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The Effects of Vitamin D on Angiogenic Factors in Women With Polycystic Ovary Syndrome

The Effects of Vitamin D Supplementation on Transforming Growth Factor-beta1 and Vascular Endothelial Growth Factor in Vitamin D-Deficient Women With Polycystic Ovary Syndrome: A Randomized Placebo-Controlled Trial

Status
Completed
Phases
Phase 4
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02460380
Enrollment
93
Registered
2015-06-02
Start date
2013-10-31
Completion date
2015-03-31
Last updated
2018-10-12

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

Conditions

Polycystic Ovary Syndrome, Vitamin D Deficiency

Brief summary

Polycystic Ovary Syndrome (PCOS) affects 5 to 10% of women of reproductive age. It is characterized by a cluster of hyperandrogenism, hyperinsulinemia, menstrual dysfunction, hirsutism and infertility. Although the pathogenesis of PCOS is unknown, accumulating evidence suggests that the dysregulation of some angiogenic factors, such as transforming growth factor-β (TGF-β) and vascular endothelial growth factor (VEGF), may be implicated. TGF-βs and VEGF exert a diverse range of biological functions regulating cell proliferation, angiogenesis, fibroblast activation and tissue fibrosis. PCOS ovaries show all the hallmarks of TGF-β and VEGF upregulation, including increased collagen deposition in ovarian stroma and theca, supported by increased vascularity. Consistent with this, The investigators recently showed that TGF-β1 is increased in serum of PCOS women while its circulating receptor soluble endoglin (sENG) is decreased, resulting in greater TGF-β1 bioavailability. Furthermore, it has been shown that women with PCOS have increased VEGF levels in the serum and/or follicular fluid. PCOS patients also have decreased vitamin D levels, and vitamin D treatment has been previously shown to improve various clinical parameters in PCOS women, including glucose intolerance, hypertension and androgen levels. Interestingly, vitamin D has been shown to decrease TGF-β1 and VEGF levels in several diseases, including myelofibrosis and various human cancer cells. Therefore, the investigators hypothesize that vitamin D treatment of PCOS women will result in a decrease of serum TGF-β1 levels and/or VEGF levels concomitant with improvement in clinical disease parameters. In addition, the investigators hypothesize that improvement in clinical disease parameters will correlate with changes in serum VEGF levels and TGF-β1 bioavailability. Our aim in the present study is to investigate the effects of vitamin D treatment on serum VEGF and TGF-β1/sENG levels in PCOS women, and assess whether changes in these angiogenic factors following vitamin D treatment correlate with clinical disease in these women. For this end, PCOS patients who are vitamin D-deficient will be treated with vitamin D and their serum levels of VEGF, TGF-β1 and its sENG receptor will be measured before and after treatment. In addition, clinical disease parameters will be recorded before and 4 months after treatment, including serum glucose and insulin levels, serum androgen levels, and blood pressure. The proposed study aims to identify a putative link between vitamin D, VEGF, and TGF-β1 in the context of PCOS, and provide a novel molecular explanation for the beneficial clinical effects of vitamin D on PCOS patients.

Detailed description

This study is a randomized, single blind, placebo-controlled trial to evaluate the effect of vitamin D on vitamin D-deficient women with PCOS. 93 reproductive-aged women diagnosed with PCOS presenting to Maimonides Medical Center for annual check-up between October 2013 and March 2015 were screened for vitamin D deficiency (defined as 25 hydroxy-vitaminD \[25OH-D\] levels \<20 ng/mL). All participants signed the informed consent and the study was approved by the international review board (IRB) of Maimonides Medical Center. PCOS was diagnosed according to the Rotterdam Consensus (ESHRE/ASRM criteria), i.e. the presence of two of three criteria: oligo- or anovulation, signs of clinical hyperandrogenism, and/or biochemical signs of hyperandrogenism and polycystic ovaries on ultrasonography after exclusion of specific identifiable disorders (thyroid disorder, hyperprolactinemia, congenital adrenal hyperplasia, androgen-secreting tumors, and Cushing's syndrome). The investigators included women aged between 18 and 38 years who were not: 1) pregnant, postpartum, breastfeeding, or 2) taking any vitamin D supplements, metformin or any hormonal therapy. Interventions and blood collection: 68 women diagnosed with PCOS and vitamin D deficiency were enrolled. Participants were allocated to each group according to a computer-generated list using ratio 2/1 (Vitamin D/placebo). Women allocated to vitamin D group received one capsule 50.000 IU of vitamin D3 once weekly for eight weeks. The vitamin D supplementation regimen was extracted from the Endocrine Society guidelines. Women in the placebo group received once capsule of placebo once weekly for eight weeks. The placebo was prepared at Maimonides Medical Center's pharmacy. To ensure compliance, The investigators called each participant once weekly and reminded her to take her pill. Fasting blood samples were collected by venipuncture before starting and within two weeks after completing the treatment (vitamin D or placebo). Blood samples were allowed to clot for 30 minutes at room temperature before centrifugation at 1,200 rpm for 10 minutes. Serum was stored at -80°C in aliquots until assayed. The assays of all measured hormones, 25OH-D, VEGF, TGF-β1, sENG, and AMH: Serum 25OH-D levels were measured before and after completing the treatment. The levels were determined by the ADVIA Centaur vitamin D assay (Siemens Healthcare Diagnostics). Dehydroepiandrosterone sulfate (DHEAS), testosterone, sex hormone-binding globulin (SHBG), thyroid-stimulating hormone (TSH), follicle-stimulating hormone (FSH), and luteinizing hormone (LH) were measured using IMMULITE 2000 XPi immunoassay system (Siemens Healthcare USA). Insulin and prolactin concentrations were quantified by DXL 800 immunoassay analyzer according to manufacturer's protocols (Beckman Coulter). Insulin resistance was calculated according to the homeostatic model assessment (HOMA) (29) by using the following formula: Insulin resistance (HOMA IR) = \[fasting insulin (µU/mL) x fasting glucose (mmol/L)\]/22.5. 17OH-progesterone level was determined by ELISA assay (Eagle BioSciences). AMH concentration was measured using the ultrasensitive AMH/MIS CLIA kit (AnshLabs). TGF-β1 concentration was measured using Human TGF-beta1 Quantikine ELISA kit according to manufacturer's protocols (R&D Systems). sENG levels were quantified by Human Endoglin/CD105 Quantikine ELISA kit (R&D Systems). VEGF concentration was quantified using Human VEGF Quantikine ELISA kit according to manufacturer's protocols (R&D Systems). The inter-assay and intra-assay coefficients of variation for all assays were less than 10%. Clinical parameters: All the clinical parameters were evaluated before and four months after the completion of treatment. These parameters included blood pressure (BP), Ferriman-Gallwey score (FGS) (hirsutism score), acne status, and interval between periods. Statistical analysis: Data were tested for normality. All values were expressed as mean ± standard error of the mean (SEM). A paired student's t-test was used to compare pre- and post-treatment serum levels and clinical parameters. Correlation between changes in angiogenic factors and changes in clinical disease parameters was analyzed using Pearson's test and linear regression. X2-test was used to evaluate the changes in acne after treatment. SigmaStat (SPSS Science, Chicago, IL) was used for statistical analysis. P\<0.05 was considered to be statistically significant.

Interventions

DRUGVitamin D3

Women allocated to vitamin D arm received one capsule 50.000 IU of vitamin D3 once weekly for eight weeks.

OTHERPlacebo

Women in the placebo arm received once capsule of placebo once weekly for eight weeks

Sponsors

Maimonides Medical Center
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
SINGLE (Subject)

Eligibility

Sex/Gender
FEMALE
Age
18 Years to 38 Years
Healthy volunteers
No

Inclusion criteria

* Women with PCOS who have vitamin D deficiency (serum 25-hydroxyvitamin D\<20 ng/mL)

Exclusion criteria

* Pregnant, postpartum, breast feeding * Taking Metformin, vitamin D, or any hormonal therapy

Design outcomes

Primary

MeasureTime frameDescription
Effect of Vitamin D on Angiogenic FactorsBaseline (pre-treatment) and 8 weeks later (post-treatment)Serum TGF-β1/sENG ratio as a measure of TGF-β1 bioavailability

Secondary

MeasureTime frameDescription
The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSBaseline (pre-treatment) and 4 months later (two months after the completion of treatment)Interval between periods as a measure ovulatory dysfunction

Participant flow

Pre-assignment details

A total of 93 women were screened for vitamin D deficiency. Sixty-eight women were diagnosed with vitamin D deficiency and were included in the study and randomly allocated into the two groups.

Participants by arm

ArmCount
Vitamin D3
Women allocated to vitamin D3 group received one capsule 50.000 IU of vitamin D3 once weekly for eight weeks. Vitamin D3: Women allocated to vitamin D arm received one capsule 50.000 IU of vitamin D3 once weekly for eight weeks.
45
Placebo
Women in the placebo group received once capsule of placebo once weekly for eight weeks. Placebo: Women in the placebo arm received once capsule of placebo once weekly for eight weeks
23
Total68

Withdrawals & dropouts

PeriodReasonFG000FG001
Overall StudyWithdrawal by Subject105

Baseline characteristics

CharacteristicVitamin D3PlaceboTotal
Age, Continuous30.5 years
STANDARD_DEVIATION 6.4
29.6 years
STANDARD_DEVIATION 7.6
30.2 years
STANDARD_DEVIATION 6.8
Ethnicity (NIH/OMB)
Hispanic or Latino
31 Participants17 Participants48 Participants
Ethnicity (NIH/OMB)
Not Hispanic or Latino
14 Participants6 Participants20 Participants
Ethnicity (NIH/OMB)
Unknown or Not Reported
0 Participants0 Participants0 Participants
Region of Enrollment
United States
35 Participants18 Participants53 Participants
Sex: Female, Male
Female
35 Participants18 Participants53 Participants
Sex: Female, Male
Male
0 Participants0 Participants0 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
deaths
Total, all-cause mortality
— / —— / —
other
Total, other adverse events
0 / 350 / 18
serious
Total, serious adverse events
0 / 350 / 18

Outcome results

Primary

Effect of Vitamin D on Angiogenic Factors

Serum TGF-β1/sENG ratio as a measure of TGF-β1 bioavailability

Time frame: Baseline (pre-treatment) and 8 weeks later (post-treatment)

ArmMeasureGroupValue (MEAN)Dispersion
Vitamin D3Effect of Vitamin D on Angiogenic FactorsSerum TGF-β1/sENG before treatment6.7 ratioStandard Error 0.4
Vitamin D3Effect of Vitamin D on Angiogenic FactorsSerum TGF-β1/sENG after treatment5.9 ratioStandard Error 0.4
PlaceboEffect of Vitamin D on Angiogenic FactorsSerum TGF-β1/sENG before treatment5.6 ratioStandard Error 0.5
PlaceboEffect of Vitamin D on Angiogenic FactorsSerum TGF-β1/sENG after treatment5.5 ratioStandard Error 0.4
Primary

Effect of Vitamin D on Angiogenic Factors

Serum VEGF level

Time frame: Baseline (pre-treatment) and 8 weeks later (post-treatment)

ArmMeasureGroupValue (MEAN)Dispersion
Vitamin D3Effect of Vitamin D on Angiogenic FactorsSerum VEGF level before treatment1106.4 pg/mLStandard Error 36.5
Vitamin D3Effect of Vitamin D on Angiogenic FactorsSerum VEGF level after treatment965.3 pg/mLStandard Error 42.7
PlaceboEffect of Vitamin D on Angiogenic FactorsSerum VEGF level before treatment893.1 pg/mLStandard Error 90.2
PlaceboEffect of Vitamin D on Angiogenic FactorsSerum VEGF level after treatment866 pg/mLStandard Error 70.8
Secondary

The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOS

Interval between periods as a measure ovulatory dysfunction

Time frame: Baseline (pre-treatment) and 4 months later (two months after the completion of treatment)

ArmMeasureGroupValue (MEAN)Dispersion
Vitamin D3The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSInterval between periods before treatment80.2 DaysStandard Error 9.8
Vitamin D3The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSInterval between periods after treatment60 DaysStandard Error 6.7
PlaceboThe Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSInterval between periods before treatment79 DaysStandard Error 9
PlaceboThe Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSInterval between periods after treatment75 DaysStandard Error 9
Secondary

The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOS

Blood pressure

Time frame: Baseline (pre-treatment) and 4 months later (two months after the completion of treatment)

ArmMeasureGroupValue (MEAN)Dispersion
Vitamin D3The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSSystolic blood pressure before treatment112 mmHGStandard Error 1.9
Vitamin D3The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSSystolic blood pressure after treatment108 mmHGStandard Error 1
Vitamin D3The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSDiastolic blood pressure before treatment68.4 mmHGStandard Error 1.1
Vitamin D3The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSDiastolic blood pressure after treatment67.9 mmHGStandard Error 1.3
Vitamin D3The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSMean arterial pressure before treatment83 mmHGStandard Error 1.2
Vitamin D3The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSMean arterial pressure after treatment81 mmHGStandard Error 1.1
PlaceboThe Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSMean arterial pressure before treatment84 mmHGStandard Error 1.9
PlaceboThe Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSSystolic blood pressure before treatment113 mmHGStandard Error 2.8
PlaceboThe Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSDiastolic blood pressure after treatment67 mmHGStandard Error 1.6
PlaceboThe Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSSystolic blood pressure after treatment109 mmHGStandard Error 2.3
PlaceboThe Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSMean arterial pressure after treatment81 mmHGStandard Error 1.7
PlaceboThe Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSDiastolic blood pressure before treatment69 mmHGStandard Error 1.7
Secondary

The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOS

The homeostatic model assessment (HOMA) is a method used to quantify insulin resistance. Insulin resistance is a condition in which cells fail to respond to the normal actions of the hormone insulin. The HOMA index was calculated as the product of fasting plasma blood glucose and insulin divided by 22.5.

Time frame: Baseline (pre-treatment) and 8 weeks later (post-treatment)

ArmMeasureGroupValue (MEAN)Dispersion
Vitamin D3The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSInsulin resistance (HOMA-IR)before treatment2.07 HOMA IR scoreStandard Error 0.37
Vitamin D3The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSInsulin resistance (HOMA-IR) after treatment2.03 HOMA IR scoreStandard Error 0.22
PlaceboThe Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSInsulin resistance (HOMA-IR) after treatment1.52 HOMA IR scoreStandard Error 0.24
PlaceboThe Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSInsulin resistance (HOMA-IR)before treatment1.58 HOMA IR scoreStandard Error 0.3
Secondary

The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOS

Free testosterone

Time frame: Baseline (pre-treatment) and 8 weeks later (post-treatment)

ArmMeasureGroupValue (MEAN)Dispersion
Vitamin D3The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSFree testosterone before treatment0.59 ng/dLStandard Error 0.06
Vitamin D3The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSFree testosterone after treatment0.68 ng/dLStandard Error 0.06
PlaceboThe Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSFree testosterone before treatment0.61 ng/dLStandard Error 0.08
PlaceboThe Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSFree testosterone after treatment0.68 ng/dLStandard Error 0.11
Secondary

The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOS

Lipid profile

Time frame: Baseline (pre-treatment) and 8 weeks later (post-treatment)

ArmMeasureGroupValue (MEAN)Dispersion
Vitamin D3The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSLDL after treatment100 mg/dLStandard Error 4.1
Vitamin D3The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSHDL after treatment48 mg/dLStandard Error 2.6
Vitamin D3The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSTotal cholesterol before treatment183 mg/dLStandard Error 6.5
Vitamin D3The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSHDL before treatment46 mg/dLStandard Error 2.4
Vitamin D3The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSTotal cholesterol after treatment166 mg/dLStandard Error 11
Vitamin D3The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSLDH before treatment106 mg/dLStandard Error 6.1
Vitamin D3The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSTriglycerides after treatment117 mg/dLStandard Error 20
Vitamin D3The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSTriglycerides before treatment138 mg/dLStandard Error 22
PlaceboThe Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSTriglycerides after treatment98 mg/dLStandard Error 13
PlaceboThe Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSHDL before treatment47 mg/dLStandard Error 2.9
PlaceboThe Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSHDL after treatment50 mg/dLStandard Error 3.2
PlaceboThe Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSLDH before treatment103 mg/dLStandard Error 7.7
PlaceboThe Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSLDL after treatment101 mg/dLStandard Error 5.1
PlaceboThe Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSTotal cholesterol before treatment179 mg/dLStandard Error 9
PlaceboThe Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSTriglycerides before treatment113 mg/dLStandard Error 21
PlaceboThe Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSTotal cholesterol after treatment177 mg/dLStandard Error 6.3
Secondary

The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOS

Ferriman-Gallwey score is a method used to assess and quantify hirsutism in women. A total score \< 8 is considered normal whereas a score of 8 to 15 indicates mild hirsutism. A score \>15 indicates moderate or severe hirsutism.

Time frame: Baseline (pre-treatment) and 4 months later (two months after the completion of treatment)

ArmMeasureGroupValue (MEAN)Dispersion
Vitamin D3The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSFerriman-Gallwey score before treatment9.8 Scores on a scaleStandard Error 1.5
Vitamin D3The Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSFerriman-Gallwey score after treatment8.1 Scores on a scaleStandard Error 1.5
PlaceboThe Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSFerriman-Gallwey score before treatment8.1 Scores on a scaleStandard Error 1.4
PlaceboThe Effects of Vitamin D3 on Clinical Disease Parameters in Women With PCOSFerriman-Gallwey score after treatment7.6 Scores on a scaleStandard Error 1.5

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