A novel xenogeneic transplantation approach was used to determine whether it is embryonic or maternal tissue that produces the material that gives rise to the mucin-like glycoprotein of the equine embryonic capsule. Endometrial biopsy samples and conceptuses from six mares at days 13-15 after ovulation were prepared as 1 mm(3) grafts of endometrium, trophoblast and capsule for transplantation, alone or in combination, into various sites in 88 immunodeficient (severe combined immunodeficient or RAG2/gamma(c) double mutant) mice. The overall recovery rate of grafts was over 50%, reaching 100% with experience and use of the renal subcapsular space exclusively. Periodic acid-Schiff (PAS) staining demonstrated capsule-like extracellular glycoprotein secretions at the graft site in 11 of 22 sites examined. Strong PAS-positive reactions (5-7 microm thick) were found in four of six sites containing trophoblast alone, five of six endometrium plus trophoblast sites, and zero of eight grafts of endometrium alone. Two recovered grafts of capsule were also PAS-positive. The secreted glycoprotein was identified as equine embryonic capsule material by using a monoclonal antibody (mAb) specific to equine capsule (mAb OC-1) in two experiments. In the first, in cryosections, this antibody bound to 19 of 19 recovered trophoblast graft secretions (including those in 12 from mice that had not received endometrium at any site), ten of ten recovered endometrium plus trophoblast grafts, and zero of 12 recovered endometrial grafts from mice in which trophoblast had been grafted to the same site or another site in the same mouse. In the second experiment, in paraformaldehyde-fixed sections of grafts from 11 mice, specific staining, identical to that shown by grafted capsule, was obtained with grafts of trophoblast (both alone and in combination with endometrium) but not with grafts of endometrium. These results support the contention that trophoblast is the principal source of equine embryonic capsule. In addition, they demonstrate that xenogeneic grafting is a useful means of culturing endometrium and conceptus tissues outside the mare when in vitro techniques do not suffice.
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http://dx.doi.org/10.1530/rep.0.1250855 | DOI Listing |
BMC Vet Res
January 2025
Materials Synthesis Laboratory, Carbon Tech Industrial Group, Carbon Tech, Tehran, Iran.
Background: Strongyle nematodes pose a major challenge in veterinary parasitology, causing significant economic losses in livestock due to resistance to conventional treatments. Current anthelmintics, like Ivermectin, often encounter resistance issues. This study aims to address these gaps by synthesizing Carbon Quantum Dots (CQDs) and Copper-Doped CQDs (Cu@CQDs) using glucose extract, and evaluating their nematicidal properties against strongyles in vitro.
View Article and Find Full Text PDFJ Equine Vet Sci
January 2025
Equine Fertility Group, Faculty of Veterinary Medicine, Universidad CEU Cardenal Herrera, CEU Universities, Carrer Lluís Vives 1, Alfara del Patriarca, Valencia 46115, Spain.
The case report discusses the implications of using different volumes of flushing media during embryo flushing (EF) procedures in a single donor mare that experienced multiple unintended pregnancies following negative EF outcomes. The study involved two sets of EF experiments over two years on a non-lactating Spanish purebred mare. The initial experiments (group 1, n = 6) used 1 L of flushing medium (Ringer´s Lactate), and subsequent tests (group 2, n = 5) increased the volume to 2 L, to assess whether a larger volume could enhance embryo recovery rates.
View Article and Find Full Text PDFJ Reprod Immunol
February 2025
Programa de Pós-graduação em Medicina Veterinária, Departamento de Medicina Veterinária, Universidade Federal de Viçosa, Viçosa, Brazil; Programa de Pós-graduação em Biologia Celular e Estrutural, Departamento de Biologia Geral, Universidade Federal de Viçosa, Viçosa, Brazil. Electronic address:
Equine Vet J
November 2024
Clinic for Horses - Unit for Reproductive Medicine, University of Veterinary Medicine Hanover, Hanover, Germany.
Background: Fragile foal syndrome (FFS) or warmblood FFS Type 1 (WFFS) is a recessive, autosomal, hereditary, genetic defect causing late abortions, stillbirths and non-viable foals. Whether early pregnancy losses occur is unknown.
Objectives: To investigate how WFFS affects pregnancies and whether early pregnancy losses occur in WFFS matings and if there is a difference in pregnancy success between matings where both parents were allele carriers and those where only mare or stallion were WFFS carriers.
Reprod Biol
December 2024
Department of Animal Reproduction, Anatomy and Genomics, Faculty of Animal Science, University of Agriculture in Krakow, Mickiewicza 24/28, 30-059 Krakow, Poland.
The efficacy of in vitro embryo production (IVEP) in equines is relatively limited compared to other species due to the lack of a reliable superovulation technique, limited availability of cumulus oocyte complexes (COCs), low in vitro oocyte maturation (IVM) and fertilization rates. Extracellular vesicles (EVs), which are nanoparticles involved in intercellular signaling in the ovarian environment, have shown potential as supplements to improve oocyte development during IVM. This study tested the hypothesis that EVs from small (< 20 mm) ovarian follicles could enhance fertilization rates in mares.
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