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Topic:Embryo Transfer

Embryo transfer in horses is a reproductive technology that involves collecting a fertilized embryo from a donor mare and implanting it into a recipient mare, which then carries the pregnancy to term. This technique allows for the production of multiple offspring from a single mare within a breeding season. The procedure includes several stages: synchronization of the donor and recipient mares' estrous cycles, collection of the embryo, and its subsequent transfer to the recipient mare. Embryo transfer is utilized to enhance genetic dissemination, preserve valuable genetics, and manage breeding schedules. This page aggregates peer-reviewed research studies and scholarly articles that explore the methods, efficiency, and applications of embryo transfer in equine reproduction.
Advancements in cryopreservation of domestic animal embryos.
Theriogenology    January 5, 2002   Volume 57, Issue 1 285-302 doi: 10.1016/s0093-691x(01)00672-0
Dobrinsky JR.The development of embryo freezing technologies revolutionized cattle breeding. Since then, advancements in cryobiology, cell biology, and domestic animal embryology have enabled the development of embryo preservation methodologies for our other domestic animal species, including sheep and goats. Recently, technologies have been developed to cryopreserve pig embryos, notorious for their extreme sensitivity to cooling; horse embryo cryopreservation is in its infancy. While cryopreservation can enhance the utilization of in vitro embryo production technologies, cryosurvival of in vitro-produced ...
Influence of co-culture during maturation on the developmental potential of equine oocytes fertilized by intracytoplasmic sperm injection (ICSI).
Reproduction (Cambridge, England)    May 25, 2001   Volume 121, Issue 6 925-932 
Li X, Morris LH, Allen WR.The influence of co-culture with either oviduct epithelial cells or fetal fibroblast cells on in vitro maturation of equine oocytes and their potential for development to blastocysts and fetuses after intracytoplasmic sperm injection (ICSI) was investigated. The oocytes were obtained from ovaries from abattoirs and were matured in vitro for 28-30 h in TCM-199 only, or in TCM-199 co-culture with oviduct epithelial cells or fetal fibroblast cells. Metaphase II oocytes were subjected to ICSI with an ionomycin-treated spermatozoon. The injected oocytes were cultured for 7-9 days in Dulbecco's modi...
Embryo production by ovum pick up from live donors.
Theriogenology    May 1, 2001   Volume 55, Issue 6 1341-1357 doi: 10.1016/s0093-691x(01)00486-1
Galli C, Crotti G, Notari C, Turini P, Duchi R, Lazzari G.Embryo production by in vitro techniques has increased steadily over the years. For cattle where this technology is more advanced and is applied more, the number of in vitro produced embryos transferred to final recipients was over 30,000 in 1998. An increasing proportion of in vitro produced embryos are coming from oocytes collected from live donors by ultrasound-guided follicular aspiration (ovum pick up, OPU). This procedure allows the repeated production of embryos from live donors of particular value and is a serious alternative to superovulation. Ovum pick up is a very flexible technique...
Treatments resulting in pregnancy in nonovulating, hormone-treated oocyte recipient mares.
Theriogenology    February 24, 2001   Volume 54, Issue 8 1285-1293 doi: 10.1016/s0093-691x(00)00435-0
Hinrichs K, Provost PJ, Torello EM.Synchronization of follicle growth between oocyte donor and recipient mares is difficult. To avoid this, recipient mares in a clinical program were used during a period of low follicular activity, and were treated with estrogen before transfer and progesterone after transfer. Five pregnancies were established after oocyte transfer to nonovulating, hormone-treated recipient mares. One pregnancy was lost before 30 d gestation, and the other 4 foals were carried to term. One foal died at birth. Establishment and maintenance of pregnancy in these mares indicates that nonovulating, hormone-treated ...
Use of oocyte transfer in a commercial breeding program for mares with reproductive abnormalities.
Journal of the American Veterinary Medical Association    January 10, 2001   Volume 218, Issue 1 87-37 doi: 10.2460/javma.2001.218.87
Carnevale EM, Squires EL, Maclellan LJ, Alvarenga MA, Scott TJ.In some mares with lesions of the reproductive tract, embryo collection and survival rates are low, or collection of embryos is not feasible. For these mares, oocyte transfer has been proposed as a method to induce pregnancies. In this report, a method for oocyte transfer in mares and results of oocyte transfer performed over 2 breeding seasons, using mares with long histories of subfertility and various reproductive lesions, are described. Human chorionic gonadotropin or an implant containing a gonadotropin-releasing hormone analog was used to initiate follicular and oocyte maturation. Oocyte...
Factors affecting pregnancy rates and early embryonic death after equine embryo transfer.
Theriogenology    November 30, 2000   Volume 54, Issue 6 965-979 doi: 10.1016/S0093-691X(00)00405-2
Carnevale EM, Ramirez RJ, Squires EL, Alvarenga MA, Vanderwall DK, McCue PM.In the present study, 638 embryo transfers conducted over 3 yr were retrospectively examined to determine which factors (recipient, embryo and transfer) significantly influenced pregnancy and embryo loss rates and to determine how rates could be improved. On Day 7 or 8 after ovulation, embryos (fresh or cooled/transported) were transferred by surgical or nonsurgical techniques into recipients ovulating from 5 to 9 d before transfer. At 12 and 50 d of gestation (Day 0 = day of ovulation), pregnancy rates were 65.7% (419 of 638) and 55.5% (354 of 638). Pregnancy rates on Day 50 were significantl...
Measurement of early pregnancy factor activity for monitoring the viability of the equine embryo.
Theriogenology    March 29, 2000   Volume 50, Issue 2 255-262 doi: 10.1016/s0093-691x(98)00133-2
Takagi M, Nishimura K, Oguri N, Ohnuma K, Ito K, Takahashi J, Yasuda Y, Miyazawa K, Sato K.The viability of embryos before flushing from donor mares (n = 5) and after transfer to recipient mares (n = 7) was monitored in mare serum by detecting early pregnancy factor (EPF) using the rosette inhibition test (RIT). The EPF activity was measured in donor mares before and after natural mating at natural estrus; after ovulation on Days 2, 5 and 8; and after embryo flushing (Day 8) on Days 8, 9, 10 and 13 after ovulation. The collected embryos were transferred immediately after flushing. The EPF activity in recipient mares were measured on the day of transfer and after embryo transfer on D...
Evaluation of two treatments in superovulation of mares.
Theriogenology    March 25, 2000   Volume 49, Issue 7 1257-1264 doi: 10.1016/S0093-691X(98)00073-9
Rosas CA, Alberio RH, Barañao JL, Agüero A, Chaves MG.The efficiency of superovulating mares with an enriched fraction of equine follicle-stimulating hormone (feFSH) and an equine pituitary extract (EPE) with similar FSH content but differing in the LH amount was compared. Mares were randomly assigned to an feFSH (n = 5) or EPE (n = 5) treatment. The experimental period was of 2 successive estrous cycles, with the first cycle as the control. At Days 6 and 7 of the estrous cycle, the mares received 250 micrograms i.m. cloprostenol. The treatments consisted of daily injections of 25 mg feFSH or EPE beginning on Day 6 post ovulation. Mares were inse...
Birth of a foal after oocyte transfer to a nonovulating, hormone-treated recipient mare.
Theriogenology    March 23, 2000   Volume 51, Issue 7 1251-1258 doi: 10.1016/S0093-691X(99)00069-2
Hinrichs K, Provost PJ, Torello EM.A nonovulating, hormone-treated mare was used successfully as an oocyte recipient. The mare's ovarian activity was suppressed using progesterone and estrogen treatment. This treatment was stopped, then estrogen was administered for 3 d prior to the transfer. An oocyte was recovered from the follicle of a donor mare and was transferred via flank laparotomy into the recipient's oviduct. The recipient mare was inseminated 7 h before transfer. The recipient was treated with intramuscular progesterone from the day after transfer until 47 d after transfer, and then with oral altrenogest until 150 d ...
The current status of equine embryo transfer.
Theriogenology    March 23, 2000   Volume 51, Issue 1 91-104 doi: 10.1016/s0093-691x(98)00234-9
Squires EL, McCue PM, Vanderwall D.The use of embryo transfer in the horse has increased steadily over the past two decades. However, several unique biological features as well as technical problems have limited its widespread use in the horse as compared with that in the cattle industry. Factors that affect embryo recovery include the day of recovery, number of ovulations, age of the donor and the quality of sire's semen. Generally, embryo recoveries are performed 7 or 8 d after ovulation unless the embryos are to be frozen, in which case recovery is performed 6 d after ovulation. Most embryos are recovered from single-ovulati...
In vitro and xenogenous capacitation-like changes of fresh, cooled, and cryopreserved stallion sperm as assessed by a chlortetracycline stain.
Journal of andrology    February 12, 2000   Volume 21, Issue 1 45-52 
Parker NA, Bailey TL, Bowen JM, Ley WB, Purswell BJ, Dascanio JJ.Like the human female, the mare experiences reproductive tract pathology that may sometimes be circumvented by the use of assisted reproductive technologies (ARTs). One such technology, gamete intrafallopian transfer (GIFT), may be used in mares that exhibit ovulatory, oviductal, or uterine abnormalities that limit the use of common ARTs, such as embryo transfer. Homologous GIFT has been successfully performed in the horse; however, the logistics, costs, and associated risks of surgically transferring gametes to the oviducts of a recipient mare are considerably high. Use of a less costly speci...
Pregnancies produced from fertile and infertile stallions by intracytoplasmic sperm injection (ICSI) of single frozen-thawed spermatozoa into in vivo matured mare oocytes.
Journal of reproduction and fertility. Supplement    January 1, 2000   Issue 56 513-517 
McKinnon AO, Lacham-Kaplan O, Trounson AO.The use of intracytoplasmic sperm injection (ICSI) for in vitro fertilization of equine oocytes and the developmental potential of these oocytes after transfer to the Fallopian tubes of synchronized mares were examined. Oocytes were aspirated from mature follicles 39 h after injection of a GnRH analogue and transported 190 km at 39 degrees C. Semen from a fertile and an infertile stallion was frozen and prepared for injection. Successfully injected oocytes were transferred surgically into the ampulla of the Fallopian tube either: (i) 4-8 h after semen injection; or (ii) after 24-48 h culture b...
Effect of timing of follicle aspiration on pregnancy rate after oocyte transfer in mares.
Journal of reproduction and fertility. Supplement    January 1, 2000   Issue 56 493-498 
Hinrichs K, Betschart RW, McCue PM, Squires EL.Mares with preovulatory follicles >33 mm in diameter were administered hCG and were randomly assigned for aspiration of the dominant follicle at 24 h or 35 h after hCG administration. Oocytes recovered at 24 h were cultured for 12 h before transfer and oocytes recovered at 35 h were cultured for 1 h. Oocytes were transferred by flank laparotomy to the oviduct of the same mare, or to the oviduct of another oocyte donor. Recipient mares were inseminated before and after transfer. The oocyte recovery rates at 24 h and 35 h after hCG administration were not significantly different (10/15 (66%) and...
Effect of L-glutamine for freezing equine embryos: evaluation by DAPI staining and transfer of multiple embryos to recipient mares.
Journal of reproduction and fertility. Supplement    January 1, 2000   Issue 56 561-568 
Lagneaux D, Pomarici AM, Sattler M, Bruneau B, Duchamp G, Camillo F, Palmer E.Day 6.5 equine embryos (n=30) were frozen in a medium containing glycerol (2.5-10.0%) supplemented with 0, 20 or 100 mmol L-glutamine 1(-1). After thawing, the embryos were tested individually, using 4',6'-diamidino-2-phenylindole (DAPI) staining to evaluate cell death. Three embryos (one frozen at each L-glutamine concentration) were transferred together into individual recipient mares. Pregnancy diagnosis was performed at day 12 (age of embryo). Embryos were collected at day 14 (age of embryo) and were identified by PCR amplified microsatellite analysis. Nine of ten recipient mares that rece...
Maternal influence on pre- and postnatal growth of foals born after embryo transfer.
Journal of reproduction and fertility. Supplement    January 1, 2000   Issue 56 705-708 
Tischner M.In the present study the growth and development of three pairs of matching gender foals from birth to maturity were compared. One Polish Pony embryo of each pair was transferred from a donor mare (mass 387-400 kg) to a much larger heavy type recipient mare (mass 561-780 kg). The other embryo of each pair underwent normal gestation (control). The transferred and control horses were examined at 9 and 13 years of age, and X-ray pictures were taken of their front legs to measure the length of the bones. On the basis of the results of this study, it is concluded that the processes of growth and dev...
Effects of follicular fluid or progesterone on in vitro maturation of equine oocytes before intracytoplasmic sperm injection with non-sorted and sex-sorted spermatozoa.
Journal of reproduction and fertility. Supplement    January 1, 2000   Issue 56 519-525 
Schmid RL, Kato H, Herickhoff LA, Schenk JL, McCue PM, Chung YG, Squires EL.In Expt 1, compact cumulus oocyte complexes (COCs) were matured in: (i) control medium (Hepes-buffered TCM-199 with 10% oestrous cow serum (OCS) + oestradiol, LH and FSH); (ii) Hepes-buffered TCM-199 with 20% follicular fluid; or (iii) control medium containing 250 ng progesterone ml(-1). Mature oocytes were collected by transvaginal aspiration as a positive control for the in vitro maturation (IVM) treatments. Oocytes were fertilized by ICSI and cultured in Menezo's B2 + 5% fetal calf serum (FCS). There were no significant differences among IVM treatments. In Expt 2, oocytes with expanded COC...
Production of live foals from sperm-injected oocytes harvested from pregnant mares.
Journal of reproduction and fertility. Supplement    January 1, 2000   Issue 56 503-512 
Cochran R, Meintjes M, Reggio B, Hylan D, Carter J, Pinto C, Paccamonti D, Graff KJ, Godke RA.In vitro fertilization in horses has been less successful than anticipated owing to: (i) the inability to collect large numbers of good quality oocytes; (ii) alterations in the zona pellucida that occur during in vitro maturation of equine oocytes; and (iii) inadequate preparation of equine sperm cells. In addition, studies in humans, mice and cattle have indicated that high concentrations of glucose in culture media may inhibit embryonic development in vitro and this may also be a problem for development of equine embryos in vitro. The aims of the present study were: (i) to achieve fertilizat...
Comparison of the cryoprotectant properties of glycerol and ethylene glycol for early (day 6) equine embryos.
Journal of reproduction and fertility. Supplement    January 1, 2000   Issue 56 549-560 
Bruyas JF, Sanson JP, Battut I, Fiéni F, Tainturier D.Early (day 6) equine embryos (n=23) were assigned to four treatment groups to assess the cryoprotectant properties of glycerol and ethylene glycol and the effect of adding sucrose during removal of the cryoprotectant: (i) group GG (n=5) embryos were frozen and thawed using 1.5 mol glycerol l(-1) as the cryoprotectant, which was added at 22 degrees C in four steps (0.375, 0.75, 1.125 and 1.5 mol glycerol l(-1)), and removed after thawing in five steps (1.5, 1.125, 0.75, 0.375 and 0.0 mol glycerol l(-1)); (ii) group GS (n=6) embryos were frozen and thawed using 1.5 mol glycerol l(-1) as for grou...
Equine Embryo Transfer IV. Proceedings of the 4th International Symposium on Equine Embryo Transfer. Reims, France, 16-18 January 1997.
Equine veterinary journal. Supplement    June 6, 1998   Issue 25 6-112 
No abstract available
The use of early pregnant mares as embryo recipients.
Equine veterinary journal. Supplement    May 21, 1998   Issue 25 77-79 doi: 10.1111/j.2042-3306.1997.tb05106.x
Camillo F, Cela M, Vannozzi I, Romagnoli S, Aria G.Fourteen normal, cyclic mares, treated to synchronise oestrus and ovulation and inseminated artificially with fresh semen, were assigned to a donor or a recipient group after ovulation, with the aim of obtaining a degree of synchrony of > or =2 days. Ten embryos, collected on Day 6 or 7 after ovulation (Day 0), were transferred nonsurgically to inseminated recipient mares (IRM) that had ovulated up to 5 days after the respective donors, or to pregnant recipient mares (PRM) that had ovulated 2-7 days before the donors. Embryonic size and development, as determined by ultrasound examination, wer...
The effect of sucrose in the thawing solution on the morphology and mobility of frozen equine embryos.
Equine veterinary journal. Supplement    May 21, 1998   Issue 25 94-97 doi: 10.1111/j.2042-3306.1997.tb05110.x
Huhtinen M, Lagneaux D, Koskinen E, Palmer E.Seventy-five embryos were collected 6 days after ovulation. Sixty embryos were frozen in straws using glycerol as the cryoprotectant in an automatic freezer. In Experiment 1 the freezing and thawing media were supplemented with 1.3 g/l PVP; in Experiment 2 the supplement was 5% FCS. The embryos were thawed for 30 s at +37 degrees C in a waterbath. In Experiment 1 glycerol was removed from 10 embryos in 6 steps. In 10 other embryos, glycerol and sucrose were both removed from the medium in 6 steps. After glycerol and sucrose removal, the embryos were stained with 4',6'-diamidino-2-phenylindole ...
Transfer of immature oocytes to a preovulatory follicle: an alternative to in vitro maturation in the mare?
Equine veterinary journal. Supplement    May 21, 1998   Issue 25 54-59 doi: 10.1111/j.2042-3306.1997.tb05101.x
Goudet G, Bézard J, Duchamp G, Palmer E.In the mare, success rates for the in vitro maturation of oocytes are low. Accordingly, we attempted to determine if immature oocytes could be matured in vivo by injecting them into a preovulatory follicle. Groups of 3-9 oocytes collected from donor mares were transferred under ultrasound control into the preovulatory follicle of a recipient mare that was treated with crude equine pituitary gonadotrophin (CEG) to induce ovulation. Just before ovulation (34 h post treatment) the preovulatory follicle of the recipient mare was punctured to collect both the transferred and the indigenous oocytes ...
Cryopreservation of equine embryos with glycerol plus sucrose and glycerol plus 1,2-propanediol.
Equine veterinary journal. Supplement    May 21, 1998   Issue 25 88-93 doi: 10.1111/j.2042-3306.1997.tb05109.x
Ferreira JC, Meira C, Papa FO, Landin e Alvarenga FC, Alvarenga MA, Buratini J.Six or 7-day-old equine embryos were divided into 4 groups; Group 1, n = 15, Day 7 embryos destined for immediate transfer; Group 2, n = 15, Day 6 embryos destined for deep-freezing with glycerol plus sucrose as cryoprotectant; Group 3, n = 10, Day 6 embryos destined for deep-freezing with glycerol plus 1,2-propanediol as cryoprotectant and Group 4, n = 3, fresh embryos destined for ultrastructural analysis. All the frozen/thawed embryos were transferred to recipient mares, except 3 embryos in Group 3 that were subjected to ultrastructural analysis. After thawing the cryoprotectants were remov...
Effect of anti-freeze protein (AFP) on the cooling and freezing of equine embryos as measured by DAPI-staining.
Equine veterinary journal. Supplement    May 21, 1998   Issue 25 85-87 doi: 10.1111/j.2042-3306.1997.tb05108.x
Lagneaux D, Huhtinen M, Koskinen E, Palmer E.Equine embryos recovered on Day 6 after ovulation were cooled to +4 degrees C, or frozen with AFP alone or together with glycerol. Twenty embryos (140-200 microm in diameter) were randomly assigned to 6 treatment groups. In the first 3 groups, the embryos were cooled from room temperature to +4 degrees C at a rate of 3 degrees C/min and warmed again at a rate of 32 degrees C/min in a programmable freezer. In the second 3 groups, the embryos were frozen using a standard protocol, stored in liquid nitrogen for 5-7 days and then thawed in a 37 degrees C waterbath. After cooling/warming or freezin...
Intracytoplasmic sperm injection of in vitro-matured equine oocytes.
Biology of reproduction    January 4, 1998   Volume 57, Issue 6 1495-1501 doi: 10.1095/biolreprod57.6.1495
Grøndahl C, Hansen TH, Hossaini A, Heinze I, Greve T, Hyttel P.Intracytoplasmic sperm injection (ICSI) was performed on equine oocytes matured in vitro. The oocytes were aspirated from abattoir ovaries and matured in vitro for 36 h at 38 degrees C. ICSI was performed using frozen/thawed stallion semen after swimup in medium containing human serum albumin. Sperm-injected oocytes were either 1) cultured in vitro for 10, 20, or 72 h; 2) transferred to oviducts of pseudopregnant mice; or 3) transferred to a synchronized mare after initial in vitro culture. The transferred ova were recovered after 72 h, and all ova were subsequently fixed, stained, and process...
Interspecific and extraspecific pregnancies in equids: anything goes.
The Journal of heredity    November 5, 1997   Volume 88, Issue 5 384-392 doi: 10.1093/oxfordjournals.jhered.a023123
Allen WR, Short RV.Equids possess the unusual ability to interbreed freely among the phenotypically and karyotypically diverse member species of the genus to produce viable, but usually infertile, offspring. The mule (female horse x male donkey) was humanity's first successful attempt at genetic engineering and its clear expression of both parental phenotypes has contributed much to our understanding of genetic inheritance over the centuries. Even more surprising, mares and donkeys have been shown to be capable of carrying to term a range of true, xenogeneic extraspecies pregnancies created by embryo transfer, i...
Successful transfer of biopsied equine embryos.
Theriogenology    August 1, 1997   Volume 48, Issue 3 361-367 doi: 10.1016/s0093-691x(97)00247-1
Huhtinen M, Peippo J, Bredbacka P.Embryo biopsy has been used to detect inherited disorders and to improve the phenotype by analyzing of linkages between marker loci and the desired characteristics. Unfortunately, early procedures required the removal of a large portion (one-half) of the embryo for analysis, and the transfer of bisected equine embryos has not been particularly successful. Recent discovery of the polymerase chain reaction (PCR) has made possible the detection of specific DNA sequences from only a few cells. We investigated whether the removal of a small biopsy would allow for successful PCR and normal embryonic...
Prostaglandin F2alpha release associated with an embryo transfer procedure in the mare.
Equine veterinary journal    July 1, 1997   Volume 29, Issue 4 286-289 doi: 10.1111/j.2042-3306.1997.tb03125.x
Kask K, Odensvik K, Kindahl H.The pattern of the main metabolite of prostaglandin (PG) F2alpha was recorded following a nonsurgical embryo transfer technique in 9 mares under field conditions in Estonia. Three patterns were observed. Two of them were characterised by PG release, thereas the third was not. A tendency towards a shortened cycle was seen in 3 mares. Observations were made regarding the manipulation of the uterus as being normal or difficult to perform. In general, mares where the procedure was considered difficult were also found to have a PG release.
Artificial insemination of horses.
The Veterinary record    January 25, 1997   Volume 140, Issue 4 103 
Collins MC.No abstract available
Artificial insemination of horses.
The Veterinary record    January 11, 1997   Volume 140, Issue 2 52 
Drnec K.No abstract available