH/OMB) American Indian or Alaska Native | 0 Participants |
| Race (NIH/OMB) Asian | 1 Participants |
| Race (NIH/OMB) Black or African American | 4 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 | 2 Participants |
| Race (NIH/OMB) White | 9 Participants |
| Region of Enrollment United States | 16 participants |
| Sex: Female, Male Female | 7 Participants |
| Sex: Female, Male Male | 9 Participants |
| Systolic blood pressure | 115.3 mm Hg STANDARD_DEVIATION 8.9 |
Adverse events
| Event type | EG000 affected / at risk | EG001 affected / at risk | EG002 affected / at risk |
|---|---|---|---|
| deaths Total, all-cause mortality | 0 / 16 | 0 / 16 | 0 / 16 |
| other Total, other adverse events | 0 / 16 | 0 / 16 | 0 / 16 |
| serious Total, serious adverse events | 0 / 16 | 0 / 16 | 0 / 16 |
Outcome results
COX-1 Activity ex Vivo
COX-1 activity was measured ex vivo using a whole blood assay. Thromboxane A2 serum concentrations were quantified before, and 0.5, 1, 2, 4, 8, and 12 h after treatment and expressed as AUC over the 12 hour dosing interval.
Time frame: 12 hours
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| Celecoxib | COX-1 Activity ex Vivo | 2869 ng*h/ml | Standard Deviation 1357 |
| Naproxen | COX-1 Activity ex Vivo | 115.7 ng*h/ml | Standard Deviation 66.8 |
| Placebo | COX-1 Activity ex Vivo | 3135 ng*h/ml | Standard Deviation 1489 |
COX-1 Activity in Vivo
COX-1 activity was measured in vivo by quantifying the urinary metabolite of thromboxane A2 before, and 1, 2, 4, 8, and 12 h after treatment, normalized to urinary creatinine and expressed as AUC over the 12 hour dosing interval.
Time frame: 12 hours
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| Celecoxib | COX-1 Activity in Vivo | 8.018 ng*h/mg creatinine | Standard Deviation 2.488 |
| Naproxen | COX-1 Activity in Vivo | 2.907 ng*h/mg creatinine | Standard Deviation 2.143 |
| Placebo | COX-1 Activity in Vivo | 9.509 ng*h/mg creatinine | Standard Deviation 3.156 |
COX-2 Activity ex Vivo
COX-2 activity was assessed ex vivo using a whole blood assay. Prostaglandin E2 concentrations in LPS-treated plasma were quantified before, and 0.5, 1, 2, 4, 8, and 12 h after treatment and expressed as AUC over the 12 hour dosing interval.
Time frame: 12 hours
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| Celecoxib | COX-2 Activity ex Vivo | 87.86 ng*h/ml | Standard Deviation 49.92 |
| Naproxen | COX-2 Activity ex Vivo | 54.71 ng*h/ml | Standard Deviation 51.37 |
| Placebo | COX-2 Activity ex Vivo | 154.1 ng*h/ml | Standard Deviation 83.31 |
COX-2 Activity in Vivo
COX-2 activity was measured in vivo by quantifying the urinary metabolite of prostaglandin I2 before, and 1, 2, 4, 8, and 12 h after treatment, normalized to urinary creatinine and expressed as AUC over the 12 hour dosing interval.
Time frame: 12 hours
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| Celecoxib | COX-2 Activity in Vivo | 1.610 ng*h/mg creatinine | Standard Deviation 0.3834 |
| Naproxen | COX-2 Activity in Vivo | 1.253 ng*h/mg creatinine | Standard Deviation 0.8699 |
| Placebo | COX-2 Activity in Vivo | 2.413 ng*h/mg creatinine | Standard Deviation 0.8506 |
Diastolic Blood Pressure
Blood pressure was measured over 12 hours using an automatic ambulatory blood pressure monitor.
Time frame: 12 hours
Population: One participant was excluded from blood pressure analysis due to equipment malfunction and incomplete data
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| Celecoxib | Diastolic Blood Pressure | 74.8 mm Hg | Standard Deviation 8.5 |
| Naproxen | Diastolic Blood Pressure | 76.6 mm Hg | Standard Deviation 9.3 |
| Placebo | Diastolic Blood Pressure | 89.7 mm Hg | Standard Deviation 8.7 |
Mean Arterial Pressure
Blood pressure was measured over 12 hours using an automatic ambulatory blood pressure monitor.
Time frame: 12 hours
Population: One participant was excluding from blood pressure analysis due to equipment malfunction and incomplete data
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| Celecoxib | Mean Arterial Pressure | 90.4 mm Hg | Standard Deviation 8.4 |
| Naproxen | Mean Arterial Pressure | 92.9 mm Hg | Standard Deviation 8.9 |
| Placebo | Mean Arterial Pressure | 89.7 mm Hg | Standard Deviation 8.7 |
Systolic Blood Pressure
Blood pressure was measured over 12 hours using an automatic ambulatory blood pressure monitor.
Time frame: 12 hours
Population: One participant was excluded from blood pressure analysis due to equipment malfunction and incomplete data
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| Celecoxib | Systolic Blood Pressure | 123.0 mm Hg | Standard Deviation 10 |
| Naproxen | Systolic Blood Pressure | 127.1 mm Hg | Standard Deviation 10.7 |
| Placebo | Systolic Blood Pressure | 124.1 mm Hg | Standard Deviation 11.2 |