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Topic:Blastocysts

Blastocysts in horses represent an early stage of embryonic development following fertilization and prior to implantation in the uterus. This stage is characterized by a fluid-filled cavity surrounded by a layer of cells, which will eventually develop into the embryo and placenta. Research on equine blastocysts focuses on their formation, development, and viability, as well as factors affecting successful implantation and pregnancy outcomes. Studies often explore the molecular and cellular mechanisms underlying blastocyst development, the impact of maternal health and environmental conditions, and techniques for improving reproductive success in horses. This page compiles peer-reviewed research studies and scholarly articles that examine the formation, development, and clinical implications of blastocysts in equine reproduction.
In Vitro and In Vivo Development of Horse Cloned Embryos Generated with iPSCs, Mesenchymal Stromal Cells and Fetal or Adult Fibroblasts as Nuclear Donors.
PloS one    October 12, 2016   Volume 11, Issue 10 e0164049 doi: 10.1371/journal.pone.0164049
Olivera R, Moro LN, Jordan R, Luzzani C, Miriuka S, Radrizzani M, Donadeu FX, Vichera G.The demand for equine cloning as a tool to preserve high genetic value is growing worldwide; however, nuclear transfer efficiency is still very low. To address this issue, we first evaluated the effects of time from cell fusion to activation (<1h, n = 1261; 1-2h, n = 1773; 2-3h, n = 1647) on in vitro and in vivo development of equine embryos generated by cloning. Then, we evaluated the effects of using different nuclear donor cell types in two successive experiments: I) induced pluripotent stem cells (iPSCs) vs. adult fibroblasts (AF) fused to ooplasts injected with the pluripotency-inducin...
Intracytoplasmic Sperm Injection, Embryo Culture, and Transfer of In Vitro-Produced Blastocysts.
The Veterinary clinics of North America. Equine practice    October 8, 2016   Volume 32, Issue 3 401-413 doi: 10.1016/j.cveq.2016.07.003
Rader K, Choi YH, Hinrichs K.Intracytoplasmic sperm injection is becoming a common clinical procedure in the horse, but little information is available on techniques for its performance. Each laboratory uses different procedures and different media for the steps involved with in vitro embryo production. This article outlines the procedures used in the Clinical Equine Intracytoplasmic Sperm Injection Program at Texas A&M University for in vitro blastocyst production during the past 3 years.
The Calcium-Sensing Receptor and the Reproductive System.
Frontiers in physiology    August 30, 2016   Volume 7 371 doi: 10.3389/fphys.2016.00371
Ellinger I.Active placental transport of maternal serum calcium (Ca(2+)) to the offspring is pivotal for proper development of the fetal skeleton as well as various organ systems. Moreover, extracellular Ca(2+) levels impact on distinct processes in mammalian reproduction. The calcium-sensing receptor (CaSR) translates changes in extracellular Ca(2+)-concentrations into cellular reactions. This review summarizes current knowledge on the expression of CaSR and its putative functions in reproductive organs. CaSR was detected in placental cells mediating materno-fetal Ca(2+)-transport such as the murine int...
Vitrification of in vitro-produced and in vivo-recovered equine blastocysts in a clinical program.
Theriogenology    August 13, 2016   Volume 87 48-54 doi: 10.1016/j.theriogenology.2016.08.005
Choi YH, Hinrichs K.There is a clinical demand for cryopreservation of both in vivo-recovered and in vitro-produced (IVP) equine embryos. We previously reported successful vitrification of expanded equine blastocysts in fine-diameter microloader pipette tips (MPTs) after blastocoel collapse, in a research setting. Here, we report the results of clinical application of the MPT vitrification technique for both in vivo-recovered and IVP blastocysts. In vivo-recovered blastocysts were obtained by referring veterinarians on Days 6 to 8 after ovulation, and shipped 1 to 10 hours to the laboratory before vitrificat...
Effect of medium variations (zinc supplementation during oocyte maturation, perifertilization pH, and embryo culture protein source) on equine embryo development after intracytoplasmic sperm injection.
Theriogenology    June 6, 2016   Volume 86, Issue 7 1782-1788 doi: 10.1016/j.theriogenology.2016.05.037
Choi YH, Gibbons JR, Canesin HS, Hinrichs K.Prospective studies were conducted to help define procedural factors affecting in vitro embryo production via intracytoplasmic sperm injection (ICSI) of equine oocytes. In experiment 1, use of 10% fetal bovine serum as a protein source in embryo culture medium resulted in a higher blastocyst rate than did use of a combination of 3% fetal bovine serum, 3% equine preovulatory follicular fluid, and 4% human serum substitute (37% vs. 15%, respectively, P < 0.05). In experiment 2, the effect of zinc supplementation (0, 0.5, 1, or 1.5 μg/mL) during IVM was examined. There were no significant...
Holding equine oocytes in a commercial embryo-holding medium: New perspective on holding temperature and maturation time.
Theriogenology    May 6, 2016   Volume 86, Issue 5 1361-1368 doi: 10.1016/j.theriogenology.2016.04.079
Dini P, Bogado Pascottini O, Ducheyne K, Hostens M, Daels P.In the present study, we examined the effect of holding equine oocytes in Syngro embryo holding medium (EHM) overnight at either 4 °C, 17 °C, or 22 °C to 25 °C, on the time to maturation and developmental competence. We also examined the effect of placing denuded oocyte without extruded polar body back in maturation condition on subsequent maturation rate. In experiment 1, cumulus-oocyte complexes (COCs) were recovered postmortem and placed in EHM at 22 °C to 25 °C for 18 to 20 hours (OH) or placed directly in maturation (DM). The maturation rate was assessed after 22, 24, or 28 hou...
Micromanipulation of equine blastocysts to allow vitrification.
Reproduction, fertility, and development    February 25, 2016   doi: 10.1071/RD15389
Hinrichs K, Choi YH.Embryo cryopreservation presents an essential method for banking of valuable genetics. However, in equine species the cryopreservation of embryos is complicated by three interacting factors: (1) the late entry of the embryo into the uterus (~6 days after ovulation); (2) the rapid expansion of the blastocyst; and (3) the formation of the equine embryonic capsule, a glycoprotein membrane that forms between the embryo and zona. Efforts to freeze or vitrify equine expanded blastocysts were initially met with little success. In addition, it was thought that breaching the capsule led to loss of embr...
Effect of clinically-related factors on in vitro blastocyst development after equine ICSI.
Theriogenology    December 28, 2015   Volume 85, Issue 7 1289-1296 doi: 10.1016/j.theriogenology.2015.12.015
Choi YH, Velez IC, Macías-García B, Riera FL, Ballard CS, Hinrichs K.Equine intracytoplasmic sperm injection (ICSI) is being used clinically for foal production, but little information is available on factors affecting the efficiency of this procedure. We examined factors that may influence blastocyst development when ICSI is performed clinically, i.e., on oocytes recovered from live mares by transvaginal ultrasound-guided follicle aspiration (TVA), using sperm from the stallion of the client's choice. In a clinical setting, there may be a delay from the time of TVA to isolation of oocytes from the aspirated fluid. In a preliminary study, oocytes from fluid hel...
Cryopreservation of Day 8 equine embryos after blastocyst micromanipulation and vitrification.
Theriogenology    November 6, 2015   Volume 85, Issue 5 894-903 doi: 10.1016/j.theriogenology.2015.10.039
Diaz F, Bondiolli K, Paccamonti D, Gentry GT.Pregnancy rates after cryopreservation of large equine blastocyst stage embryos have remained lower than other domesticated livestock species. It is generally accepted that the embryonic capsule is the primary barrier to cryoprotectant entry into the embryo proper and techniques need to be developed to circumvent this obstacle. Therefore, the objective of this study was to develop an efficient Day 8 equine embryo cryopreservation protocol through blastocyst micromanipulation and vitrification. Grade 1 and 2 embryos recovered from mares (n = 15) 8 days after ovulation were used in these experim...
Procaine Induces Cytokinesis in Horse Oocytes via a pH-Dependent Mechanism.
Biology of reproduction    June 17, 2015   Volume 93, Issue 1 23 doi: 10.1095/biolreprod.114.127423
Leemans B, Gadella BM, Stout TA, Heras S, Smits K, Ferrer-Buitrago M, Claes E, Heindryckx B, De Vos WH, Nelis H, Hoogewijs M, Van Soom A.Coincubating equine gametes in the presence of procaine has been reported to facilitate in vitro fertilization, with cleavage rates exceeding 60%. We report that while procaine does trigger sperm hyperactivation, it independently induces cleavage of equine oocytes. First, we found that procaine (1-5 mM) did not facilitate stallion sperm penetration of equine oocytes but instead induced sperm-independent oocyte cytokinesis in the absence of the second polar body extrusion. Indeed, 56 ± 4% of oocytes cleaved within 2.5 days of exposure to 2.5 mM procaine regardless of sperm presence. However, t...
Expression of leukaemia inhibitory factor at the conceptus?maternal interface during preimplantation development and in the endometrium during the oestrous cycle in the mare.
Reproduction, fertility, and development    April 17, 2015   doi: 10.1071/RD14334
de Ruijter-Villani M, Deelen C, Stout TA.Leukaemia inhibitory factor (LIF) plays a critical role in blastocyst development and implantation in several species. The present study investigated mRNA and protein expression for LIF, as well as the low-affinity LIF receptor (LIFR) and interleukin-6 signal transducer (IL6ST), in equine endometrium, trophoblast and histotroph during early pregnancy and in the endometrium during the oestrous cycle. Endometrial LIF mRNA expression was upregulated after Day 21 of pregnancy, whereas LIF immunoreactivity increased in the endometrium on Day 28. Expression of LIF mRNA in the yolk sac membrane incre...
Cell lineage allocation in equine blastocysts produced in vitro under varying glucose concentrations.
Reproduction (Cambridge, England)    April 7, 2015   Volume 150, Issue 1 31-41 doi: 10.1530/REP-14-0662
Choi YH, Ross P, Velez IC, Macías-García B, Riera FL, Hinrichs K.Equine embryos develop in vitro in the presence of high glucose concentrations, but little is known about their requirements for development. We evaluated the effect of glucose concentrations in medium on blastocyst development after ICSI. In experiment 1, there were no significant differences in rates of blastocyst formation among embryos cultured in our standard medium (DMEM/F-12), which contained >16 mM glucose, and those cultured in a minimal-glucose embryo culture medium (<1 mM; Global medium, GB), with either 0 added glucose for the first 5 days, then 20 mM (0-20) or 20 mM ...
Timing factors affecting blastocyst development in equine somatic cell nuclear transfer.
Cellular reprogramming    April 1, 2015   Volume 17, Issue 2 124-130 doi: 10.1089/cell.2014.0093
Choi YH, Velez IC, Macías-García B, Hinrichs K.In nuclear transfer (NT), exposure of donor cell chromatin to the ooplast cytoplasm may aid reprogramming; however, the length of exposure feasible is limited by the developmental life span of the oocyte. We examined the effect of duration of nucleus-cytoplasmic exposure before activation and of in vitro maturation (IVM) in equine NT. In experiment 1, 24 h IVM and a delay of 2, 5, or 8 h between reconstruction and activation yielded 4%, 15%, and 11% blastocysts, respectively. In experiment 2, a 5-h activation delay yielded 17% and 22% blastocysts with two donor cell lines. In experiment 3, usi...
Accuracy of preimplantation genetic diagnosis in equine in vivo-recovered and in vitro-produced blastocysts.
Reproduction, fertility, and development    March 17, 2015   doi: 10.1071/RD14419
Choi YH, Penedo MC, Daftari P, Velez IC, Hinrichs K.Preimplantation genetic diagnosis has great potential in the horse, but information on evaluation of equine embryo biopsy samples is limited. Blastocysts were biopsied using a Piezo drill and methods for whole-genome amplification (WGA) investigated. Results for 33 genetic loci were then compared between biopsy samples from in vitro-produced (IVP) and in vivo-recovered (VIV) blastocysts. Under the experimental conditions described, WGA using the Qiagen Repli-g Midi kit was more accurate than that using the Illustra Genomiphi V2 kit (98.2% vs 25.8%, respectively). Using WGA with the Qiagen kit,...
The aggregation of four reconstructed zygotes is the limit to improve the developmental competence of cloned equine embryos.
PloS one    November 14, 2014   Volume 9, Issue 11 e110998 doi: 10.1371/journal.pone.0110998
Gambini A, De Stefano A, Bevacqua RJ, Karlanian F, Salamone DF.Embryo aggregation has been demonstrated to improve cloning efficiency in mammals. However, since no more than three embryos have been used for aggregation, the effect of using a larger number of cloned zygotes is unknown. Therefore, the goal of the present study was to determine whether increased numbers of cloned aggregated zygotes results in improved in vitro and in vivo embryo development in the equine. Zona-free reconstructed embryos (ZFRE's) were cultured in the well of the well system in four different experimental groups: I. 1x, only one ZFRE per microwell; II. 3x, three per microwell;...
Current status of freeze-drying technology to preserve domestic animals sperm.
Reproduction in domestic animals = Zuchthygiene    October 4, 2014   Volume 49 Suppl 4 72-81 doi: 10.1111/rda.12396
Gil L, Olaciregui M, Luño V, Malo C, González N, Martínez F.In recent years, there has been an increased interest in new preservation techniques that facilitate sperm storage and distribution, with freeze-drying (FD) having been proposed as an alternative method for sperm preservation and maintenance of genetic resources in different animal species. FD is a method in which frozen material is dried by sublimation of ice, thereby involving a direct transition from a solid (ice) to a vapour (gas) phase. One of the main advantages of FD is that nitrogen and dry ice are no longer required for the storage and shipment of frozen sperm, which can be stored at ...
Production of a mitochondrial-DNA identical cloned foal using oocytes recovered from immature follicles of selected mares.
Theriogenology    May 5, 2014   Volume 82, Issue 3 411-417 doi: 10.1016/j.theriogenology.2014.04.021
Choi YH, Ritthaler J, Hinrichs K.Cloned animals possess mitochondria derived from the host ooplast, which typically differ genetically from those of the donor. This is of special concern to horse breeders, as maternal lines are prized and athletic performance is a key factor in genetic value. To evaluate the feasibility of producing mitochondrial-identical cloned foals, we collected oocytes from immature follicles of two mares, BL and SM, maternally related to the donor stallion. In vitro matured, enucleated oocytes were treated with roscovitine-synchronized donor cells and blastocysts were transferred transcervically to reci...
RNA-seq transcriptome profiling of equine inner cell mass and trophectoderm.
Biology of reproduction    March 20, 2014   Volume 90, Issue 3 61 doi: 10.1095/biolreprod.113.113928
Iqbal K, Chitwood JL, Meyers-Brown GA, Roser JF, Ross PJ.Formation of the inner cell mass (ICM) and trophectoderm (TE) marks the first differentiation event in mammalian development. These two cell types have completely divergent fates for the remainder of the developmental process. The molecular mechanisms that regulate ICM and TE formation are poorly characterized in horses. The objective of this study was to establish the transcriptome profiles of ICM and TE cells from horse blastocysts using RNA sequencing (RNA-seq). A total of 12 270 genes were found to be expressed in either lineage. Global analysis of the transcriptome profiles by unsupervi...
Effect of collection-maturation interval time and pregnancy status of donor mares on oocyte developmental competence in horse cloning.
Journal of animal science    January 14, 2014   Volume 92, Issue 2 561-567 doi: 10.2527/jas.2013-7026
Gambini A, Jarazo J, Karlanian F, De Stéfano A, Salamone DF.The current limitations for obtaining ovaries from slaughterhouses and the low efficiency of in vivo follicular aspiration necessitate a complete understanding of the variables that affect oocyte developmental competence in the equine. For this reason, we assessed the effect on equine oocyte meiotic competence and the subsequent in vitro cloned embryo development of 1) the time interval between ovary collection and the onset of oocyte in vitro maturation (collection-maturation interval time) and 2) the pregnancy status of the donor mares. To define the collection-maturation interval time, coll...
Effect of potential oocyte transport protocols on blastocyst rates after intracytoplasmic sperm injection in the horse.
Equine veterinary journal. Supplement    December 1, 2013   Issue 45 39-43 doi: 10.1111/evj.12159
Foss R, Ortis H, Hinrichs K.Intracytoplasmic sperm injection (ICSI) is used to produce foals from otherwise infertile mares and from stallions with limited sperm stores, but requires expensive equipment and is technically demanding. Methods to transport oocytes to ICSI laboratories would allow collection of oocytes by the referring veterinarian and enable greater application of this technique. Objective: This study was conducted to evaluate protocols that could be used to transport immature and maturing oocytes for ICSI. Methods: In vitro experiment. Methods: Oocytes were recovered by transvaginal ultrasound-guided folli...
A viable foal obtained by equine somatic cell nuclear transfer using oocytes recovered from immature follicles of live mares.
Theriogenology    January 11, 2013   Volume 79, Issue 5 791-6.e1 doi: 10.1016/j.theriogenology.2012.12.005
Choi YH, Norris JD, Velez IC, Jacobson CC, Hartman DL, Hinrichs K.The presence of heterogenous mitochondria from the host ooplast affects the acceptance of offspring obtained by somatic cell nuclear transfer. This might be avoided by obtaining oocytes from selected females, but is then complicated by low numbers of available oocytes. We examined the efficiency of equine somatic cell nuclear transfer using oocytes recovered by transvaginal aspiration of immature follicles from 11 mares. Use of metaphase I oocytes as cytoplasts and of scriptaid (a histone deacetylase inhibitor) treatment during oocyte activation were evaluated to determine if these approaches ...
Assisted reproduction techniques in the horse.
Reproduction, fertility, and development    December 19, 2012   Volume 25, Issue 1 80-93 doi: 10.1071/RD12263
Hinrichs K.This paper reviews current equine assisted reproduction techniques. Embryo transfer is the most common equine ART, but is still limited by the inability to superovulate mares effectively. Immature oocytes may be recovered by transvaginal ultrasound-guided aspiration of immature follicles, or from ovaries postmortem, and can be effectively matured in vitro. Notably, the in vivo-matured oocyte may be easily recovered from the stimulated preovulatory follicle. Standard IVF is still not repeatable in the horse; however, embryos and foals can be produced by surgical transfer of mature oocytes to th...
Evaluation of foal production following intracytoplasmic sperm injection and blastocyst culture of oocytes from ovaries collected immediately before euthanasia or after death of mares under field conditions.
Journal of the American Veterinary Medical Association    October 9, 2012   Volume 241, Issue 8 1070-1074 doi: 10.2460/javma.241.8.1070
Hinrichs K, Choi YH, Norris JD, Love LB, Bedford-Guaus SJ, Hartman DL, Velez IC.To evaluate the efficiency of foal production following intracytoplasmic sperm injection (ICSI) and blastocyst culture of oocytes from mares that died or were euthanized under field conditions. Methods: Prospective case series. Methods: 16 mares (age, 3 to 19 years) that died or were euthanized for various causes. Methods: Ovaries were collected immediately before euthanasia (n = 10) or after death (6). Ovaries were transported to the laboratory for oocyte recovery (15 mares), or oocytes were recovered at a remote location and shipped to the laboratory (1). Oocytes underwent ICSI, and presumpt...
Equine cloning: in vitro and in vivo development of aggregated embryos.
Biology of reproduction    July 19, 2012   Volume 87, Issue 1 15-9 doi: 10.1095/biolreprod.112.098855
Gambini A, Jarazo J, Olivera R, Salamone DF.The production of cloned equine embryos remains highly inefficient. Embryo aggregation has not yet been tested in the equine, and it might represent an interesting strategy to improve embryo development. This study evaluated the effect of cloned embryo aggregation on in vitro and in vivo equine embryo development. Zona-free reconstructed embryos were individually cultured in microwells (nonaggregated group) or as 2- or 3-embryo aggregates (aggregated groups). For in vitro development, they were cultured until blastocyst stage and then either fixed for Oct-4 immunocytochemical staining or maint...
Effects of FSH and LH on ovarian and follicular blood flow, follicular growth and oocyte developmental competence in young and old mares.
Animal reproduction science    July 4, 2012   Volume 133, Issue 3-4 191-197 doi: 10.1016/j.anireprosci.2012.06.021
Altermatt JL, Marolf AJ, Wrigley RH, Carnevale EM.Objectives of the experiment were to determine the effects of mare age and gonadotropin treatments on dominant follicle vascularity, ovarian blood flow and dominant follicle growth and to associate follicular vascularity with oocyte developmental capacity. Growing follicles >30 mm from young (4-9 years) and old (>20 years) mares were assessed for blood flow using color Doppler ultrasonography before maturation induction with recombinant equine LH (eLH) and immediately prior to oocyte collection at 20-24 h after eLH. Pulsed Doppler was used to obtain resistance indices of ovarian arteries...
Equine pre-implantation conceptuses express neuraminidase 2–a potential mechanism for desialylation of the equine capsule.
Reproduction in domestic animals = Zuchthygiene    October 24, 2011   Volume 47, Issue 3 449-454 doi: 10.1111/j.1439-0531.2011.01901.x
Klein C, Troedsson M.During the second and third week of pregnancy, the equine conceptus is covered by an acellular glycoprotein capsule. This capsule contains glycoproteins resembling those of the mucin family with sialic acid making up a high proportion of the carbohydrate. Coinciding with conceptus fixation, a marked decline in sialic acid content of the capsule occurs, which has been proposed to contribute to cessation of conceptus mobility. Herein, we describe the expression of neuraminidase 2 (NEU2) by pre-implantation stages of equine conceptus development. NEU2 transcript abundance was examined in conceptu...
Production of live foals via intracytoplasmic injection of lyophilized sperm and sperm extract in the horse.
Reproduction (Cambridge, England)    August 16, 2011   Volume 142, Issue 4 529-538 doi: 10.1530/REP-11-0145
Choi YH, Varner DD, Love CC, Hartman DL, Hinrichs K.Work with lyophilized sperm helps delineate the factors required for successful fertilization. We investigated the use of lyophilized sperm in equine embryo production. In Experiment 1, sperm DNA fragmentation index was not affected by three freeze/thaw or lyophilization cycles. In Experiment 2, oocytes injected with lyophilized sperm or with sperm from a treatment in which lyophilized sperm were suspended in sperm cytoplasmic extract (SE) yielded blastocyst development rates of 0 and 28% respectively (P < 0.05). In Experiment 3, blastocyst development rate was 6-11% after injection of sper...
Permeability of the equine embryonic capsule to ethylene glycol and glycerol in vitro.
Theriogenology    July 31, 2011   Volume 76, Issue 8 1540-1551 doi: 10.1016/j.theriogenology.2011.06.026
Kingma SE, Thibault ME, Betteridge KJ, Schlaf M, Gartley CJ, Chenier TS.Poor survival of cryopreservation by equine expanded blastocysts may involve low penetration of the embryonic capsule by cryoprotective agents (CPAs). This study characterized the permeation and accumulation rates of the CPAs ethylene glycol (EG) and glycerol (GLY) across isolated capsule in vitro, using a dual-chambered Valia-Chien permeation apparatus. Pieces of Days 14 to 18 ± 1 capsules separated media in the "donor" chamber containing either 1.5 M EG (n = 6), 0.74 M EG (n = 5), 0.87 M GLY (n = 7), or 0.15 M NaCl (saline, SAL) (n = 6), from the "recipient" chamber. Concentrations of CPA, ...
Successful cryopreservation of expanded equine blastocysts.
Theriogenology    March 31, 2011   Volume 76, Issue 1 143-152 doi: 10.1016/j.theriogenology.2011.01.028
Choi YH, Velez IC, Riera FL, Roldán JE, Hartman DL, Bliss SB, Blanchard TL, Hayden SS, Hinrichs K.Effective cryopreservation of expanded equine blastocysts (> 300 μm in diameter) has been difficult, perhaps due to the volume of blastocoele fluid or the presence of the equine embryonic capsule. Recently, we reported normal viability of equine embryos after trophoblast biopsy, which resulted in blastocyst collapse. The present study addressed the effect of biopsy and resultant breach of the capsule and blastocyst collapse on survival of expanded equine blastocysts after vitrification. First, non-biopsied, small embryos (< 300 μm) were vitrified in fine-diameter microloader pipette ti...
In vivo-derived horse blastocysts show transcriptional upregulation of developmentally important genes compared with in vitro-produced horse blastocysts.
Reproduction, fertility, and development    January 8, 2011   Volume 23, Issue 2 364-375 doi: 10.1071/RD10124
Smits K, Goossens K, Van Soom A, Govaere J, Hoogewijs M, Peelman LJ.In vitro-produced (IVP) equine blastocysts can give rise to successful pregnancies, but their morphology and developmental rate differ from those of in vivo-derived equine blastocysts. The aim of the present study was to evaluate this difference at the genetic level. Suppression subtractive hybridisation (SSH) was used to construct a cDNA library enriched for transcripts preferentially expressed in in vivo-derived equine blastocysts compared with IVP blastocysts. Of the 62 different genes identified in this way, six genes involved in embryonic development (BEX2, FABP3, HSP90AA1, MOBKL3, MCM7 a...