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Androgen Excess as a Cause for Adipogenic Dysfunction in PCOS Women

Androgen Excess as a Cause for Adipogenic Dysfunction in PCOS Women

Status
Completed
Phases
Phase 2
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT01889199
Enrollment
23
Registered
2013-06-28
Start date
2013-04-30
Completion date
2023-07-06
Last updated
2025-01-10

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

Conditions

Polycystic Ovary Syndrome (PCOS)

Keywords

polycystic ovary syndrome, hirsutism, anovulation, oligomenorrhea, amenorrhea, hyperandrogenism, antiandrogen effect

Brief summary

The purpose of this research study is to collect specimen samples and study medical information from women with Polycystic Ovary Syndrome (PCOS) and women without PCOS. The goal is to learn more about the changes that take place in the body that result in PCOS. We anticipate that 32 women will take part in this study (16 without PCOS and 16 with PCOS). All patients will undergo a physical exam, blood tests, and ultrasound of their ovaries. If they meet the criteria for this study, they will then undergo additional blood tests, removal of a small amount of subcutaneous abdominal fat, measurement of regional body fat (i.e., DXA scan) and a modified frequently-sampled intravenous glucose tolerance test (FSIGTT). The women without PCOS will complete the study at this point. The women with PCOS will be randomized to receive the drug flutamide 125 mg/day or placebo. They will take the drug every day for six 28-day cycles. They will be asked to collect and store a urine sample once a week. They will also be asked to complete a pill diary and menstrual diary. Once a month while they are taking the flutamide/placebo, they will return to the clinic and bring their frozen urine samples. At that time they will undergo a physical exam, toxicity assessment, and blood draw. Quality of Life assessments will be done at the beginning of the study for all participants. Women with PCOS who are taking the flutamide or placebo will be asked to repeat the Quality of Life assessments during the study and at the end of the study. After the six 28-day cycles are completed they will then undergo additional blood tests, removal of a small amount of subcutaneous abdominal fat, measurement of regional body fat (i.e., DXA scan) and a modified frequently-sampled intravenous glucose tolerance test (FSIGTT). Six months following the completion of all study protocol procedures, participants who received flutamide/placebo will be contacted by phone to check on the status of their health. They will be asked if they have experienced any health problems or have become pregnant since they completed the study procedures.

Detailed description

Aim 1. Examine mechanisms of subcutaneous abdominal adipose (fat) development in normal-weight PCOS women vs. BMI- and age-matched normal (control) women. Subjects and clinical assessment: We will recruit 16 lean (18.5-25 kg/M2) PCOS subjects and 16 age- and BMI-matched controls. Subjects will complete a standardized questionnaire emphasizing menstrual dating, abnormal hair growth and acne. The questionnaire also will annotate age, smoking status, medications, surgical history and family histories of excess hair growth in female relatives and of diabetes in parents or siblings for exclusion criteria and for inclusion of some basic traits as covariates. Subjects also will undergo a physical examination; hirsutism will be scored by the modified Ferriman-Gallwey (mFG) method. Transvaginal sonography (TVUS) will be performed to determine the presence or absence of polycystic ovaries. A screening blood sample will be obtained for determinations of steroid hormones, SHBG, TSH, and prolactin. Women of any ethnicity between the ages of 18 and 35 years will be recruited. PCOS patients will be diagnosed by 1990 NIH criteria. Controls will have regular menstrual cycles at 21 to 35 day intervals, a luteal phase progesterone (P4) level \> 3 ng/mL, and no evidence of hirsutism, acne, alopecia, polycystic ovaries or endocrine dysfunction. Exclusion criteria are: present/past history (\<1 year) of smoking, cancer, alcohol abuse, drug addiction, severe depression, or post traumatic stress; diabetes; uncontrolled hypertension (≥ 165/100); clinically significant hepatic or renal disease, or other major medical illness; signs or symptoms of infection; recent (within 30 days) use of an experimental device; recent (within 3 months) use of androgens, anabolic steroids or non-steroidal anti-inflammatory drugs; recent (within 3 months) use of hormonal agents (including birth control pills or insulin sensitizers); use of the drug warfarin. Studies will be conducted in the follicular phase in controls and during amenorrhea in PCOS women. All subjects will undergo a modified frequently-sampled intravenous glucose tolerance test (FSIGTT). Glucose in the form of a 50% solution (0.3 g/kg) and regular human insulin (0.03 units/kg) will be injected through an intravenous line at 0 and 20 min, respectively. Blood will be collected at -20, -15, -5, 0, 2, 4, 8, 19, 22, 30, 40, 50, 70, 90, and 180 min for glucose and insulin determinations. Mathematical modeling of serial glucose and insulin determinations will calculate: insulin sensitivity index (SI, i.e. the action of insulin to accelerate glucose uptake and suppress glucose production), glucose effectiveness index (SG, i.e. the combined effect of glucose to enhance glucose uptake and suppress endogenous glucose production at basal insulin levels) and the acute response to glucose (AIRG). Adipocytes isolation and culture: Approximately 1-2 gms of fat will be obtained from the lower SC abdomen using standard procedures under local anesthesia. Adipocytes (fat cells) and surrounding fat tissue will be isolated to measure adipocyte cell number and diameter, lipid accumulation and function, adiponectin, and stem cell development. Procedures: All procedures will be performed in normal and PCOS women at the start of study. i). Venipuncture: Fasting blood will be collected for blood count, chemistry panel, LH, FSH, total/free T, DHT, A4, DHEAS, E1, E2, anti-mullerian hormone (AMH), SHBG, adiponectin, leptin, IL-6, lipid profile and free fatty acids (FFAs). ii ). Body composition: Body composition will be assessed by BMI, waist-to-hip circumference and DEXA scanning. Girths will be measured at the waist (narrowest section of the torso between ribs and umbilicus) and hips (largest protrusion of the hip region, above the gluteal fold). For total body fat and regional fat distribution, whole body scans will be performed, utilizing DEXA imaging. iii). Body fat distribution: Total body DEXA will measure abdominal fat (i.e., the area between the dome of the diaphragm and the top of the hip. Total body DEXA images also will determine % body fat; fat-free body mass; total body, abdominal, and leg fat; and abdomen/leg fat mass ratio. The leg region is that area below the top of the hip bone (greater trochanter). iv). Ovarian testing: Transvaginal ultrasound will be performed in the follicular phase in controls and during amenorrhea in PCOS women. Ovarian volume will be calculated. Antral follicle number, defined as the total follicle number (2-9 mm in diameter) of both ovaries, will be determined by 1 investigator (D.A.D.). Polycystic ovaries will be identified, with one such ovary sufficient to define PCO Aim 2. Determine the role of androgen in SC abdominal ASC dysfunction and its relation to metabolism in normal-weight PCOS women through androgen. antagonism by clinical use of flutamide vs. placebo. Modified FSIGTT and Adipogenic studies: The modified FSIGTT and all adipogenic studies performed at study initiation will be repeated at the end of the 6-month flutamide vs. placebo intervention in PCOS women. Procedures: All procedures performed at study initiation also will be repeated at the end of the six 28-day cycles of flutamide vs. placebo intervention in PCOS women. In addition, monthly liver function studies will be performed to detect possible elevations of serum transaminase levels above the normal range during flutamide vs. placebo therapy. Menstrual records: Ovulatory frequency will be determined by having subjects keep a daily menstrual record and collect weekly first morning urine samples for possible progesterone and creatinine determinations. Urine samples will be frozen for later analysis to determine evidence of ovulation, as necessary. Aim 3. Identify epigenetic changes that underlie SC abdominal ASC dysfunction in normal-weight PCOS women vs. BMI- and age-matched controls. Subcutaneous abdominal adipose stem cells from PCOS and control women will be grown into newly-formed fat cells (adipocytes) in the laboratory. Cells will be studied before and after 6-month treatment with placebo vs flutamide for changes in the cell epigenome (methylation, RNA sequences and histone modification).

Interventions

DRUGFlutamide

Flutamide 125 mg orally each 28 day cycle for 6 cycles

OTHERPlacebo

Placebo orally each 28 day cycle for 6 cycles

Sponsors

Oregon Health and Science University
CollaboratorOTHER
University of California, Los Angeles
Lead SponsorOTHER

Study design

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

Eligibility

Sex/Gender
FEMALE
Age
18 Years to 35 Years
Healthy volunteers
Yes

Inclusion criteria

* Women between the ages of 18 to 35 years. Groups will be: 16 lean controls and 16 age- and BMI-matched PCOS women randomized to flutamide vs. placebo for 6 months. i) Lean patients with PCOS: 16 subjects with PCOS (defined by 1990 NIH criteria \[all Aims\]), BMI 18.5-25 kg/m2. This BMI range is defined as normal and has been chosen to examine underlying mechanisms of PCOS-related androgen excess in the genesis of adipogenic and ovarian dysfunction, independent of obesity. ii) Lean control women: 16 healthy subjects, BMI 18.5-25 kg/m2. Controls will have regular menstrual cycles, and no evidence of hirsutism, acne, alopecia, polycystic ovaries, and/or endocrine dysfunction. This BMI range has been chosen to match that of the PCOS group.

Exclusion criteria

*

Design outcomes

Primary

MeasureTime frameDescription
Lipid Content of PCOS Subcutaneous (SC) Abdominal Adipocytes Matured in Vitro.Baseline, 6 monthsLipid content of PCOS subcutaneous (SC) abdominal stem cells during adipocyte maturation in vitro at baseline and after 6 months treatment Lipid staining and immunofluorescence: Newly-formed adipocytes were fixed and stained with Oil-Red-O (Sigma Aldrich, St. Louis, MO) for 20 min at room temperature to visualize lipid droplets. Nuclei were identified by the nuclear staining marker 4',6-diamidino-2-phenoylidole (DAPI) (1:3000 \[Invitrogen, Carlsbad, CA\]). After 4 washes with deionized water, lipid staining was quantified by immunofluorescence. Twenty representative images were taken of fluorescent cells with an EVOS FL Digital Inverted Fluorescence microscope (Westover Scientific Inc, Bothell, WA) and fluorescence units/cell number were quantified using ImageJ software (NIH, Bethesda, MD).

Secondary

MeasureTime frameDescription
Fasting Glucose LevelsBaseline, 6 monthsFasting glucose levels at baseline for all participants, and at 6 months for intervention arms
Depression as Assessed by Beck Depression Inventory (BDI)6 monthsNumber of participants with risk of severe depression as determined by 21 questions on a 4-point Likert scale, scores could range from 0-63, with higher score indicating a worse outcome. Scores above 30 indicate Severe depression, and scores above 40 indicate Extreme Depression.
Fasting Serum Lipoprotein Levels6 monthsFasting serum low-density lipoprotein levels at baseline and (for intervention arms only) after 6 months
Fasting Serum Total CholesterolBaseline, 6 monthsFasting serum total cholesterol at baseline and (for intervention arms only) after 6 months
Percent Android Fat MassBaseline, 6 months (intervention arms only)Percent of abdominal (android) fat by Total body dual-energy x-ray absorptiometry (DXA) scan

Other

MeasureTime frameDescription
Number of Participants Experiencing Elevated Liver Transaminases (Serum Glutamic Oxaloacetic Transaminase [SGOT]; Serum Glutamic-pyruvic Transaminase [SGPT])6 monthsThis study carefully considers the safety of low-dose flutamide in examining how hyperandrogenism in PCOS affects ovarian function, subcutaneous fat storage and glucose metabolism. The 125 mg oral dose of flutamide has been specifically chosen because it has not been associated with liver enzyme abnormalities (0%, 62.5-125 mg/day), while being as effective as high dose flutamide in improving androgenic symptoms. Furthermore, in the rare event mild elevation of hepatic enzymes occurs with low-dose flutamide despite its dose-dependency, it is easily detected and reversible.

Countries

United States

Participant flow

Participants by arm

ArmCount
Sugar Pill
Placebo intervention Placebo: Placebo orally each 28 day cycle for 6 cycles
6
Flutamide
Flutamide 125 mg orally daily for six 28-day cycles. Flutamide: Flutamide 125 mg orally each 28 day cycle for 6 cycles
5
Age- and Body Mass Index-matched Controls
Baseline measures assessed on non-PCOS controls
12
Total23

Baseline characteristics

CharacteristicSugar PillFlutamideAge- and Body Mass Index-matched ControlsTotal
Age, Categorical
<=18 years
0 Participants0 Participants0 Participants0 Participants
Age, Categorical
>=65 years
0 Participants0 Participants0 Participants0 Participants
Age, Categorical
Between 18 and 65 years
6 Participants5 Participants12 Participants23 Participants
Ethnicity (NIH/OMB)
Hispanic or Latino
0 Participants0 Participants0 Participants0 Participants
Ethnicity (NIH/OMB)
Not Hispanic or Latino
6 Participants4 Participants4 Participants14 Participants
Ethnicity (NIH/OMB)
Unknown or Not Reported
0 Participants1 Participants8 Participants9 Participants
Race (NIH/OMB)
American Indian or Alaska Native
0 Participants0 Participants0 Participants0 Participants
Race (NIH/OMB)
Asian
0 Participants0 Participants1 Participants1 Participants
Race (NIH/OMB)
Black or African American
0 Participants0 Participants0 Participants0 Participants
Race (NIH/OMB)
More than one race
0 Participants1 Participants0 Participants1 Participants
Race (NIH/OMB)
Native Hawaiian or Other Pacific Islander
0 Participants0 Participants0 Participants0 Participants
Race (NIH/OMB)
Unknown or Not Reported
0 Participants0 Participants8 Participants8 Participants
Race (NIH/OMB)
White
6 Participants4 Participants3 Participants13 Participants
Region of Enrollment
United States
6 participants5 participants12 participants23 participants
Sex: Female, Male
Female
6 Participants5 Participants12 Participants23 Participants
Sex: Female, Male
Male
0 Participants0 Participants0 Participants0 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
EG002
affected / at risk
deaths
Total, all-cause mortality
0 / 60 / 50 / 12
other
Total, other adverse events
0 / 60 / 50 / 12
serious
Total, serious adverse events
0 / 60 / 50 / 12

Outcome results

Primary

Lipid Content of PCOS Subcutaneous (SC) Abdominal Adipocytes Matured in Vitro.

Lipid content of PCOS subcutaneous (SC) abdominal stem cells during adipocyte maturation in vitro at baseline and after 6 months treatment Lipid staining and immunofluorescence: Newly-formed adipocytes were fixed and stained with Oil-Red-O (Sigma Aldrich, St. Louis, MO) for 20 min at room temperature to visualize lipid droplets. Nuclei were identified by the nuclear staining marker 4',6-diamidino-2-phenoylidole (DAPI) (1:3000 \[Invitrogen, Carlsbad, CA\]). After 4 washes with deionized water, lipid staining was quantified by immunofluorescence. Twenty representative images were taken of fluorescent cells with an EVOS FL Digital Inverted Fluorescence microscope (Westover Scientific Inc, Bothell, WA) and fluorescence units/cell number were quantified using ImageJ software (NIH, Bethesda, MD).

Time frame: Baseline, 6 months

Population: Assessed for participants with PCOS

ArmMeasureGroupValue (MEAN)Dispersion
Sugar PillLipid Content of PCOS Subcutaneous (SC) Abdominal Adipocytes Matured in Vitro.Baseline2.0 fluorescence units/cell numberStandard Deviation 0.6
Sugar PillLipid Content of PCOS Subcutaneous (SC) Abdominal Adipocytes Matured in Vitro.6 months1.37 fluorescence units/cell numberStandard Deviation 0.7
Sugar PillLipid Content of PCOS Subcutaneous (SC) Abdominal Adipocytes Matured in Vitro.Change-0.6 fluorescence units/cell numberStandard Deviation 0.4
FlutamideLipid Content of PCOS Subcutaneous (SC) Abdominal Adipocytes Matured in Vitro.Baseline5.6 fluorescence units/cell numberStandard Deviation 4.1
FlutamideLipid Content of PCOS Subcutaneous (SC) Abdominal Adipocytes Matured in Vitro.6 months3.8 fluorescence units/cell numberStandard Deviation 3.9
FlutamideLipid Content of PCOS Subcutaneous (SC) Abdominal Adipocytes Matured in Vitro.Change-1.8 fluorescence units/cell numberStandard Deviation 0.6
Comparison: Only PCOS women were randomized to flutamide versus placebo; controls were not randomized A sample size of 11 per group (PCOS women versus controls) provided adequate power (approximately 80%) to detect effect sizes as small as 1.25 using a two-sample t-test (alpha=0.05, 2 tailed). A sample size of 5 per group (flutamide-treated versus placebo-treated PCOS women) also gave adequate power (approximately 80%) to detect effect sizes as small as 2 using a two-sample t-test (alpha=0.05, 2 tailed).p-value: 0.004t-test, 2 sided
Secondary

Depression as Assessed by Beck Depression Inventory (BDI)

Number of participants with risk of severe depression as determined by 21 questions on a 4-point Likert scale, scores could range from 0-63, with higher score indicating a worse outcome. Scores above 30 indicate Severe depression, and scores above 40 indicate Extreme Depression.

Time frame: 6 months

Population: Assessed only for intervention arms of healthy normal-weight PCOS women by NIH criteria

ArmMeasureValue (COUNT_OF_PARTICIPANTS)
Sugar PillDepression as Assessed by Beck Depression Inventory (BDI)0 Participants
FlutamideDepression as Assessed by Beck Depression Inventory (BDI)0 Participants
Secondary

Fasting Glucose Levels

Fasting glucose levels at baseline for all participants, and at 6 months for intervention arms

Time frame: Baseline, 6 months

Population: Control group was assessed at baseline only

ArmMeasureGroupValue (MEAN)Dispersion
Sugar PillFasting Glucose Levels6 months85.3 mg/dLStandard Deviation 4.8
Sugar PillFasting Glucose LevelsBaseline85.6 mg/dLStandard Deviation 4.6
Sugar PillFasting Glucose LevelsChange-0.3 mg/dLStandard Deviation 3.9
FlutamideFasting Glucose LevelsChange4.6 mg/dLStandard Deviation 1.6
FlutamideFasting Glucose Levels6 months88.6 mg/dLStandard Deviation 5.6
FlutamideFasting Glucose LevelsBaseline83.9 mg/dLStandard Deviation 4.8
Age- and Body Mass Index-matched ControlsFasting Glucose LevelsBaseline85.8 mg/dLStandard Deviation 6.1
Comparison: 6-month changes from baseline were compared between placebo- and flutamide-treated PCOS women using an unpaired Student's t-test to determine whether one group changed more than the other over this time interval.
Secondary

Fasting Serum Lipoprotein Levels

Fasting serum low-density lipoprotein levels at baseline and (for intervention arms only) after 6 months

Time frame: 6 months

Population: Control group was assessed at baseline only

ArmMeasureGroupValue (MEAN)Dispersion
Sugar PillFasting Serum Lipoprotein LevelsLog triglyceride - Baseline1.9 (log)mg/dLStandard Deviation 0.3
Sugar PillFasting Serum Lipoprotein LevelsLog triglyceride - 6 months1.9 (log)mg/dLStandard Deviation 0.4
Sugar PillFasting Serum Lipoprotein LevelsLog triglyceride - Change0.0 (log)mg/dLStandard Deviation 0.1
Sugar PillFasting Serum Lipoprotein LevelsLog non-high-density lipoprotein baseline2.0 (log)mg/dLStandard Deviation 0.1
Sugar PillFasting Serum Lipoprotein LevelsLog non-high-density lipoprotein - 6 months2.0 (log)mg/dLStandard Deviation 0.1
Sugar PillFasting Serum Lipoprotein LevelsLog non-high-density lipoprotein - change0.0 (log)mg/dLStandard Deviation 0
Sugar PillFasting Serum Lipoprotein LevelsLog low-density lipoprotein - Baseline1.8 (log)mg/dLStandard Deviation 0.1
Sugar PillFasting Serum Lipoprotein LevelsLog low-density lipoprotein - 6 months1.8 (log)mg/dLStandard Deviation 0.1
Sugar PillFasting Serum Lipoprotein LevelsLog low-density lipoprotein - Change0.0 (log)mg/dLStandard Deviation 0
FlutamideFasting Serum Lipoprotein LevelsLog non-high-density lipoprotein baseline2.0 (log)mg/dLStandard Deviation 0.1
FlutamideFasting Serum Lipoprotein LevelsLog low-density lipoprotein - 6 months1.9 (log)mg/dLStandard Deviation 0.1
FlutamideFasting Serum Lipoprotein LevelsLog triglyceride - Change0.0 (log)mg/dLStandard Deviation 0.1
FlutamideFasting Serum Lipoprotein LevelsLog low-density lipoprotein - Baseline2.0 (log)mg/dLStandard Deviation 0.1
FlutamideFasting Serum Lipoprotein LevelsLog non-high-density lipoprotein - 6 months2.0 (log)mg/dLStandard Deviation 0.1
FlutamideFasting Serum Lipoprotein LevelsLog low-density lipoprotein - Change-0.1 (log)mg/dLStandard Deviation 0.1
FlutamideFasting Serum Lipoprotein LevelsLog triglyceride - Baseline1.7 (log)mg/dLStandard Deviation 0.1
FlutamideFasting Serum Lipoprotein LevelsLog non-high-density lipoprotein - change-0.1 (log)mg/dLStandard Deviation 0.1
FlutamideFasting Serum Lipoprotein LevelsLog triglyceride - 6 months1.7 (log)mg/dLStandard Deviation 0.2
Age- and Body Mass Index-matched ControlsFasting Serum Lipoprotein LevelsLog low-density lipoprotein - Baseline1.88 (log)mg/dLStandard Deviation 0.1
Age- and Body Mass Index-matched ControlsFasting Serum Lipoprotein LevelsLog non-high-density lipoprotein baseline1.94 (log)mg/dLStandard Deviation 0.1
Age- and Body Mass Index-matched ControlsFasting Serum Lipoprotein LevelsLog triglyceride - Baseline1.7 (log)mg/dLStandard Deviation 0.1
Comparison: 6-month changes from baseline were compared between placebo- and flutamide-treated PCOS women using an unpaired Student's t-test to determine whether one group changed more than the other over this time interval.p-value: 0.034t-test, 2 sided
Secondary

Fasting Serum Total Cholesterol

Fasting serum total cholesterol at baseline and (for intervention arms only) after 6 months

Time frame: Baseline, 6 months

Population: Control group was assessed at baseline only

ArmMeasureGroupValue (MEAN)Dispersion
Sugar PillFasting Serum Total CholesterolTotal cholesterol - 6 months155.3 mg/dLStandard Deviation 31.6
Sugar PillFasting Serum Total CholesterolTotal cholesterol - Baseline153.7 mg/dLStandard Deviation 29.1
Sugar PillFasting Serum Total CholesterolTotal cholesterol - Change1.7 mg/dLStandard Deviation 9.4
FlutamideFasting Serum Total CholesterolTotal cholesterol - 6 months168.0 mg/dLStandard Deviation 14.7
FlutamideFasting Serum Total CholesterolTotal cholesterol - Change-16.0 mg/dLStandard Deviation 24.4
FlutamideFasting Serum Total CholesterolTotal cholesterol - Baseline184.0 mg/dLStandard Deviation 27
Age- and Body Mass Index-matched ControlsFasting Serum Total CholesterolTotal cholesterol - Baseline153.0 mg/dLStandard Deviation 21.7
Secondary

Percent Android Fat Mass

Percent of abdominal (android) fat by Total body dual-energy x-ray absorptiometry (DXA) scan

Time frame: Baseline, 6 months (intervention arms only)

Population: Control group was assessed at baseline only

ArmMeasureGroupValue (MEAN)Dispersion
Sugar PillPercent Android Fat MassChange0.4 percent abdominal (android) fat massStandard Deviation 0.4
Sugar PillPercent Android Fat Mass6 months6.4 percent abdominal (android) fat massStandard Deviation 1.2
Sugar PillPercent Android Fat MassBaseline6.0 percent abdominal (android) fat massStandard Deviation 1.4
FlutamidePercent Android Fat MassBaseline6.1 percent abdominal (android) fat massStandard Deviation 1.8
FlutamidePercent Android Fat Mass6 months5.9 percent abdominal (android) fat massStandard Deviation 1.4
FlutamidePercent Android Fat MassChange-0.3 percent abdominal (android) fat massStandard Deviation 0.5
Age- and Body Mass Index-matched ControlsPercent Android Fat MassBaseline5.5 percent abdominal (android) fat massStandard Deviation 0.5
Comparison: 6-month changes from baseline were compared between placebo- and flutamide-treated PCOS women using an unpaired Student's t-test to determine whether one group changed more than the other over this time interval.p-value: 0.04t-test, 2 sided
Other Pre-specified

Number of Participants Experiencing Elevated Liver Transaminases (Serum Glutamic Oxaloacetic Transaminase [SGOT]; Serum Glutamic-pyruvic Transaminase [SGPT])

This study carefully considers the safety of low-dose flutamide in examining how hyperandrogenism in PCOS affects ovarian function, subcutaneous fat storage and glucose metabolism. The 125 mg oral dose of flutamide has been specifically chosen because it has not been associated with liver enzyme abnormalities (0%, 62.5-125 mg/day), while being as effective as high dose flutamide in improving androgenic symptoms. Furthermore, in the rare event mild elevation of hepatic enzymes occurs with low-dose flutamide despite its dose-dependency, it is easily detected and reversible.

Time frame: 6 months

Population: Assessed only for intervention arms of healthy normal-weight PCOS women by NIH criteria

ArmMeasureValue (COUNT_OF_PARTICIPANTS)
Sugar PillNumber of Participants Experiencing Elevated Liver Transaminases (Serum Glutamic Oxaloacetic Transaminase [SGOT]; Serum Glutamic-pyruvic Transaminase [SGPT])0 Participants
FlutamideNumber of Participants Experiencing Elevated Liver Transaminases (Serum Glutamic Oxaloacetic Transaminase [SGOT]; Serum Glutamic-pyruvic Transaminase [SGPT])0 Participants

Source: ClinicalTrials.gov · Data processed: Feb 12, 2026