IVF

Fresh or frozen embryo transfer

In conventional IVF, after oocyte retrieval and fertilisation, the best embryos are selected for immediate transfer to the uterus — the so-called “fresh” cycle. The remaining good-quality embryos are cryopreserved, so they can be transferred in a later thaw cycle if the fresh transfer does not result in pregnancy.

According to the data published by the large international IVF registries, the average pregnancy rate after a fresh-cycle embryo transfer is approximately 29%. A subsequent frozen-thaw transfer adds roughly 8% to the couple’s cumulative chance of pregnancy.

On the basis of these numbers alone, a superficial reading would conclude that fresh transfer is preferable. The comparison is, however, misleading: in conventional practice the embryos transferred in frozen cycles are by definition the ones not chosen for the fresh transfer — the lower-quality embryos. When the same embryos are evaluated under modern methodology — single embryo transfer, with or without PGT-A — the real “fresh versus frozen” comparison looks different.

Embryo selection for transfer

How has embryo cryopreservation evolved?

Earlier cryopreservation used slow freezing, with embryo survival rates after thaw of around 70%. The modern method of vitrification has raised survival rates to 95–99%. This advance is what made the “freeze-all” strategy practically viable — a strategy in which all embryos are cryopreserved and transferred in a subsequent cycle, rather than in the same stimulation cycle.

Does ovarian stimulation affect endometrial quality?

It is now well established that ovarian stimulation produces a non-physiological endometrium at both the histological and the gene-expression level, regardless of the type of stimulation used. In a subsequent frozen-thaw cycle, the endometrium does not carry the consequences of that pharmacological exposure, and implantation takes place in a more physiological environment.

Endometrium after ovarian stimulation

Is frozen-thaw transfer always preferable to fresh transfer?

The answer is not a simple “yes” for every patient. From the major randomised trials published in recent years, in women with polycystic ovary syndrome (PCOS) the freeze-all strategy significantly increases the live-birth rate (Chen 2016 NEJM; Wei 2019). By contrast, in women with normal ovarian response, live-birth rates are similar between freeze-all and fresh transfer (Shi 2018 NEJM; Vuong 2018 NEJM). In women with excessive ovarian response or elevated progesterone on the day of triggering, fresh transfer is associated with reduced implantation, and freeze-all has the advantage.

When is the freeze-all strategy recommended today?

The main indications are: risk of ovarian hyperstimulation syndrome (OHSS); polycystic ovary syndrome or high response to stimulation; planned preimplantation genetic testing (PGT-A), where freezing is needed to allow time for laboratory analysis; elevated progesterone on the day of triggering; a history of previous failed fresh-cycle transfers; and uterine findings during the stimulation cycle (polyp, fluid, thin endometrium).

Embryo cryopreservation by vitrification

How is the endometrium prepared for the frozen-thaw cycle?

Two protocols are in use. In a natural FET cycle, transfer is timed to the woman’s natural ovulation. In a programmed (hormone-replacement, HRT) FET cycle, the endometrium is prepared by administering oestradiol and progesterone. Recent data show that the natural cycle is associated with a lower risk of hypertensive disorders of pregnancy, and is preferred when the woman has regular, ovulatory cycles.

Do pregnancies from frozen-thaw transfers differ from those from fresh transfers?

Pregnancies arising from frozen-thaw transfer, compared with pregnancies after fresh transfer, are associated with a lower probability of intrauterine growth restriction, a lower probability of low birth weight (under 2,500 g), a lower probability of preterm delivery (under 37 weeks), and lower perinatal mortality. At the same time, there is an increased probability of a large-for-gestational-age baby (LGA) and — particularly with the programmed FET protocol — an increased risk of hypertensive disorders of pregnancy and pre-eclampsia. For this reason, the natural FET cycle is preferred whenever feasible.

Modern practice does not choose between “fresh” and “frozen” universally — it chooses on a case-by-case basis, taking into account ovarian response, progesterone on the day of triggering, the endometrium, and whether PGT-A is planned.

Embryo-transfer strategy selection

Summary.
The transition from slow freezing to vitrification has fundamentally changed the picture of embryo cryopreservation. In women with PCOS, a high response, elevated progesterone, or planned PGT-A, the freeze-all strategy is preferable. In women with a normal response and none of those indications, fresh and frozen-thaw cycles produce similar live-birth rates — and the choice is made on the basis of the obstetric benefits of the frozen cycle weighed against its risks (LGA, hypertensive disorders with the programmed protocol). When a frozen-thaw cycle is used, the natural-cycle protocol is preferred over the programmed protocol whenever feasible.