no luteal support
DrugIn one arm of the study the patients receive no luteal support as part of their modified natural cycle frozen embryo transfer.
NCT Number: NCT06875752
Without progesterone there is no pregnancy. Following ovulation, the endocrine function of the follicle changes and progesterone replacing estradiol becomes its main secretory product. In the follicular phase the increasing amount of estradiol secreted by the growing follicle builds up the endometrium, while in the luteal phase progesterone, the main product of the corpus luteum, prepares the endometrium for implantation. This process is called decidualization. If implantation occurs, human chorionic gonadotropin (hCG) secreted by the trophopblasts maintains the function of the corpus luteum. This continued activity is required to be maintained up to week 7-9 of gestation when the hormone secreting activity is taken over by the placenta (luteo-placental shift) and the corpus luteum regresses.
During in vitro fertilization (IVF) gonadotropins are used to induce multifollicular development and therefore following the oocyte retrieval ("ovulation") multiple corpora lutea are formed. At the same time, partly due to the supraphysiologic steroid levels reached during stimulation and partly to the removal of the granulosa cell mass during the retrieval, the activity of these corpora lutea remains insufficient and luteal support, primarily in the form of progesterone, is needed to achieve success.
Embryo cryopreservation has become available soon after the first successful IVF treatment. In some of the IVF treatments cryopreservation is electively planned, while in others surplus embryos are frozen. As a result of the currently available vitrification technology a close to 100% survival can be expected upon thawing.
Frozen embryos can be transferred according to different protocols:
1. True natural cycle FET (tNC-FET): in these cases, spontaneous follicle growth is followed by spontaneous ovulation and the timing of the embryo transfer (ET) is timed according to the spontaneous luteinizing hormone (LH) surge 2. Modified natural cycle FET (mNC-FET): in these cases, follicle growth is spontaneous but ovulation is induced with hCG injection as soon as the follicle reaches maturity and the ET is timed to the trigger injection 3. Stimulated cycle FET (sNC-FET): in these cases, follicle growth is induced with oral agents or gonadotropins and once the lead follicle reaches maturity hCG injection is given to induce ovulation and the ET is timed to the trigger injection 4. Artificial, hormone replacement cycle (HRT-FET): in these cases, the ovaries are not active but estradiol is given to build up the endometrium and once proper thickness is reached progesterone is added to prepare to implantation According to the available evidence the different approaches are equally effective. The common theme in mNC, tNC and sNC FET cycles is that a corpus luteum is formed and its activity is not compromised by supraphysiologic steroid levels and the oocyte retrieval either. Despite this, in most clinics, similarly to the fresh IVF-ETs, luteal support is administered in FET cycles as well. The benefit of luteal support in NC-FET cycles is questionable, however. The available literature is inconclusive whether there is a need for luteal support in mNC-FET treatments? In order to answer this question, the investigators plan to perform a prospective, multicenter randomized pilot study.
Eligible participants will be randomized to one of the following groups:
1. No luteal support 2. 2x200 mg vaginal progesterone luteal support (Utrogestan) starting on the day of ET 3. 2x200 mg vaginal progesterone luteal support (Utrogestan) starting on the day of ET + 125 mcg rHCG s.c. (1/2 amp Ovitrelle) on the day of ET and 62.5 mcg rHCG s.c. (1/4 amp Ovitrelle) 4 days later.
Baseline demographic, FET treatment related, and clinical outcomes will be compared in the three different luteal phase management groups.
Interested in participating?
Request Info18 year–40 year
Female
Interventional
Phase 4
Dunamenti REK Istenhegyi IVF Center, Budapest, Hungary
Aim: The aim of this RCT is to assess whether the use of luteal support improves the outcome of modified natural cycle frozen embryo transfer (FET) treatments.
Background: Without progesterone there is no pregnancy. Following ovulation, the endocrine function of the follicle changes and progesterone replacing estradiol becomes its main secretory product. In the follicular phase the increasing amount of estradiol secreted by the growing follicle builds up the endometrium, while in the luteal phase progesterone, the main product of the corpus luteum, prepares the endometrium for implantation. This process is called decidualization. If implantation occurs, human chorionic gonadotropin (hCG) secreted by the trophopblasts maintains the function of the corpus luteum. This continued activity is required to be maintained up to week 7-9 of gestation when the hormone secreting activity is taken over by the placenta (luteo-placental shift) and the corpus luteum regresses.
During in vitro fertilization (IVF) gonadotropins are used to induce multifollicular development and therefore following the oocyte retrieval ("ovulation") multiple corpora lutea are formed. At the same time, partly due to the supraphysiologic steroid levels reached during stimulation and partly to the removal of the granulosa cell mass during the retrieval, the activity of these copora lutea remains insufficient and luteal support, primarily in the form of progesterone, is needed to achieve success.
Embryo cryopreservation has become available soon after the first successful IVF treatment. In some of the IVF treatments cryopreservation is electively planned, while in others surplus embryos are frozen. As a result of the currently available vitrification technology a close to 100% survival can be expected upon thawing.
Frozen embryos can be transferred according to different protocols:
The common theme in mNC, tNC and sNC FET cycles is that a corpus luteum is formed and its activity is not compromised by supraphysiologic steroid levels and the oocyte retrieval either. Despite this, in most clinics, similarly to the fresh IVF-ETs, luteal support is administered in FET cycles as well. The benefit of luteal support in NC-FET cycles is questionable, however. Various groups have studied the potential advantages of luteal support in the different types on NC-FET cycles.
One study has shown that the chance of live birth was reduced (25.7% vs 41.1%) in tNC FET cycles when the serum progesterone level was below 10 ng/ml. Another study, based on the outcome of close to 400 FET cycles, failed to find a benefit with luteal support. Based on the outcome of different types of FET cycles however, they observed a lower live birth rate when the serum progesterone level was below 7.8 ng/ml. Finally, they also observed suboptimal outcome when the serum progesterone level was over 20.3 ng/ml. Finally, a different group, did not find a difference in the progesterone levels among pregnant and non-pregnant participants not using luteal support in an RCT. They were also unable to identify a progesterone level that could discriminate among pregnant and non-pregnant women.
Several RCTs evaluated the potential benefits of luteal support. One research group has randomly assigned women to luteal support vs no luteal support in an RCT of mNC-FET. Clinical pregnancy, miscarriage and live birth rates were similar in the two groups. Another group, in a study of similar design also failed to show improved clinical outcome with luteal support in mNC-FET cycles. Two larger RCTs of tNC-FET however have reported improved clinical outcome with luteal support. Meta-analyses have reported conflicting results. One has shown improved live birth rate with luteal support in tNC-FET while found no benefit in mNC-FET cycles. Whiel two other meta-analyses have found higher clinical pregnancy rates in cycles with progesterone support. In summary, one can conclude that the literature is conflicting on the benefits of luteal support in mNC-FET cycles and even discuss a potential negative effect of high serum progesterone levels.
Based on the above the question arises whether there is a need for luteal support in mNC-FET treatments? Study protocol: In order to answer this question, the investigators plan to perform a prospective, multicenter randomized pilot study.
The investigators plan to enroll women between the ages of 18-40 (at the time of vitrification) who have at least one good morphology blastocyst (BC) frozen (morphology 2AA, 2AB, 2BA, 2BB, 3AA, 3AB, 3BA, 3BB, 4AA, 4AB, 4BA, 4BB, 5AA, 5AB, 5BA, 5BB using the Gardner classification) and who plan to undergo single frozen-thawed blastocyst transfer. In addition, the following inclusion criteria apply:
The following exclusion criteria will apply:
Treatment protocol:
Blinding: neither the participants, nor the investigators will be blinded for assignment.
Placebo: the study will not involve the use of placebo. Drop-out: Participants who do not reach the hCG trigger day despite signing a consent form drop out of the study (true dropouts) and will not be randomized. Those who are randomized but do not have an ET for no available embryo to transfer after thawing, or other reasons will be kept in the intent-to-treat analysis but will not be considered in the per protocol analysis.
Sample size calculation: Since it is not known what the expected pregnancy rate without luteal support would be and whether that would be any different compared to treatments involving luteal support as a first step, the investigators plan a pilot study. The goal is to have 180 patients sign informed consent (60 potential patients per arm). 20% of the participants are expected not to reach the ET (lack of follicle development, other complications prior to the day of ET, no available embryos after thawing) that would leave the study with 150 patients treated per protocol.
Data collection: Data will be collected in structured Excel files. No patient identifying parameter (name, ID number) will be included just the randomization number. The name associated with the randomization number will be collected in a separate file by the sub investigator and will not be forwarded to the principal investigator. The principal investigator will only receive the anonymized data, and the combined anonymous dataset will be shared with the statistician. The following parameters will be collected:
Definitions:
Statistical analysis: Baseline demographic, FET treatment related, and clinical outcomes will be compared in the three different luteal phase management groups. Continuous variables will be shown as mean +/- SD, while categorical variable as number and percent. ANOVA and Mann-Whitney U test will be used for the analysis. Subgroups analysis is planned based on progesterone levels both prior to the trigger (31.8-50, 50-100, >100 nmol/l.) and 6-8 days after the trigger (< 31.8, 31.8-50, 50-100, >100 nmol/l). analysis will be performed based on intent-to-treat and per protocol as well. Post hoc comparison of the different treatment groups to each other will be performed.
References:
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
In one arm of the study the patients receive no luteal support as part of their modified natural cycle frozen embryo transfer.
In the 2nd arm the patient receives 2x200 mg vaginal progesterone as luteal support.
In the 3rd arm the patients receive 2x200 mg vaginal progesteroen plus 125 mcg recombinant HCG s.c. on the day of embryo transfer and 62.5 mcg recombinant HCG s.c. 4 days later.
Other names: Utrogestan
Time frame: up to 3 months after the embryo transfer; starting with the first patient who has a positive pregnancy test after the frozen embryo transfer and up to 3 months after the completion of the study (last frozen embryo transfer)i.e.: last embryo transfer
live intrauterine pregnancy at week 9-12 of gestation
Contact information is provided by the study sponsor or research team.
Peter Kovacs MD medical director Dunamenti REK Istenhegyi IVF Center, MD, PhD
CONTACT
Dunamenti REK Istenhegyi IVF Center
Other
Is There a Need for Luteal Support in Modified Natural Cycle Frozen Embryo Transfer Cycles: a Prospective, Multicenter, Randomized Trial
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