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Natural Cycles With Spontaneous Versus Induced Ovulation in FET

Frozen-Thawed Embryo Transfers: a Comparison Between Natural Cycles With Spontaneous or Induced Ovulation

Status
Completed
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT03581422
Enrollment
2866
Registered
2018-07-10
Start date
2012-01-01
Completion date
2017-12-31
Last updated
2018-07-19

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

Conditions

Embryo Transfer

Brief summary

In recent years, frozen-thawed embryo transfer procedure (FET) has been widely used to increase the cumulative pregnancy rate per IVF-cycle: which is the best preparation protocol remains a matter of debate. A retrospective analysis was conducted between 2012-2017. The aim was comparing clinical pregnancy rate (CPR) of pure natural cycle frozen-thawed embryo transfer (NC-FET) versus natural cycle frozen-thawed embryo transfer with hCG-triggered ovulation (mNC-FET).

Detailed description

Compared to repeated oocyte retrieval procedure, frozen-thawed embryo transfer (FET) has been widely used to increase the cumulative pregnancy rate per IVF-cycle, with demonstrated superiority in preventing ovarian hyperstimulation syndrome and improving cost-efficiency and time to pregnancy. It is controversial whether triggering ovulation of the dominant follicle using human chorionic gonadotrophin (hCG) may benefit or reduce embryo implantation, when compared with a natural cycle environment. Unfavourable clinical outcomes of controlled ovarian stimulation have been reported by recently published studies, compared to the spontaneous LH surge. This study aimed to compare the effectiveness in terms of better clinical pregnancy rates (CPR) of pure natural cycle frozen-thawed embryo transfer (NC-FET) versus natural cycle frozen-thawed embryo transfer modified by HCG administration\\with hCG-triggered ovulation (mNC-FET). A retrospective analysis was conducted between 2012-2017. In patients with regular ovulatory cycles, the timing of embryo thawing and transferring was based on spontaneous LH surge (NC-FET). Patients attended for ultrasound evaluation of the dominant follicle from Day 8 to 10 of their menstrual cycle (depending on cycle length), detecting luteinizing hormone (LH) surge in urine/ taking an ovulation test for urinary LH measurement. In selected cases, a serum assays of LH, progesterone and estradioI has been further obtained. When the endometrial thickness reached 8 mm and dominant follicle 16-20 mm in diameter, hCG was administered in absence of urinary LH surge. Embryo thawing and transfer was planned 7 days after LH surge or HCG administration, whether G5 or G6 blastocyst. Exogenous progesterone supplementation started 2 days after hCG administration versus the same day of embryo transfer procedure in NC- ET. To limit potential confounders, only single blastocyst transfer cycles were included, vitrified on Days 5 or 6, excluding PGT-a (Pre Gestational Test for aneuploydia) cycles and cleavage stage embryo transfers. A unilevel and multi level logistic regression analysis was conducted using Stata Software versione15.

Interventions

DRUGhCG administration before embryo transfer

Thawed embryo transfer with ovulation triggered by hCG

Sponsors

Istituto Clinico Humanitas
Lead SponsorOTHER

Study design

Observational model
CASE_CONTROL
Time perspective
RETROSPECTIVE

Eligibility

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

Inclusion criteria

* only single blastocyst transfer cycles were included

Exclusion criteria

* PGT-a cycles and cleavage stage embryo transfers

Design outcomes

Primary

MeasureTime frameDescription
CPR in NCFET vs mNCFET2012-2017compare the effectiveness in terms of better clinical pregnancy rates (CPR) of pure natural cycle frozen-thawed embryo transfer (NC-FET) versus natural cycle frozen-thawed embryo transfer modified by HCG administration

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 18, 2026