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COMPLETED
NCT04145518
PHASE4

Mechanistic Characterization of Uterine Pain

Sponsor: Endeavor Health

View on ClinicalTrials.gov

Summary

There are limited treatment options for management of dysmenorrhea, and the physiological processes they affect are not completely understood. For example, NSAIDs are effective in reducing menstrual pain in some women by inhibition of prostaglandin synthesis, but whether those effects are mediated by affecting contractility, perfusion, or hypoxemia is unknown. Understanding how these drugs relieve menstrual pain (and why they fail) would be of substantial clinical significance. Given the foregoing, Two Specific Aims are proposed: Aim #1: Characterize menstrual pain phenotypes associated with impairments in myometrial activity, perfusion, and/or oxygenation. Continuous MRI scans of the uterus will be performed with simultaneous measurement of self-reported pain in healthy women and those experiencing menstrual pain. The investigators will include cohorts of women with imaging diagnosed leiomyoma and surgically-confirmed endometriosis to evaluate the contribution of structurally identifiable factors. Based on preliminary data, the investigators anticipate finding four phenotypes with menstrual pain related to: 1) myometrial activity, 2) inadequate perfusion and/or oxygenation, 3) a combination of phenotypes 1 \& 2, and 4) a non-uterine source. Aim #2: Evaluate the effects of naproxen on myometrial activity, perfusion, and/or oxygenation with respect to pain relief. In women with primary dysmenorrhea, the investigators will acquire pelvic MRI scans and evaluate self-reported menstrual cramping pain before and after administration of randomized naproxen or placebo. Naproxen could principally affect one or more potential sources of uterine pain such as myometrial activity, perfusion, and/or oxygenation. The investigators will corroborate preliminary data findings, which suggest menstrual phenotypes with myometrial activity will be more likely to respond. Conversely, Aim 2 will also elucidate the mechanisms responsible for inadequate pain relief from naproxen. Bioavailability of naproxen levels and other molecules associated with NSAID-resistance will be evaluated from the serum of participants after taking naproxen using HPLC-MS.

Official title: Mechanistic Characterization of Uterine Pain (MCUP) to Improve Diagnosis and Treatment for Dysmenorrhea

Key Details

Gender

FEMALE

Age Range

18 Years - 45 Years

Study Type

INTERVENTIONAL

Enrollment

183

Start Date

2019-10-25

Completion Date

2025-07-23

Last Updated

2026-09-23

Healthy Volunteers

Yes

Interventions

DRUG

Naproxen Sodium

Single oral dose of 550 mg naproxen sodium (equivalent to 500 mg naproxen base), given as one tablet identical in size, shape, and appearance to the matching placebo. Administered once during a menstrual MRI visit (within 48 hours of menses onset), immediately after the pre-treatment scan and approximately 90 minutes before the post-treatment scan. Each participant receives naproxen at only one of the two MRI visits; the alternate visit (1-2 months later) uses placebo, per the randomized, quadruple-masked crossover. 550 mg naproxen sodium is the highest FDA-approved starting dose; the sodium salt formulation is used to speed absorption.

DRUG

Placebo

Single oral placebo pill containing no active drug, matched in size, shape, and appearance to the 550 mg naproxen sodium tablet and supplied in coded containers by the clinical research pharmacy. Administered once during a menstrual MRI visit on the same schedule as naproxen (immediately after the pre-treatment scan, approximately 90 minutes before the post-treatment scan). Each participant receives placebo at only one of the two MRI visits; the alternate visit uses naproxen, per the randomized, quadruple-masked crossover.

Locations (1)

NorthShore University HealthSystem

Evanston, Illinois, United States