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Treating Inflammation in Polycystic Ovary Syndrome to Ameliorate Ovarian Dysfunction

Treating Inflammation in Polycystic Ovary Syndrome to Ameliorate Ovarian Dysfunction

Status
Completed
Phases
Phase 2
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT03229408
Acronym
TIN-PCOS-AOD
Enrollment
60
Registered
2017-07-25
Start date
2018-12-05
Completion date
2024-02-28
Last updated
2025-06-10

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

Conditions

Polycystic Ovary Syndrome

Keywords

Inflammation, Hyperandrogenism, Anovulation, Insulin Resistance

Brief summary

Polycystic Ovary Syndrome (PCOS) is characterized by hyperandrogenism, ovulatory dysfunction and polycystic ovaries. Insulin resistance (IR) is a common feature of PCOS, and the resultant hyperinsulinemia is theorized to promote hyperandrogenism in the disorder. However, 30-50% of women with PCOS who are lean do not have insulin resistance. Women with PCOS also exhibit chronic low-grade inflammation. In PCOS, glucose ingestion activates nuclear factor ĸB (NFĸB), the cardinal signal of inflammation culminating in upregulation of the inflammation pathway within mononuclear cells (MNC). This phenomenon is independent of excess adiposity and is highly correlated with circulating androgens. In addition, in vitro exposure to proinflammatory stimuli is capable of directly stimulating ovarian theca cell androgen production. Nonacetylated salicylates suppress NFĸB activation and are well tolerated in humans. The proposed research is a randomized double-blind placebo-controlled study of 90 women with PCOS. Forty-five subjects with PCOS (15 lean without IR), 15 lean with IR and 15 obese) receiving salsalate, a nonacetylated salicylate, at an oral dose of 3-4 gm daily for 12 weeks will be compared with 45 age- and body-composition-matched control women with PCOS receiving placebo. The overarching hypothesis is that inflammation contributes to ovarian dysfunction, independent of excess adiposity or IR. The specific aims are, I: To examine the effect of salsalate administration on the ovarian capacity to secrete androgen and on insulin sensitivity in PCOS. II: To examine the effect of salsalate administration on the inflammatory response of mononuclear cells induced by lipid ingestion and glucose infusion in PCOS. The approach involves evaluation of ovarian androgen secretion in response to human chorionic gonadotropin (HCG) administration and insulin sensitivity during the euglycemic phase of a two-step pancreatic clamp along with ovulation monitoring before and after salsalate administration. The inflammatory response of MNC to lipid ingestion and the hyperglycemic phase of the two-step clamp will also be evaluated during treatment by measuring reactive oxygen species, the mRNA and protein content of inflammation markers, NFĸB activation and cytokine release in culture. The investigators expect that women with PCOS receiving salsalate will exhibit decreased ovarian androgen secretion and reduced inflammation regardless of adiposity or IR status. These results will be significant if they show a causal contribution of inflammation to ovarian dysfunction in PCOS, thus improving our understanding of the pathogenesis of PCOS, opening previously unexplored therapeutic avenues that are not necessarily dependent on improving IR, and guiding the design of future studies aimed at determining what interventions will optimally attenuate inflammation in PCOS to reduce medical disease and enhance fertility.

Detailed description

PCOS is characterized by hyperandrogenism, ovarian dysfunction and polycystic ovarian morphology. Obesity and IR are common features of PCOS. Under the current model of pathophysiology of PCOS, the compensatory hyperinsulinemia of IR is the primary driver of hyperandrogenism. This concept was born from the cross-sectional observation that insulin is positively correlated with androgens in obese women with PCOS, and is supported by reports of increased androgen production from theca cells obtained from obese women with PCOS following insulin exposure in vitro and increases in circulating androgens in women with PCOS following insulin infusion in vivo. However, these in vitro - in vivo responses were elicited with supraphysiological insulin concentrations. Physiological insulin infusion on the other hand does not augment androgen levels in PCOS. The current model also does not explain the cause of hyperandrogenism and ovarian dysfunction in the 30-50% of women with PCOS who are lean and lack IR. Thus, some other factor contributes to these abnormalities in PCOS. The investigators have shown that ingestion of glucose and saturated fat elicits an inflammatory response from circulating MNC in lean women with PCOS who lack excess abdominal adiposity. The hallmark of this response is increased activation of NFĸB, the cardinal signal of inflammation. These findings illustrate the separate and discrete role of MNC in manifesting inflammation in PCOS and that MNC are an excellent model to assess systemic inflammation in PCOS. The investigators have also shown that in PCOS, there is a link between molecular markers of inflammation from MNC and circulating androgens. Chronic suppression of ovarian androgen production does not ameliorate inflammation in lean women with PCOS. However, in vitro exposure of ovarian theca cells to proinflammatory stimuli upregulates CYP17, the androgen producing enzyme and increases testosterone. Salsalate is an inexpensive, safe, well-tolerated, well-understood anti-inflammatory agent that inhibits NFĸB activation when used at higher doses. The salsalate dose required to achieve a salicylate level in the upper therapeutic range is dependent on body mass. This is achieved in lean individuals using 3.0 gm/day as the maximum dose recommended in the salsalate package insert. Individuals across the obese range (30-40 kg/m2) require \>3.0 gm/day to achieve the same objective. Salsalate and other salicylates have also been shown to decrease IR. However, the ability of salsalate to decrease IR would not be necessary if the beneficial anti-inflammatory effect of salsalate to reduce hyperandrogenism is on the ovaries. In fact, we have shown that in lean insulin-sensitive women with PCOS, salsalate reduces HCG-stimulated ovarian androgen secretion by 44% and normalizes basal testosterone levels. Studies performed by the investigators in MNC also confirm the ability of salsalate to suppress NFĸB activation. Together these observations validate the use of these measurements as endpoints to assess the effects of salsalate to probe the pathophysiology of PCOS. Salsalate raises circulating insulin due to its ability to decreased insulin clearance from the liver which confounds the assessment of insulin sensitivity from post-treatment hyperinsulinemic-euglycemic clamp studies. Performance of a novel minimal model-based analysis from an insulin-modified frequently-sampled intravenous glucose tolerance test (FS-IVGTT) is able to address this confounding factor. With this approach, hepatic and extrahepatic insulin clearance can be estimated before and after salsalate treatment to obtain measures of insulin sensitivity that take into account the salsalate-induced alteration in insulin clearance. In this context, the rationale for the proposed study revolves around the concept that in PCOS, inflammation contributes to ovarian dysfunction independent of excess adiposity or IR, and may also improve insulin sensitivity when IR is present. The investigators will undertake a 12-week randomized, double-blind, placebo-controlled trial to test the link between inflammation and ovarian androgen secretion in PCOS unrelated to IR. If this study of pathophysiology demonstrates beneficial effects, this will pave the way for developing novel therapies for ovarian dysfunction in PCOS. The main objective of this proposal is to evaluate the ability of salsalate to reduce ovarian androgen secretion, induce ovulation and decrease lipid-stimulated inflammation independent of body composition and IR in women with PCOS; and to also improve insulin sensitivity in IR women with PCOS. Effects of salsalate will be assessed based on the following aims: Specific Aim 1. To examine the effects of salsalate administration on the ovarian capacity to secrete androgens, menstrual function, and insulin sensitivity in PCOS. The hypothesis for this aim is that salsalate treatment will decrease HCG-stimulated ovarian androgen secretion and induce ovulation in women with PCOS regardless of body composition or IR status; and may also improve insulin sensitivity in IR women with PCOS. The investigators will test this hypothesis in a randomized double-blind placebo-controlled study. The ovarian androgen response to HCG administration will be evaluated in women with PCOS (15 lean with IR, 15 lean without IR and 15 obese) before and after administration of a therapeutic salsalate dose for \ 12 weeks compared with women with PCOS receiving placebo for \ 12 weeks (15 lean with IR, 15 lean without IR and 15 obese). Ovulation monitoring and assessment of insulin sensitivity during FS-IVGTT will be performed before and after salsalate or placebo administration. It is anticipated that salsalate will reduce HCG-stimulated ovarian androgen secretion, induce ovulation regardless of body composition or IR status when compared with placebo. It is also anticipated that salsalate will increase insulin sensitivity in IR women with PCOS compared with placebo. Specific Aim 2. To examine the effect of salsalate administration on the inflammatory response of mononuclear cells induced by lipid ingestion in PCOS. The hypothesis for this aim is that salsalate administration will down-regulate inflammatory signal transduction and cytokine production within MNC following lipid ingestion in women with PCOS regardless of body composition or IR status. The investigators will test this hypothesis using the study design described in Aim 1. The inflammatory response of MNC to a cream challenge test will be evaluated in women with PCOS before and after salsalate treatment. It is anticipated that lipid-induced inflammation will decrease with salsalate use regardless of body composition or IR status when compared with placebo.

Interventions

DRUGSalsalate

Lean PCOS Arms: Salsalate 1.5 gm PO bid; Obese PCOS Arm: Salsalate 2.0 gm PO bid

OTHERPlacebo

Appears identical to experimental drug

Sponsors

National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
CollaboratorNIH
University of Illinois at Chicago
Lead SponsorOTHER

Study design

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

Eligibility

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

Inclusion criteria

* Diagnosis of PCOS based on the presence of hyperandrogenism (skin manifestations of androgen excess such as hirsutism, acne or temporal balding - or -elevation of at least one serum androgen \[i.e. total testosterone, free testosterone, androstenedione or dehydroepiandrosterone-sulphate\] using predetermined local laboratory cutoffs), oligo/amenorrhea and evidence of withdrawal bleeding after progestin administration. * 18-40 years of age. * Good health as evidenced by medical history, physical examination and gynecologic examination within 30 days prior to starting the study. * Willingness to provide informed consent according to the guidelines of the University of Illinois at Chicago (UIC) Institutional Review Board (IRB). * Willingness to use double-barrier contraception such as condoms and topical spermicide (foam, cream or gel), condom and diaphragm, diaphragm and topical spermicide or sponge with topical spermicide if sexually active. Use of a non-hormonal intrauterine device (IUD), or permanent sterilization of the subject or her partner (i.e. tubal ligation or vasectomy) is also acceptable in all instances.

Exclusion criteria

* Hyperprolactinemia. * Uncontrolled thyroid disease. * Evidence of Cushing's syndrome, nonclassic congenital adrenal hyperplasia or a hormone producing tumor based on physical findings and serum androgen levels on initial screening. * Known or suspected pregnancy. * Regular vigorous physical activity during previous 6 months. * Use of any medications known to affect carbohydrate or sex hormone metabolism such as oral contraceptives, progestins, glucocorticoids or insulin sensitizing agents within 30 days of beginning the study. * Acute or chronic inflammatory illnesses (e.g. upper respiratory infection, asthma, rheumatoid arthritis or systemic lupus erythematosus). * Type 1 or type 2 diabetes mellitus defined as having a fasting glucose \>126 mg/dl and/or a 2-hour postprandial glucose \>200 mg/dl. * Regular smoking defined as more than 2 cigarettes a month, or any smoking within 30 days of beginning the study. * History of any illness exacerbated by salicylate use (e.g. peptic ulcer hepatic or renal disease, anemia, thrombosis, coagulopathy, congestive heart failure, hypertension or gout). * Allergy to salicylate or dairy products. * Medication use interacting with salicylates such as anti-platelet drugs (e.g. cilostazol, clopidogrel), anticoagulants (e.g. enoxaparin, heparin, warfarin), corticosteroids (e.g., prednisone), certain diabetes drugs (e.g. sulfonylureas such as glyburide), certain anti-seizure drugs (e.g. phenytoin, valproic acid), cidofovir, cyclosporine, drugs for gout (e.g. probenecid, sulfinpyrazone), anti-hypertensives (e.g. angiotensin converting enzyme inhibitors such as captopril, angiotensin II receptor antagonists such as losartan, and beta blockers such as metoprolol), drugs that affect the acidity of urine (e.g. ammonium chloride, acetazolamide), lithium, methotrexate, oral bisphosphonates (e.g. alendronate), pemetrexed, selective serotonin reuptake inhibitor antidepressants (e.g. fluoxetine, sertraline), tenofovir, and diuretics (furosemide, hydrochlorothiazide, spironolactone).

Design outcomes

Primary

MeasureTime frameDescription
Aim 1: HCG-stimulated Testosterone Area Under the CurveAfter 12 weeks of salsalate administrationData was generated from the post-treatment HCG stimulation test. Area under the curve calculated for serum measurements by chemiluminescence (Siemens Immulite 2000, Cary, NC) from blood samples drawn 0, 24, 48 and 72 hours after HCG administration.
Aim 2: Lipid-stimulated NFкB ActivationAfter 12 weeks of salsalate or placebo administrationData was generated from the post-treatment cream challenge test. Quantified in nuclear extracts by oligonucleotide-based ELISA (Active Motif, Carlsbad, CA) in mononuclear cells isolated from blood samples drawn while fasting (0 hour) and 2 hours after cream ingestion. Percent change was calculated using the 2 hour NFкB band intensity value determined by densitometry minus the 0 hour NFкB band intensity value divided by the 0 hour NFкB band intensity value, multiplied by 100.

Secondary

MeasureTime frameDescription
Aim 1: Basal Androstenedione LevelAfter 12 weeks of salsalate or placebo administrationSerum measurement by ELISA (ALPCO Diagnostics, Salem, NH)
Aim 1: HCG-stimulated Androstenedione Area Under the CurveAfter 12 weeks of salsalate or placebo administrationData was generated from the post-treatment HCG stimulation test. Area under the curve calculated for serum measurements by ELISA (ALPCO Diagnostics, Salem, NH) from blood samples drawn 0, 24, 48 and 72 hours after HCG administration.
Aim 1: Insulin Sensitivity (SI)After 12 weeks of salsalate or placebo adminitrationData was generated from the post-treatment frequently-sampled intravenous glucose tolerance test (FS-IVGTT). Calculated using the Bergman minimal model (Am J Physiol 1979, 236:E667-E677) from serum insulin measurements using blood samples drawn while fasting at -20, -10, -1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 10, 12, 14, 16, 19, 22, 23, 24, 25, 27, 30, 40, 50, 60, 70, 80, 90, 100, 120, 150, 180 and 240 minutes.
Aim 2: Lipid-stimulated TNFα SecretionAfter 12 weeks of salsalate or placebo administrationData was generated from the post-treatment cream challenge test. Measured in culture supernatants by ELISA (Quantikine, R&D Systems, Minneapolis, MN) in mononuclear cells isolated from blood samples drawn while fasting (0 hour) and 2 hours after cream ingestion. Absolute change was calculated using the 2 hour TNFα value (pg/mL) minus the 0 hour TNFα value (pg/mL).
Aim 2: Lipid Stimulated ROS GenerationAfter 12 weeks of salsalate or placebo administrationData was generated from the post-treatment cream challenge test. Measured by chemiluminescence in mononuclear cells isolated from blood samples drawn while fasting (0 hour) and 2 hours after cream ingestion. Percent change was calculated using the 2 hour ROS value (mV) minus the 0 hour ROS value (mV) divided by the 0 hour ROS value (mV), multiplied by 100.
Aim 1: Basal Testosterone LevelAfter 12 weeks of salsalate or placebo administrationSerum measurement by chemiluminescence (Siemens Immulite 2000, Cary, NC).

Countries

United States

Participant flow

Pre-assignment details

Of the 60 volunteers enrolled, 35 of them never entered the protocol for the following reasons: Lost to follow up before screening completed during intermittent COVID-19 person-to-person human research suspensions (n=21); Declined study participation despite eligibility after screening (n=6); Ineligible after screening (n=8). The remaining 25 volunteers were entered into the study protocol.

Participants by arm

ArmCount
Experimental: Salsalate-Treated PCOS
Lean PCOS (BMI 18.0-24.9 kg/m2): Salsalate 1.5 gm PO bid or Obese PCOS (BMI 30.0-39.9 kg/m2): Salsalate 2.0 gm PO bid
14
Placebo Comparator: Placebo-Treated PCOS
Lean PCOS (BMI 18.0-24.9 kg/m2) or Obese PCOS (BMI 30.0-39.9 kg/m2): Placebo appears identical to experimental drug
11
Total25

Withdrawals & dropouts

PeriodReasonFG000FG001
Overall StudyAdverse Event20
Overall StudyPregnancy01
Overall StudyRequired to stopped during intermittent COVID-19 person-to-person human research suspensions22
Overall StudyWithdrawal by Subject41

Baseline characteristics

CharacteristicExperimental: Salsalate-Treated PCOSPlacebo Comparator: Placebo-Treated PCOSTotal
Age, Continuous28 Years
STANDARD_DEVIATION 4
29 Years
STANDARD_DEVIATION 4
28 Years
STANDARD_DEVIATION 4
Basal Androstenedione Level3.85 Nanograms per Milliliter (ng/mL)
STANDARD_DEVIATION 0.53
3.66 Nanograms per Milliliter (ng/mL)
STANDARD_DEVIATION 0.46
3.77 Nanograms per Milliliter (ng/mL)
STANDARD_DEVIATION 0.5
Basal Testosterone Level70 Nanograms per Deciliter (ng/dL)
STANDARD_DEVIATION 9
67 Nanograms per Deciliter (ng/dL)
STANDARD_DEVIATION 6
69 Nanograms per Deciliter (ng/dL)
STANDARD_DEVIATION 8
Body Mass Index31.3 Kilos Per Meters Squared (kg/m2)
STANDARD_DEVIATION 5.9
28.5 Kilos Per Meters Squared (kg/m2)
STANDARD_DEVIATION 6.4
30.0 Kilos Per Meters Squared (kg/m2)
STANDARD_DEVIATION 6.2
Ethnicity (NIH/OMB)
Hispanic or Latino
7 Participants4 Participants11 Participants
Ethnicity (NIH/OMB)
Not Hispanic or Latino
7 Participants7 Participants14 Participants
Ethnicity (NIH/OMB)
Unknown or Not Reported
0 Participants0 Participants0 Participants
HCG-stimulated Androstenedione Area Under the Curve422 Nanograms*Hour per Milliliter (ng*hr/mL)
STANDARD_DEVIATION 69
415 Nanograms*Hour per Milliliter (ng*hr/mL)
STANDARD_DEVIATION 40
419 Nanograms*Hour per Milliliter (ng*hr/mL)
STANDARD_DEVIATION 57
HCG-stimulated Testosterone Area Under the Curve7830 Nanograms*Hour per Deciliter (ng*hr/dL)
STANDARD_DEVIATION 1208
7673 Nanograms*Hour per Deciliter (ng*hr/dL)
STANDARD_DEVIATION 1109
7761 Nanograms*Hour per Deciliter (ng*hr/dL)
STANDARD_DEVIATION 1145
Insulin Sensitivity (SI)2.86 Microunits/Milliliter/Minute (µU/mL/min)
STANDARD_DEVIATION 0.76
3.50 Microunits/Milliliter/Minute (µU/mL/min)
STANDARD_DEVIATION 0.63
3.20 Microunits/Milliliter/Minute (µU/mL/min)
STANDARD_DEVIATION 0.74
Lipid-stimulated NFкB Activation93 Percent Change
STANDARD_DEVIATION 35
134 Percent Change
STANDARD_DEVIATION 84
111 Percent Change
STANDARD_DEVIATION 64
Lipid-stimulated ROS Generation122 Percent Change
STANDARD_DEVIATION 43
102 Percent Change
STANDARD_DEVIATION 41
114 Percent Change
STANDARD_DEVIATION 42
Lipid-stimulated TNFα Secretion13.1 Picograms per Milliliter (pg/mL)
STANDARD_DEVIATION 7
14.0 Picograms per Milliliter (pg/mL)
STANDARD_DEVIATION 3.3
13.5 Picograms per Milliliter (pg/mL)
STANDARD_DEVIATION 5.6
Race (NIH/OMB)
American Indian or Alaska Native
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Asian
1 Participants5 Participants6 Participants
Race (NIH/OMB)
Black or African American
3 Participants1 Participants4 Participants
Race (NIH/OMB)
More than one race
7 Participants4 Participants11 Participants
Race (NIH/OMB)
Native Hawaiian or Other Pacific Islander
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Unknown or Not Reported
0 Participants0 Participants0 Participants
Race (NIH/OMB)
White
3 Participants1 Participants4 Participants
Region of Enrollment
United States
14 Participants11 Participants25 Participants
Sex: Female, Male
Female
14 Participants11 Participants25 Participants
Sex: Female, Male
Male
0 Participants0 Participants0 Participants
Total Abdominal Fat13710 Cubic Centimeters (cm3)
STANDARD_DEVIATION 4741
11867 Cubic Centimeters (cm3)
STANDARD_DEVIATION 5322
12865 Cubic Centimeters (cm3)
STANDARD_DEVIATION 4992
Total Body Fat21981 Cubic Centimeters (cm3)
STANDARD_DEVIATION 5086
18273 Cubic Centimeters (cm3)
STANDARD_DEVIATION 6720
20282 Cubic Centimeters (cm3)
STANDARD_DEVIATION 6057
Visceral Fat3817 Cubic Centimeters (cm3)
STANDARD_DEVIATION 1390
4487 Cubic Centimeters (cm3)
STANDARD_DEVIATION 5439
4125 Cubic Centimeters (cm3)
STANDARD_DEVIATION 3740

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
deaths
Total, all-cause mortality
0 / 140 / 11
other
Total, other adverse events
1 / 140 / 11
serious
Total, serious adverse events
1 / 140 / 11

Outcome results

Primary

Aim 1: HCG-stimulated Testosterone Area Under the Curve

Data was generated from the post-treatment HCG stimulation test. Area under the curve calculated for serum measurements by chemiluminescence (Siemens Immulite 2000, Cary, NC) from blood samples drawn 0, 24, 48 and 72 hours after HCG administration.

Time frame: After 12 weeks of salsalate administration

Population: Only 13 of the 25 participants who entered the protocol completed the study consisting of 6 participants assigned to the Experimental: Salsalate-Treated PCOS arm and 7 participants assigned to the Placebo Comparator: Placebo-Treated PCOS arm. The remaining 12 participants did not complete the study consisting of 8 participants assigned to the Experimental: Salsalate-Treated PCOS arm and 4 participants assigned to the Placebo Comparator: Placebo-Treated PCOS arm.

ArmMeasureValue (MEAN)Dispersion
Experimental: Salsalate-Treated PCOSAim 1: HCG-stimulated Testosterone Area Under the Curve4458 Nonograms*Hour per Deciliter (ng*hr/dL)Standard Error 717
Placebo Comparator: Placebo-Treated PCOSAim 1: HCG-stimulated Testosterone Area Under the Curve7775 Nonograms*Hour per Deciliter (ng*hr/dL)Standard Error 539
p-value: <0.004Unpaired t-test, 2-Sided
Primary

Aim 2: Lipid-stimulated NFкB Activation

Data was generated from the post-treatment cream challenge test. Quantified in nuclear extracts by oligonucleotide-based ELISA (Active Motif, Carlsbad, CA) in mononuclear cells isolated from blood samples drawn while fasting (0 hour) and 2 hours after cream ingestion. Percent change was calculated using the 2 hour NFкB band intensity value determined by densitometry minus the 0 hour NFкB band intensity value divided by the 0 hour NFкB band intensity value, multiplied by 100.

Time frame: After 12 weeks of salsalate or placebo administration

Population: Only 13 of the 25 participants who entered the protocol completed the study consisting of 6 participants assigned to the Experimental: Salsalate-Treated PCOS arm and 7 participants assigned to the Placebo Comparator: Placebo-Treated PCOS arm. The remaining 12 participants did not complete the study consisting of 8 participants assigned to the Experimental: Salsalate-Treated PCOS arm and 4 participants assigned to the Placebo Comparator: Placebo-Treated PCOS arm.

ArmMeasureValue (MEAN)Dispersion
Experimental: Salsalate-Treated PCOSAim 2: Lipid-stimulated NFкB Activation37 Percent ChangeStandard Error 7
Placebo Comparator: Placebo-Treated PCOSAim 2: Lipid-stimulated NFкB Activation89 Percent ChangeStandard Error 17
p-value: <0.03Unpaired T-test, 2-Sided
Secondary

Aim 1: Basal Androstenedione Level

Serum measurement by ELISA (ALPCO Diagnostics, Salem, NH)

Time frame: After 12 weeks of salsalate or placebo administration

Population: Only 13 of the 25 participants who entered the protocol completed the study consisting of 6 participants assigned to the Experimental: Salsalate-Treated PCOS arm and 7 participants assigned to the Placebo Comparator: Placebo-Treated PCOS arm. The remaining 12 participants did not complete the study consisting of 8 participants assigned to the Experimental: Salsalate-Treated PCOS arm and 4 participants assigned to the Placebo Comparator: Placebo-Treated PCOS arm.

ArmMeasureValue (MEAN)Dispersion
Experimental: Salsalate-Treated PCOSAim 1: Basal Androstenedione Level2.42 Nanograms per Milliliter (ng/mL)Standard Error 0.54
Placebo Comparator: Placebo-Treated PCOSAim 1: Basal Androstenedione Level3.69 Nanograms per Milliliter (ng/mL)Standard Error 0.15
p-value: <0.04Unpaired t-test, 2-Sided
Secondary

Aim 1: Basal Testosterone Level

Serum measurement by chemiluminescence (Siemens Immulite 2000, Cary, NC).

Time frame: After 12 weeks of salsalate or placebo administration

Population: Only 13 of the 25 participants who entered the protocol completed the study consisting of 6 participants assigned to the Experimental: Salsalate-Treated PCOS arm and 7 participants assigned to the Placebo Comparator: Placebo-Treated PCOS arm. The remaining 12 participants did not complete the study consisting of 8 participants assigned to the Experimental: Salsalate-Treated PCOS arm and 4 participants assigned to the Placebo Comparator: Placebo-Treated PCOS arm.

ArmMeasureValue (MEAN)Dispersion
Experimental: Salsalate-Treated PCOSAim 1: Basal Testosterone Level38 Nanograms per Deciliter (ng/dL)Standard Error 6
Placebo Comparator: Placebo-Treated PCOSAim 1: Basal Testosterone Level67 Nanograms per Deciliter (ng/dL)Standard Error 3
p-value: <0.002Unpaired T-test, 2-Sided
Secondary

Aim 1: HCG-stimulated Androstenedione Area Under the Curve

Data was generated from the post-treatment HCG stimulation test. Area under the curve calculated for serum measurements by ELISA (ALPCO Diagnostics, Salem, NH) from blood samples drawn 0, 24, 48 and 72 hours after HCG administration.

Time frame: After 12 weeks of salsalate or placebo administration

Population: Only 13 of the 25 participants who entered the protocol completed the study consisting of 6 participants assigned to the Experimental: Salsalate-Treated PCOS arm and 7 participants assigned to the Placebo Comparator: Placebo-Treated PCOS arm. The remaining 12 participants did not complete the study consisting of 8 participants assigned to the Experimental: Salsalate-Treated PCOS arm and 4 participants assigned to the Placebo Comparator: Placebo-Treated PCOS arm.

ArmMeasureValue (MEAN)Dispersion
Experimental: Salsalate-Treated PCOSAim 1: HCG-stimulated Androstenedione Area Under the Curve224 Nanograms*Hour per Milliliter (ng*hr/mL)Standard Error 24
Placebo Comparator: Placebo-Treated PCOSAim 1: HCG-stimulated Androstenedione Area Under the Curve405 Nanograms*Hour per Milliliter (ng*hr/mL)Standard Error 39
p-value: <0.003Unpaired t-test, 2-Sided
Secondary

Aim 1: Insulin Sensitivity (SI)

Data was generated from the post-treatment frequently-sampled intravenous glucose tolerance test (FS-IVGTT). Calculated using the Bergman minimal model (Am J Physiol 1979, 236:E667-E677) from serum insulin measurements using blood samples drawn while fasting at -20, -10, -1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 10, 12, 14, 16, 19, 22, 23, 24, 25, 27, 30, 40, 50, 60, 70, 80, 90, 100, 120, 150, 180 and 240 minutes.

Time frame: After 12 weeks of salsalate or placebo adminitration

Population: Only 13 of the 25 participants who entered the protocol completed the study consisting of 6 participants assigned to the Experimental: Salsalate-Treated PCOS arm and 7 participants assigned to the Placebo Comparator: Placebo-Treated PCOS arm. The remaining 12 participants did not complete the study consisting of 8 participants assigned to the Experimental: Salsalate-Treated PCOS arm and 4 participants assigned to the Placebo Comparator: Placebo-Treated PCOS arm.

ArmMeasureValue (MEAN)Dispersion
Experimental: Salsalate-Treated PCOSAim 1: Insulin Sensitivity (SI)2.63 Microunits/Milliliter/Minute (µU/mL/min)Standard Error 0.43
Placebo Comparator: Placebo-Treated PCOSAim 1: Insulin Sensitivity (SI)3.71 Microunits/Milliliter/Minute (µU/mL/min)Standard Error 0.61
p-value: 0.18Unpaired t-test, 2-Sided
Secondary

Aim 2: Lipid Stimulated ROS Generation

Data was generated from the post-treatment cream challenge test. Measured by chemiluminescence in mononuclear cells isolated from blood samples drawn while fasting (0 hour) and 2 hours after cream ingestion. Percent change was calculated using the 2 hour ROS value (mV) minus the 0 hour ROS value (mV) divided by the 0 hour ROS value (mV), multiplied by 100.

Time frame: After 12 weeks of salsalate or placebo administration

Population: Only 13 of the 25 participants who entered the protocol completed the study consisting of 6 participants assigned to the Experimental: Salsalate-Treated PCOS arm and 7 participants assigned to the Placebo Comparator: Placebo-Treated PCOS arm. The remaining 12 participants did not complete the study consisting of 8 participants assigned to the Experimental: Salsalate-Treated PCOS arm and 4 participants assigned to the Placebo Comparator: Placebo-Treated PCOS arm.

ArmMeasureValue (MEAN)Dispersion
Experimental: Salsalate-Treated PCOSAim 2: Lipid Stimulated ROS Generation31 Percent ChangeStandard Error 8
Placebo Comparator: Placebo-Treated PCOSAim 2: Lipid Stimulated ROS Generation95 Percent ChangeStandard Error 8
p-value: <0.0004Unpaired t-test, 2-Sided
Secondary

Aim 2: Lipid-stimulated TNFα Secretion

Data was generated from the post-treatment cream challenge test. Measured in culture supernatants by ELISA (Quantikine, R&D Systems, Minneapolis, MN) in mononuclear cells isolated from blood samples drawn while fasting (0 hour) and 2 hours after cream ingestion. Absolute change was calculated using the 2 hour TNFα value (pg/mL) minus the 0 hour TNFα value (pg/mL).

Time frame: After 12 weeks of salsalate or placebo administration

Population: Only 13 of the 25 participants who entered the protocol completed the study consisting of 6 participants assigned to the Experimental: Salsalate-Treated PCOS arm and 7 participants assigned to the Placebo Comparator: Placebo-Treated PCOS arm. The remaining 12 participants did not complete the study consisting of 8 participants assigned to the Experimental: Salsalate-Treated PCOS arm and 4 participants assigned to the Placebo Comparator: Placebo-Treated PCOS arm.

ArmMeasureValue (MEAN)Dispersion
Experimental: Salsalate-Treated PCOSAim 2: Lipid-stimulated TNFα Secretion7.9 Picograms per Milliliter (pg/mL)Standard Error 1.3
Placebo Comparator: Placebo-Treated PCOSAim 2: Lipid-stimulated TNFα Secretion15.1 Picograms per Milliliter (pg/mL)Standard Error 1.6
p-value: <0.007Unpaired t-test, 2-Sided

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