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The Anabolic Effect of Testosterone on Pelvic Floor Muscles

A Pilot Study to Evaluate the Anabolic Effect of Testosterone on Muscles of the Pelvic Floor in Older Women With Stress Urinary Incontinence

Status
Active, not recruiting
Phases
Phase 2
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT06111209
Enrollment
30
Registered
2023-11-01
Start date
2025-02-15
Completion date
2027-12-01
Last updated
2026-06-26

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

Conditions

Menopause, Stress Urinary Incontinence

Keywords

stress urinary incontinence, testosterone therapy, menopause, pelvic floor disorders

Brief summary

Stress urinary incontinence is the most common female pelvic floor disorder encountered in clinical practice with significant negative impact on quality of life. The prevalence of urinary incontinence increases with aging, and weakness of the pelvic floor muscles contributes to the development of stress urinary incontinence. Given that androgen receptors are expressed throughout the pelvic floor, the anabolic effects of androgens on pelvic floor muscles may provide a therapeutic option in women with stress urinary incontinence. The investigators are conducting a randomized, double-blind, placebo-controlled proof-of-concept trial in older postmenopausal women with stress urinary incontinence to assess whether testosterone therapy can increase pelvic floor muscles and improve urinary function.

Detailed description

The investigators are conducting a 12-week double-blind, randomized-controlled, proof-of-concept pilot trial to determine the anabolic effect of testosterone therapy on pelvic floor muscles in postmenopausal women, 60 years and older, with stress urinary incontinence. The first aim is to compare the efficacy of testosterone supplementation versus placebo on the volume of levator ani muscles of the pelvic floor, assessed by magnetic resonance imaging (MRI). The second aim is to assess the efficacy of testosterone supplementation in improving indices of urodynamic function (i.e., bladder, urethra, and sphincter function), assessed by urodynamic testing. These urodynamic measures include Valsava leak point pressure, urethral pressure profile, cystometry and electromyography. As an exploratory aim, the efficacy of testosterone treatment relative to placebo will be assessed using self-reported urinary symptoms assessed by the Urogenital Distress Inventory (UDI) and quality of life assessed by the Incontinence Impact Questionnaire (IIQ).

Interventions

DRUGTestosterone cypionate

weekly by intramuscular injection

DRUGPlacebo

weekly by intramuscular injection

Sponsors

Brigham and Women's Hospital
Lead SponsorOTHER
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
CollaboratorNIH

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
QUADRUPLE (Subject, Caregiver, Investigator, Outcomes Assessor)

Eligibility

Sex/Gender
FEMALE
Age
60 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Women, age 60 years and older. * Medically documented pure stress urinary incontinence on physical exam or urodynamic testing. * Normal mammogram within the last 12 months * Endometrial thickness of ≤4 mm in women with an intact uterus assessed by endometrial ultrasound. * Ability and willingness to provide informed consent.

Exclusion criteria

* • Medically documented urge or mixed urinary incontinence (stress and urge) on physical exam or urodynamic testing. * Participating in pelvic floor muscle training (PFMT) therapy currently or in the past 3 months * Previous pelvic surgery (i.e., hysterectomy, pelvic organ prolapse repair, mid-urethral sling placement, injection of urethral bulking agents) or radiation treatment to the pelvis. * History of ≥ Grade 3 pelvic organ prolapse * Neurologic disorder causing UI or bladder dysfunction (i.e., multiple sclerosis, Parkinson's disease, stroke, cerebral palsy, spinal cord injury) * Current urinary tract infection * History of breast or endometrial cancer * Use of systemic estrogen therapy in the past 3 months * Baseline hematocrit \>48%, serum creatinine \>2.5 mg/dL; HbA1c \>8.0%; BMI \>40 kg/m2 * Uncontrolled hypertension defined as an average of two blood pressure readings of greater than 160/100. * Subjects who are on insulin therapy will be excluded. * Uncontrolled congestive heart failure * Myocardial infarction, acute coronary syndrome, revascularization surgery or stroke within 6 months * History of pulmonary embolism, deep vein thrombosis or a genetic thromboembolic disorder * History of bipolar disorder, schizophrenia or untreated major depression * Presence of metallic implants (pacemakers, aneurysm clips, etc.) that preclude the patient from undergoing MRI

Design outcomes

Primary

MeasureTime frameDescription
Change in pelvic floor muscle volume12 weeksvolume of levator ani muscles of the pelvic floor, assessed by magnetic resonance imaging (MRI)

Secondary

MeasureTime frameDescription
Change in abdominal leak point pressure12 weeksabdominal leak point pressure will be measured by a urodynamic function study
Change in urine flow rate12 weeksurine flow rate will be measured by urodynamic function a study
Change in bladder pressure12 weeksbladder pressure will be measured during filling, storage and voiding by urodynamic study
Change in post void residual urine volume12 weekspost void residual urine volume will be measured using bladder ultrasound
Change in urinary symptoms12 weeksself-reported urinary symptoms will be assessed by the Urogenital Distress Inventory (UDI). Total score ranges from 6-24 with higher scores indicating higher severity of symptoms
Change in quality of life12 weeksquality of life will be assessed by the Incontinence Impact Questionnaire (IIQ). Total score ranges from 0-21 with higher scores indicating worse impact on quality of life.

Countries

United States

Contacts

PRINCIPAL_INVESTIGATORGrace Huang, MD

Brigham and Women's Hospital

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Jun 27, 2026