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Topic:Assisted Reproductive Techniques

Assisted Reproductive Techniques (ART) in horses encompass a range of technologies designed to aid in the breeding process. These techniques include artificial insemination, embryo transfer, intracytoplasmic sperm injection (ICSI), and oocyte transfer. ART is employed to enhance reproductive efficiency, manage genetic diversity, and support breeding programs for both commercial and conservation purposes. Artificial insemination involves the collection and deposition of semen into the mare's reproductive tract, while embryo transfer entails the collection of a fertilized embryo from a donor mare and its implantation into a recipient mare. ICSI involves the direct injection of a single sperm into an oocyte to achieve fertilization. Oocyte transfer involves the transfer of an oocyte from one mare to another for fertilization and gestation. This page compiles peer-reviewed research studies and scholarly articles that examine the methodologies, advancements, and applications of assisted reproductive techniques in equine reproduction.
Pregnancies attained after collection and transfer of oocytes from ovaries of five euthanatized mares.
Journal of the American Veterinary Medical Association    January 14, 2003   Volume 222, Issue 1 60-36 doi: 10.2460/javma.2003.222.60
Carnevale EM, Maclellan LJ, Coutinho da Silva MA, Squires EL.After euthanasia, ovaries were removed from 5 horses and shipped to a laboratory where 46 oocytes were collected. The oocytes were cultured for 24 to 30 hours, and 36 oocytes were transferred to 10 recipient mares via flank laparotomies. Recipient mares were inseminated with semen from various stallions. Sixteen days after transfer, 4 of the recipients were pregnant with at least 1 embryonic vesicle. Embryonic death occurred in 3 recipients, whereas a healthy live foal was born from 1 recipient. Ovaries from valuable mares can be a source of viable oocytes after death of the mare. For shipping...
Meiotic competence of equine oocytes and pronucleus formation after intracytoplasmic sperm injection (ICSI) as related to granulosa cell apoptosis.
Biology of reproduction    January 8, 2003   Volume 68, Issue 6 2065-2072 doi: 10.1095/biolreprod.102.009852
Dell'Aquila ME, Albrizio M, Maritato F, Minoia P, Hinrichs K.Follicle atresia and granulosa cell apoptosis may be related to oocyte meiotic and developmental competence. We analyzed the relationships among granulosa cell apoptosis, initial cumulus morphology, oocyte nuclear maturation in vitro, and pronucleus formation after intracytoplasmic sperm injection (ICSI) in the horse. For each follicle, the size was measured and granulosa cells were used for DNA laddering analysis. Oocytes were evaluated for cumulus morphology, cultured for in vitro maturation, and submitted to ICSI. Apoptosis was categorized as absent, intermediate, or advanced according to t...
Embryo technologies in the horse.
Theriogenology    December 25, 2002   Volume 59, Issue 1 151-170 doi: 10.1016/s0093-691x(02)01268-2
Squires EL, Carnevale EM, McCue PM, Bruemmer JE.Recent studies demonstrated that zwitterionic buffers could be used for satisfactory storage of equine embryos at 5 degrees C. The success of freezing embryos is dependent upon size and stage of development. Morulae and blastocysts <300 microm can be slowly cooled or vitrified with acceptable pregnancy rates after transfer. The majority of equine embryos are collected from single ovulating mares, as there is no commercially available product for superovulation in equine. However, pituitary extract, rich in FSH, can be used to increase embryo recovery three- to four-fold. Similar to human medic...
The effect of co-culture on the development of in vitro matured equine oocytes after intracytoplastic sperm injection.
Equine veterinary journal    November 29, 2002   Volume 34, Issue 7 673-678 doi: 10.2746/042516402776250315
Rosati I, Berlinguer F, Bogliolo L, Leoni G, Ledda S, Naitana S.It is clear that, in the horse, there are many weak links in the process of in vitro embryo production; an optimal culture system for equine oocytes does not exist, and related data are conflicting. Therefore, the ability of 3 different culture systems to support embryonic development of ICSI horse oocytes was examined. Oocytes (n = 261) suitable for culture were collected from 55 ovaries and divided, according to cumulus morphology, into 2 categories: expanded cumulus and compacted cumulus. Oocytes with expanded and compacted cumulus were cultured for in vitro maturation in TCM 199 + 10% FCS ...
Quantification and distribution of equine oocyte cortical granules during meiotic maturation and after activation.
Molecular reproduction and development    November 2, 2002   Volume 63, Issue 4 451-458 doi: 10.1002/mrd.10198
Carneiro GF, Liu IK, Hyde D, Anderson GB, Lorenzo PL, Ball BA.In vitro fertilization (IVF) is being routinely used in humans and several domestic species, however, limited success has been achieved in the horse. Although immature equine oocytes are capable of completing meiosis in vitro, subsequent fertilization, and embryonic development of those oocytes are questionable. The lack of development of these oocytes could be attributed to an impaired cytoplasmic maturation. In the horse, the study of oocyte cytoplasmic maturation and post-fertilization development has been hindered by the lack of progress in IVF. In mammalian oocytes, migration of cortical ...
Pregnancies from vitrified equine oocytes collected from super-stimulated and non-stimulated mares.
Theriogenology    September 6, 2002   Volume 58, Issue 5 911-919 doi: 10.1016/s0093-691x(02)00920-2
Maclellan LJ, Carnevale EM, Coutinho da Silva MA, Scoggin CF, Bruemmer JE, Squires EL.The objectives were to compare embryo development rates after transfer into inseminated recipients, vitrified thawed oocytes collected from super-stimulated versus non-stimulated mares. In vivo matured oocytes were collected by transvaginal, ultrasound guided follicular aspiration from super-stimulated and non-stimulated mares 24-26 h after administration of hCG. Oocytes were cultured for 2-4 h prior to vitrification. Cryoprotectants were loaded in three steps before oocytes were placed onto a 0.5-0.7 mm diameter nylon cryoloop and plunged directly into liquid nitrogen. Oocytes were thawed and...
An overview of low dose insemination in the mare.
Reproduction in domestic animals = Zuchthygiene    August 14, 2002   Volume 37, Issue 4 206-210 doi: 10.1046/j.1439-0531.2002.00375.x
Morris LH, Allen WR.The need for relatively high numbers of spermatozoa for artificial insemination limits our application of recently available technologies such as sex-sorted semen. The fertility of two different methods of low dose insemination using fresh, frozen and sex-sorted semen are compared in this overview. Satisfactory conception rates are described using very low doses of spermatozoa inseminated by either hysteroscopic or deep uterine insemination methods, proving the stallion is fully fertile. The hysteroscopic method appears to give higher conception rates when inseminating fewer than 5 x 10(6) spe...
Computer simulations to determine the efficacy of different genome resource banking strategies for maintaining genetic diversity.
Cryobiology    August 2, 2002   Volume 44, Issue 2 122-131 doi: 10.1016/s0011-2240(02)00013-5
Harnal VK, Wildt DE, Bird DM, Monfort SL, Ballou JD.Genome resource banks (GRBs) and assisted reproductive techniques are increasingly recognized as useful tools for the management and conservation of biodiversity, including endangered species. Cryotechnology permits long-term storage of valuable genetic material. Although, the actual application to endangered species management requires technical knowledge about sperm freezing and thawing, a systematic understanding of the quantitative impacts of various germ plasm storage and use scenarios is also mandatory. In this study, various GRB strategies were analyzed using the historical data from th...
Production of nuclear transfer horse embryos by Piezo-driven injection of somatic cell nuclei and activation with stallion sperm cytosolic extract.
Biology of reproduction    July 24, 2002   Volume 67, Issue 2 561-567 doi: 10.1095/biolreprod67.2.561
Choi YH, Love CC, Chung YG, Varner DD, Westhusin ME, Burghardt RC, Hinrichs K.We investigated the use of direct nuclear injection using the Piezo drill and activation by injection of stallion sperm cytosolic extract for production of cloned equine embryos. When metaphase II horse oocytes were injected with either of two dosages of sperm extract and cultured 20 h, similar activation rates (88% vs. 90%) and cleavage rates (49% vs. 46%) were obtained. The successful reconstruction rate of horse oocytes with horse somatic cell donor nuclei after direct injection using the Piezo drill was 82%. Four dosages of sperm extract (containing 59, 176, 293, or 1375 microg/ml protein)...
Equine oocyte maturation with epidermal growth factor.
Equine veterinary journal    July 16, 2002   Volume 34, Issue 4 378-382 doi: 10.2746/042516402776249065
Lorenzo PL, Liu IK, Carneiro GF, Conley AJ, Enders AC.Epidermal growth factor (EGF) has been shown to have a positive effect during oocyte in vitro maturation in several species. This study was performed to establish the capacity of equine oocytes to undergo nuclear maturation in the presence of EGF and to localise its receptor in the equine ovary by immunohistochemical methods. Oocytes were obtained by aspiration and subsequent scraping from equine follicles (15-25 mm diameter) and cultured in 3 different treatment groups for 36 h: control Group (modified TCM 199 with 0.003% BSA), EGF Group (TCM-199 supplemented with 50 ng/ml EGF) and EMS Group ...
Successful production of offspring after superovulation and in vitro culture of embryos from domestic ferrets (Mustela putorius furos).
Reproduction (Cambridge, England)    January 31, 2002   Volume 122, Issue 4 611-618 
Li ZY, Jiang QS, Zhang YL, Liu XM, Engelhardt JF.In an effort to expand the use of ferrets as models for genetic disease, several experimental parameters that are required for successful genetic manipulation in this species were investigated. Optimum superovulation (19.3 +/- 0.6 oocytes and embryos per female) was achieved after injections of 100 iu equine chorionic gonadotrophin (eCG) and 150 iu human chorionic gonadotrophin (hCG). The ovulation rate achieved by the treatment was more than double that induced by mating. Mating with a male immediately after hCG treatment did not significantly alter the number of oocytes ovulated or the numbe...
Equine sperm-oocyte interaction: results after intraoviductal and intrauterine inseminations of recipients for oocyte transfer.
Animal reproduction science    December 18, 2001   Volume 68, Issue 3-4 305-314 doi: 10.1016/s0378-4320(01)00167-1
Carnevale EM, Maclellan LJ, Coutinho da Silva MA, Checura CM, Scoggin CF, Squires EL.Insemination of recipients for oocyte transfer and gamete intrafallopian transfer (GIFT) in five experiments were reviewed, and factors that affected pregnancy rates were ascertained. Oocytes were transferred into recipients that were (1) cyclic and ovulated at the approximate time of oocyte transfer, (2) cyclic with aspiration of the preovulatory follicle, and (3) noncyclic and treated with hormones. Recipients were inseminated before, after, or before and after transfer. Intrauterine and intraoviductal inseminations were done. Pregnancy rates were not different between cyclic and noncyclic r...
Assessment of sperm quality: a flow cytometric approach.
Animal reproduction science    December 18, 2001   Volume 68, Issue 3-4 239-247 doi: 10.1016/s0378-4320(01)00160-9
Graham JK.For many years, scientists have sought to develop laboratory assays that accurately predict the fertilizing capacity of a semen sample. This goal, however, has proven elusive and will most likely be very difficult to achieve, due to the complex nature of the problem. Part of the problem results from the many attributes that a spermatozoon must possess to fertilize an egg, and how laboratory assays can evaluate all of these attributes simultaneously. The percentage of motile sperm in a sample is most commonly used to evaluate semen quality. This assay, however, is not highly correlated with the...
Developmental capacity of equine oocytes matured and cultured in equine trophoblast-conditioned media.
Theriogenology    August 2, 2001   Volume 56, Issue 2 329-339 doi: 10.1016/s0093-691x(01)00567-2
Choi YH, Chung YG, Seidel GE, Squires EL.The objective was to compare culture media for in vitro maturation of equine oocytes and for in vitro culture of zygotes produced from IVF of partially zona-removed oocytes. Cumulus-oocyte complexes from slaughterhouse-derived ovaries were washed in m-Dulbecco's PBS and cultured in TCM-199, F10-DMEM or c-F10-DMEM (50% F10-DMEM + 50% F10-DMEM conditioned medium from culture of an equine trophoblast monolayer for 3 or 4 days). All media included FSH, LH, E2, and 10% FCS. After 28 to 30 h maturation, cumulus expansion was scored from 0 (no expansion) to 4 (fully expanded). Oocytes with a 1st pola...
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...
Effects of different activation treatments on fertilization of horse oocytes by intracytoplasmic sperm injection.
Journal of reproduction and fertility    June 24, 2000   Volume 119, Issue 2 253-260 
Li X, Morris LH, Allen WR.The effects of four reagents on the activation and subsequent fertilization of equine oocytes, and the development of these after intracytoplasmic sperm injection, were investigated. Cumulus-oocyte complexes collected from equine ovaries obtained from an abattoir were matured in vitro for 40-44 h in TCM199 medium before being injected, when in metaphase II, with an immobilized stallion spermatozoon. The cumulus-oocyte complexes were then subjected to one of five activation treatments: (a) 10 micromol ionomycin l(-1) for 10 min; (b) 7% (v/v) ethanol for 10 min; (c) 100 micromol thimerosal l(-1)...
Effect of administering a crude equine gonadotrophin preparation to mares on follicular development, oocyte recovery rate and oocyte maturation in vivo.
Journal of reproduction and fertility    June 24, 2000   Volume 118, Issue 2 351-360 doi: 10.1530/jrf.0.1180351
Brück I, Bézard J, Baltsen M, Synnestvedt B, Couty I, Greve T, Duchamp G.In mares, the shortage of oocytes and the variability in nuclear maturation at a certain time of the oestrous cycle hinders the optimization of methods for in vitro maturation and in vitro fertilization. Increasing the number of small-to-medium-sized follicles available for aspiration in vivo may increase the overall oocyte yield. The aims of the present study were to investigate whether administration of crude equine gonadotrophins affects follicular development, oocyte recovery rate, in vivo oocyte maturation and follicular concentrations of meiosis-activating sterols. During oestrus, all fo...
Effect of time during transport of excised mare ovaries on oocyte recovery rate and quality after in vitro maturation.
Theriogenology    March 29, 2000   Volume 52, Issue 5 757-766 doi: 10.1016/S0093-691X(99)00169-7
Guignot F, Bezard J, Palmer E.In the mare only a limited number of oocytes can be successfully collected in vivo, so that when large numbers of oocytes are needed for experimentation, ovaries harvested from slaughtered mares must be used. The resulting temperature changes and time intervals mandated by handling and transport of ovaries from the slaughterhouse to the laboratory adversely affect the rate of oocyte recovery and their quality after IVF and maturation. We chose to study the effect of temperature and time in transit of excised ovaries by evaluating rate of oocyte recovery, nuclear maturation stage reached before...
Effect of mare’s age and recovery methods on the recovery rate of equine follicular oocytes for IVM procedures.
Theriogenology    March 25, 2000   Volume 49, Issue 4 735-741 doi: 10.1016/S0093-691X(98)00022-3
Erice I, Gil L, Josa A, Echegaray A, Martinez F, Espinosa E.Mares (n = 39) were classified according to age as young (less than 1.5 yr, n = 17) or old (more than 1.5 yr, n = 22) and sacrificed. Ovaries were measured and weighed, and the number of follicles and CL were counted. Follicle size and distribution were recorded (external: > 20 mm, 5 mm, < 5 mm). External follicles were aspirated while internal follicles were sliced. The number and Type of oocytes recovered using each method were recorded. Oocyte recovery rates (oocytes/ovary) resulted in a mean of 0.92 oocytes by aspiration and 1.36 oocytes by additional slicing. The mean numbers of av...
Production of embryos by assisted reproduction in the horse.
Theriogenology    March 25, 2000   Volume 49, Issue 1 13-21 doi: 10.1016/s0093-691x(97)00398-1
Hinrichs K.In vitro embryo production is not yet successful in the horse, largely due to low rates of fertilization in vitro. However, methods to produce embryos from isolated oocytes have been developed. Oocytes may be recovered from living mares by aspiration of the dominant preovulatory follicle by trans-abdominal puncture, and from both preovulatory and immature follicles by trans-vaginal ultrasound-guided puncture. Transfer of in vivo-matured oocytes to the oviducts of bred recipient mares has resulted in good pregnancy rates (75-85%). Little work has been done on transfer of horse oocytes matured i...
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...
Method for isolating preantral follicles from mare ovaries.
Journal of reproduction and fertility. Supplement    January 1, 2000   Issue 56 447-453 
Telfer EE, Watson ED.The aims of this study were to evaluate the use of collagenase treatment to isolate preantral follicles from mare ovaries and to assess the effect of this treatment on follicular morphology. Intact mare ovaries were chopped into pieces, incubated individually with 1, 3 or 5 mg collagenase (type 1A) ml(-1) in a shaking waterbath at 37 degrees C for up to 2 h and passed through a series of stainless steel filters with pore size 50-300 microm to remove large clumps and stromal cells. The samples were prepared for histological analysis and sections were examined by light microscopy. Isolated folli...
Equine reproduction VII. Summing up.
Journal of reproduction and fertility. Supplement    January 1, 2000   Issue 56 731-734 
Flood PF.No abstract available
Repeated follicle aspiration in mares: consequences for follicle growth and oocyte quality.
Journal of reproduction and fertility. Supplement    January 1, 2000   Issue 56 463-472 
Kanitz W, Alm H, Becker F, Nürnberg G, Kurth J, Hinrichs K.Cumulus-oocyte complexes (COCs) recovered from ovaries of mares killed at abattoirs or after in vivo collection have heterogeneous morphologies and meiotic competence as follicles of variable quality are used. It is thought that it should be possible to recover more uniform COCs, with respect to morphology and nuclear maturation, by repeated follicle aspiration. Therefore, the influence of repeated follicle aspiration on the number and diameter of follicles > or =5 mm in diameter, the morphology and recovery rate of COCs, and the chromatin configuration in oocytes was investigated. Repeated...
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...
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