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The Effect of a Higher Dose of Dehydroepiandrosterone (DHEA) Supplementation in Poor Responders

The Effect of a Higher Dose of Dehydroepiandrosterone (DHEA) Supplementation on the Number of Oocytes Obtained During IVF in Poor Ovarian Responders

Status
Terminated
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02357472
Acronym
DHEA
Enrollment
60
Registered
2015-02-06
Start date
2014-01-01
Completion date
2015-01-01
Last updated
2025-06-24

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

Conditions

Infertility

Keywords

Reproductive aging, DHEA, poor ovarian responder

Brief summary

The supplementation of Dehydroepiandrosterone (DHEA) has been used in some centers for patients with previous poor ovarian reserve and response in an attempt to improve pregnancy outcomes. However, there still has controversy on the clinical effect on the 75mg/d for the use,especially in Asian people. Whether the double dosage of DHEA in patients with poor ovarian reserve and response in China can improve the IVF outcome with little side effect is unknown. The aim of this randomized controlled study is to compare the effect of a higher dose (150mg daily) and a standard dose (75mg daily) of DHEA on the number of oocytes obtained in poor ovarian responders. The effect of DHEA action on the cumulus cells will be examined.

Detailed description

Consecutive infertile women attending the subfertility clinic at Shang Hai Ji Ai Genetics &IVF Institute for IVF treatment will be approached. Those fulfilling the selection criteria stated below would be recruited and a written consent will be obtained after detailed explanation and counseling. Poor ovarian responders are defined according to the Bologna criteria fulfilling 2 out of 3 of the following: (i) Advanced maternal age (\>/= 40) or any other genetic or acquired risk factor for poor ovarian response(POR); (ii) Previous poor ovarian response (POR) (\</= 3 oocytes with a conventional stimulation protocol using at least 150 international units (IU) gonadotrophins per day) (iii) Abnormal ovarian reserve test \[i.e. antral follicle count (AFC) \< 5-7 or antimüllerian hormone (AMH) \< 0.5 - 1.1ng/ml\] Alternatively, two episodes of POR after maximal stimulation are sufficient to define a patient as poor responder in the absence of advanced maternal age or abnormal ovarian reserve test(ORT). Baseline assessment will be performed at early follicular phase (Day 2 or 3) at recruitment. Patient characteristics including age, Body Mass Index (BMI), and smoking status would be recorded and blood test including follicular stimulating hormone (FSH), estradiol (E2), testosterone, DHEA-S, full blood count, renal and liver function test would be checked. Pelvic scan will be performed to assess the total AFC and total ovarian volume. Subjects will be randomized divided into two groups: 1. Standard dose group: Subjects will take DHEA (Lab Hercules™) 25mg three times a day for 12 weeks prior to the start of IVF treatment till the day of egg collection. 2. High dose group: Subjects will taking DHEA (Lab Hercules™) 50mg three times a day for 12 weeks prior to the start of IVF treatment till the day of egg collection. Hormonal profile, ultrasound assessment, full blood count, renal and liver function test will be repeated in follicular phase (D2 or 3) of every month or cycle followed by a IVF treatment using antagonist protocol based on our standard departmental regimen. The human menopausal gonadotropin (hMG) injections were started at 300 international units (IU) for 2 days followed by 300 international units (IU) daily. Improvement of ovarian reserve markers would be assessed by the change in serum AMH between the time of recruitment and that after 6 and 12 weeks of DHEA. Cycle characteristics including the dose of gonadotrophins use, duration of stimulation, number of oocytes obtained, number of fertilized embryos and good quality embryos will be recorded and follicular fluid will be saved for hormonal profiles. Statistics 1. Statistical tests Statistical comparisons will be performed according to the intention to treat principle by Student t test or Fisher's exact tests for normally distributed data and Mann-Whitney test for skewed data. Chi-square test would be used for binary variables. Statistical analyses will be performed using the Statistical Package for (the) Social Sciences (SPSS) software and a P-value of 0.05 would be considered statistically significant. Linear regression analysis / logistic regression analysis curve would be used to evaluate the age, BMI, smoking, FSH, E2, AMH, testosterone, DHEA-S, AFC, ovarian volume and duration of DHEA use for the prediction of improved ovarian reserve after DHEA supplementation. 2. Sample size estimation The number of oocytes retrieved will be used as the primary outcome of the study. Based on our own database for patients undergoing IVF treatment, the mean oocytes obtained was 2.7 with a standard deviation (SD) of 1.4. Assuming an increase of oocytes obtained by 1.0 to be clinically significant, 18 subjects in each arm would be required to achieve a test of significance of 0.05 and a power of 0.8. Considering possible dropouts, we aim at recruiting 18 patients in each arm, i.e. 36 patients. In order to compare one of the secondary outcome -- AMH (which has more relevance on the effect of ovarian response) with adequate power, based on our own database for patients undergoing IVF treatment, the mean AMH of the group with poor ovarian reserve is 0.8 with a SD of 0.6. Assuming an increase of number of oocyte retrieved by 0.5 to be clinically significant, 25 subjects in each arm would be required to achieve a test of significance of 0.01 and a power of 0.9. Totally 50 patients.

Interventions

DIETARY_SUPPLEMENTdehydroepiandrosterone

high dose group treatment represent for 50mg t.i.d. Patients in these group will take one capsule each time and three times a day for three months before entering into IVF cycles.

Sponsors

ShangHai Ji Ai Genetics & IVF Institute
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
HEALTH_SERVICES_RESEARCH
Masking
DOUBLE (Subject, Investigator)

Eligibility

Sex/Gender
FEMALE
Age
22 Years to 45 Years
Healthy volunteers
No

Inclusion criteria

1. age\<45 years, 2. subfertility \>1 year, and 3. A previous POR (≤3 oocytes with a conventional stimulation protocol of at least 150 IU FSH per day); or 4. An abnormal ovarian reserve test (i.e. AFC ≤5-7 follicles or AMH ≤0.5-1.1 ng/ml).

Exclusion criteria

Patients were excluded if they: 1. had a history of ovarian cystectomy or oophorectomy, 2. had received cytotoxic chemotherapy, 3. had received pelvic irradiation, or 4. had a history of taking testosterone or DHEA supplementation

Design outcomes

Primary

MeasureTime frameDescription
The Number of Oocytes ObtainedAfter taking DHEA for 12 weeksAfter 12 weeks treatment, the number of oocytes obtained will be detected from the higher dose group and standard dose group

Secondary

MeasureTime frameDescription
E212 weeks after taking DHEASerum E2 levels
The Number of Follicles>10mm12 weeks after taking DHEAThe number of follicles\>10mm represent for the ovarian reserve and response
AMHbaseline and 12 weeksThe change of AMH levels in serum
Testosterone12 weeks after taking DHEA
Dehydroepiandrosterone-Sulfide (DHEA-S)12 weeks after taking DHEA
Insulin-like Growth Factor-1 (IGF-1)12 weeks after taking DHEA
AFCAfter taking DHEA for 12 weeksAntral follicle count (AFC)
Follicle Stimulating Hormone (FSH) Levels12 weeks after taking DHEAThe change of FSH levels in the three groups.

Other

MeasureTime frameDescription
the Numbers of Fertilized Embryos12 weeks after taking DHEA
the Numbers of Cleaved EmbryosAfter taking DHEA for 12 weeks
the Numbers of Top-quality Embryos.12 weeks after taking DHEAtop-quality embryos are represented for \>7cell on Day 3 and the fragments \<20%
The Number of Mature Oocytes Obtainedup to 12 weeks
Pregnancy Rate2 weeks after transferThe rate of clinical pregnancy

Countries

China

Participant flow

Participants by arm

ArmCount
High Dose Group
dehydroepiandrosterone,DHEA,capsule, 50mg/capsule, one capsule t.i.d.. dehydroepiandrosterone: high dose group treatment represent for 50mg t.i.d and standard dose group represents for normal treatment with 25mg t.i.d. Each patients in these two group will take one capsule each time and three times a day for three months before entering into IVF cycles.
30
Standard Dose Group
dehydroepiandrosterone,DHEA, capsule, 25mg/capsule, one capsule t.i.d. dehydroepiandrosterone: high dose group treatment represent for 50mg t.i.d and standard dose group represents for normal treatment with 25mg t.i.d. Each patients in these two group will take one capsule each time and three times a day for three months before entering into IVF cycles.
30
Total60

Baseline characteristics

CharacteristicHigh Dose GroupStandard Dose GroupTotal
Age, Categorical
<=18 years
0 Participants0 Participants0 Participants
Age, Categorical
>=65 years
0 Participants0 Participants0 Participants
Age, Categorical
Between 18 and 65 years
30 Participants30 Participants60 Participants
Age, Continuous38.40 years
STANDARD_DEVIATION 4.7
37.68 years
STANDARD_DEVIATION 5.4
38.3 years
STANDARD_DEVIATION 5.05
Sex: Female, Male
Female
30 Participants30 Participants60 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 / 300 / 30
serious
Total, serious adverse events
0 / 300 / 30

Outcome results

Primary

The Number of Oocytes Obtained

After 12 weeks treatment, the number of oocytes obtained will be detected from the higher dose group and standard dose group

Time frame: After taking DHEA for 12 weeks

ArmMeasureValue (MEAN)Dispersion
High Dose GroupThe Number of Oocytes Obtained3.82 oocytesStandard Error 0.28
Standard Dose GroupThe Number of Oocytes Obtained2.51 oocytesStandard Error 0.22
Comparison: It was caculated that 60 paticipants randomized in a 1:1between 2 arms would would have at least 85% power to detect a difference of 1.32 oocytes between the high dose group and standard dose group after 12 weeks.Sample size was determined using 2 sided 2 sample t-test (α = 0.05).Assumptions included a common standard deviation of 1.72.p-value: 0.000395% CI: [0.6216, 2.002]t-test, 2 sided
Secondary

AFC

Antral follicle count (AFC)

Time frame: After taking DHEA for 12 weeks

Population: The patients who took DHEA for 12 weeks

ArmMeasureValue (MEAN)Dispersion
High Dose GroupAFC4.00 folliclesStandard Error 0.2
Standard Dose GroupAFC4.66 folliclesStandard Error 0.26
Secondary

AMH

The change of AMH levels in serum

Time frame: baseline and 12 weeks

ArmMeasureValue (MEAN)Dispersion
High Dose GroupAMH3.05 ng/mlStandard Deviation 0.42
Standard Dose GroupAMH1.62 ng/mlStandard Deviation 0.15
Secondary

Dehydroepiandrosterone-Sulfide (DHEA-S)

Time frame: 12 weeks after taking DHEA

ArmMeasureValue (MEAN)Dispersion
High Dose GroupDehydroepiandrosterone-Sulfide (DHEA-S)2.69 ug/mlStandard Deviation 0.24
Standard Dose GroupDehydroepiandrosterone-Sulfide (DHEA-S)1.75 ug/mlStandard Deviation 0.2
Secondary

E2

Serum E2 levels

Time frame: 12 weeks after taking DHEA

ArmMeasureValue (MEAN)Dispersion
High Dose GroupE251.88 pmol/LStandard Deviation 5.64
Standard Dose GroupE239.11 pmol/LStandard Deviation 4.44
Secondary

Follicle Stimulating Hormone (FSH) Levels

The change of FSH levels in the three groups.

Time frame: 12 weeks after taking DHEA

ArmMeasureValue (MEAN)Dispersion
High Dose GroupFollicle Stimulating Hormone (FSH) Levels12.84 IU/LStandard Deviation 0.99
Standard Dose GroupFollicle Stimulating Hormone (FSH) Levels11.69 IU/LStandard Deviation 0.83
Secondary

Insulin-like Growth Factor-1 (IGF-1)

Time frame: 12 weeks after taking DHEA

ArmMeasureValue (MEAN)Dispersion
High Dose GroupInsulin-like Growth Factor-1 (IGF-1)90.87 ng/mlStandard Deviation 6.5
Standard Dose GroupInsulin-like Growth Factor-1 (IGF-1)71.85 ng/mlStandard Deviation 4.39
Secondary

Testosterone

Time frame: 12 weeks after taking DHEA

ArmMeasureValue (MEAN)Dispersion
High Dose GroupTestosterone31.67 ng/dlStandard Deviation 2.6
Standard Dose GroupTestosterone31.59 ng/dlStandard Deviation 1.94
Secondary

The Number of Follicles>10mm

The number of follicles\>10mm represent for the ovarian reserve and response

Time frame: 12 weeks after taking DHEA

ArmMeasureValue (MEAN)Dispersion
High Dose GroupThe Number of Follicles>10mm8.24 folliclesStandard Deviation 0.32
Standard Dose GroupThe Number of Follicles>10mm3.71 folliclesStandard Deviation 0.24
Other Pre-specified

Pregnancy Rate

The rate of clinical pregnancy

Time frame: 2 weeks after transfer

ArmMeasureValue (NUMBER)
High Dose GroupPregnancy Rate7 percentage of pregnancy
Standard Dose GroupPregnancy Rate4 percentage of pregnancy
Other Pre-specified

The Number of Mature Oocytes Obtained

Time frame: up to 12 weeks

ArmMeasureValue (MEAN)Dispersion
High Dose GroupThe Number of Mature Oocytes Obtained4.1 oocytesStandard Deviation 0.24
Standard Dose GroupThe Number of Mature Oocytes Obtained1.93 oocytesStandard Deviation 0.27
Other Pre-specified

the Numbers of Cleaved Embryos

Time frame: After taking DHEA for 12 weeks

ArmMeasureValue (MEAN)Dispersion
High Dose Groupthe Numbers of Cleaved Embryos1.63 embryosStandard Deviation 0.19
Standard Dose Groupthe Numbers of Cleaved Embryos1.89 embryosStandard Deviation 0.23
Other Pre-specified

the Numbers of Fertilized Embryos

Time frame: 12 weeks after taking DHEA

ArmMeasureValue (MEAN)Dispersion
High Dose Groupthe Numbers of Fertilized Embryos1.70 embryosStandard Deviation 0.17
Standard Dose Groupthe Numbers of Fertilized Embryos1.92 embryosStandard Deviation 0.21
Other Pre-specified

the Numbers of Top-quality Embryos.

top-quality embryos are represented for \>7cell on Day 3 and the fragments \<20%

Time frame: 12 weeks after taking DHEA

ArmMeasureValue (MEAN)Dispersion
High Dose Groupthe Numbers of Top-quality Embryos.1.11 embryosStandard Deviation 0.15
Standard Dose Groupthe Numbers of Top-quality Embryos.0.85 embryosStandard Deviation 0.13

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