This study aimed to compare the effectiveness, in terms of viability and quality post-warming, when vitrifying in vitro-produced (IVP) pig blastocysts with either a modified Cryotop (n = 161; 20 blastocysts/device) or the conventional Superfine Open Pulled Straw (SOPS; n=160; 5-6 blastocysts/device systems. Blastocyst viability, morphology, and apoptosis parameters were evaluated after 24 h of in vitro culture. The Cryotop system yields better results in terms of higher embryo viability and total cell numbers (p < .05) and lower apoptosis (p < .05) parameters than the SOPS procedure, defining a high effectiveness to simultaneously vitrify 20 pig IVP blastocysts at one time, thus increasing the yield of IVP blastocysts readily available for embryo transfer.
This study explored the genome sequence, genetic diversity, and single nucleotide polymorphisms (SNPs) within the STAT5B and BMPR-1B genes, and their association across Red Jungle Fowl (RJF), Fayoumi (Fay), and Hilly chickens, as well as in Hilly Reddish Brown (RB) × Fay crossbreed chickens. A cohort comprising 40 cocks and 320 hens of each chicken genotype (except for RJF, where 4 cocks and 12 hens were utilized), was raised from day-old to 1-y of age. Genotyping of 30 chickens of each population except RJF for SNPs was performed using the polymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP) method, with genotype frequencies compared using the chi-square test. Marker-trait association analyses were carried out using estimated breeding values. Genetic flow among breeds and diversity was assessed using molecular co-ancestry and polymorphic information criteria. The AG genotype predominated over GG and AA genotypes in the STAT5B gene, whereas heterozygote genotype frequency exceeded homozygote genotype frequency in the BMPR-IB gene. Recessive gene frequencies surpassed dominant gene frequencies. Chi-square tests confirmed Hardy–Weinberg equilibrium for all genotypes. Mutations were detected in Hilly genotypes, with polymorphic information criteria values of 0.27–0.37 for STAT5B and 0.34–0.39 for BMPR-1B. The SNP marker of BMPR-1B was associated with mature live weight but not egg production. Phylogenetic trees of both genes indicated that the genetic distance among the genotypes was close. These findings suggest a shared ancestry among the studied chickens, with the STAT5B SNP emerging as a potential genetic marker for enhancing productive traits.
Reproduction, Fertility and Development is an international journal publishing original research , review and comment in the fields of reproduction and developmental biology in humans, domestic animals and wildlife
Reproduction, Fertility and Development is an international journal publishing original research , review and comment in the fields of reproduction and developmental biology in humans, domestic animals and wildlife
Background: Standard semen evaluation according to WHO thresholds (2010) is still insufficient to disclose individuals with a diagnosis of idiopathic infertility. Sperm DNA fragmentation is considered a possible valuable marker, and flow-cytometry-based Sperm Chromatin Structure Assay (SCSA) analysis has been used. However, the method is cumbersome and time-consuming; hardly applicable in a clinical setting where split ejaculates are used for diagnostics and intervention. The present study explores an alternative method using conventional bright-field microscopy (HalospermG2, Halothech, Madrid, Spain) with Sperm DNA fragmentation (SDF) as end values. Analyses were done on split ejaculates (F1, sperm-rich fraction, mainly prostate-dominated versus F2, sperm-poor fraction, mainly seminal vesicle-dominated) of documented fertile donors and partners in a couple seeking for ART-intervention with a clinical diagnosis of idiopathic infertility (patients).
The cytokine platelet factor 4 (PF4) enhances differentiation and cell viability of different stem cells lines in vitro. This study investigated whether PF4 addition to customary pig embryo semi-defined culture media can improve their developmental outcome (Experiment 1) and ultimately replace the need for bovine serum albumin (BSA, Experiment 2). Experiment 1 added PF4 (100-1000 ng/mL, 0 = control) to NCSU-23 with 0.4 mg/mL BSA culturing 3430 presumptive zygotes. Experiment 2 added PF4 (100 -1000 ng/mL, 0 = Control-PVA) to a BSA-free medium (NCSU-23 with 0.3 mg/mL PVA) culturing 3820 presumptive zygotes. Zygote culture in NCSU-23 with 0.4 mg/mL BSA was used as overall control. All groups of Experiment 1 displayed similar rates of day 2-cleavage (range: 65.0 +/- 10.9 to 70.0 +/- 5.8%); of day 7-blastocyst rates (range: 46.6 +/- 10.0 to 56.4 +/- 8.2%) and of total day 7-blastocyst efficiency (range: 32.3 +/- 8.3 to 37.2 +/- 7.3%). Addition of PF4 did not affect total cell numbers of day 7 blastocysts (range: 44.1 +/- 23.2 to 50.5 +/- 26.4). In Experiment 2, PF4 accelerated embryo development, increasing (P < 0.01) blastocyst yield compared to 0-PF4, and blastocyst formation by day 5 adding PF4 100-500 ng/mL (range: 29.9 +/- 7.8 to 31.8 +/- 5.5%; P < 0.05) compared with BSA-control (17.2 +/- 8.2%) and PF4 1000 ng/mL (15.5 +/- 7.9%); showing similar blastocyst rates (range: 42.0 +/- 11.5 to 49.3 +/- 10.0%), total efficiency (28.0 +/- 8.2 to 32.3 +/- 7.1%) total cell numbers (range: 42.6 +/- 19.3 to 45.7 +/- 23.9) as BSA-controls. In conclusion, although PF4 did not show additive improvement under usual semi-defined, BSA-supplemented embryo media, it successfully replaced BSA sustaining porcine blastocyst production in chemically defined conditions. (C) 2019 Elsevier Inc. All rights reserved.
This study evaluated the effects of different concentrations (1, 10, 25, 50, and 100 µM) of the antioxidant N-(2-mercaptopropionyl)-glycine (NMPG), during the culture of in vitro-fertilized porcine oocytes. While the highest concentrations of NMPG (50 and 100 µM) were toxic to the developing embryos during the first two days of culture, 25 µM NMPG achieved cleavage rates that were similar to those achieved by the control but did not sustain blastocyst production by Day 7 of culture. Compared to the control culture medium, the culture medium supplemented with 10 µM NMPG increased (P < 0.05) the rates of blastocyst formation, decreased (P < 0.05) the intracellular levels of reactive oxygen substances, and downregulated (P < 0.05) the expression of the oxidative stress related gene GPX1. In conclusion, these results demonstrated that supplementation of porcine embryo culture medium with 10 µM NMPG can attenuate oxidative stress and increase the yield of in vitro production of blastocysts.
The advancement of porcine embryo transfer (ET) technology is constrained by regulatory hurdles (liquid nitrogen transportation) or, more importantly, the technical obstacles of using vitrified embryos in combination with nonsurgical deep uterine ET technology. Maintaining embryos in culture during transport and prior ET collides with the need of CO2 gassing and the best choice of culture medium. In this work, we describe storage conditions for short-term embryo CO2-free storage that allowed for a majority of in vivo-derived porcine morulae to survive after 3 days of storage in a liquid state, and to develop to the blastocyst stage unhatched, a sanitary prerequisite for ET. The storage conditions included NCSU-23 medium supplemented with bovine serum albumin, where bicarbonate was partially replaced by HEPES to avoid the need for CO2 gassing, and a temperature of 37 °C. These conditions were able to maintain the functionality of the stored embryos (hatching capacity after exposure to conventional culture conditions) and their developmental competence after ET (normal fetuses by day 38 of pregnancy). Use of this strategy of CO2-free storage should allow the shipment of fresh embryos worldwide in the absence of liquid nitrogen.
In this study, the effects of addition of the antioxidant ascorbic acid (AsA) were evaluated during porcine in vitro embryo production (IVP) and vitrification. In experiment 1, the effects of AsA supplementation during IVM, IVF and IVC were evaluated, using a total of 2744 oocytes in six replicates. The IVM, IVF and embryo IVC media were supplemented or not (control) with 50 μg/mL AsA in all possible combinations. No significant effects of AsA were detected in any of the maturation, fertilization or embryo development parameters assessed. In experiment 2, we evaluated the effects of adding AsA to vitrification-warming media on the post-warming survival and quality of blastocysts. Day-6 in vitro-produced blastocysts (N = 588) from six replicates were randomly divided in two groups, with vitrification and warming media either supplemented with 50 μg/mL AsA (VW + group) or un-supplemented (VW- control). Addition of AsA increased (P < 0.05) blastocyst survival rate after vitrification compared with that of VW- control embryos. Vitrification and warming increased (P < 0.05) the production of oxygen species (ROS) and reduced (P < 0.05) the glutathione levels in blastocysts. Although VW + blastocysts displayed higher (P < 0.05) ROS levels than those of fresh control blastocysts, the levels were lower (P < 0.05) than those found in VW- control blastocysts. In conclusion, under the experimental conditions, supplementation of IVM/IVF/IVC media with AsA did not improve the embryo production in vitro. By contrast, the addition of AsA to chemically defined vitrification and warming media increased the survival of in vitro-produced porcine blastocysts by decreasing ROS production.
In order to gain insight of the modifications that freezing and thawing cause to the surviving population of spermatozoa, changes in the potential of the plasma membrane (Em) and intracellular Na+ content of stallion spermatozoa were investigated using flow cytometry. Moreover, caspase 3 activity was also investigated and the functionality of the Na+ -K+ ATPase pump was investigated before and after freezing and thawing. Cryopreservation caused a significant (p < 0.001) increase in the subpopulation of spermatozoa with depolarized sperm membranes, concomitantly with an increase (p < 0.05) in intracellular Na+ . These changes occurred in relation to activation of caspase 3 (p < 0.001). Cryopreservation reduced the activity of the Na-K+ pump and inhibition of the Na+ -K+ ATPase pump with ouabain-induced caspase 3 activation. It is concluded that inactivation of Na+ -K+ ATPase occurs during cryopreservation, an inhibition that could play a role explaining the accelerated senescence of the surviving population of spermatozoa.
The use of oils with undetected alterations is a long-recognized problem for in vitro embryo production systems. Since peroxides in oils have been associated with reduced embryo production outcomes, our goals were (1) to evaluate the effects of a batch of mineral oil (MO) that was suspected to be altered on the in vitro production of pig embryos and (2) to determine oil peroxide values throughout culture and the transfer of oxidant agents from oil to culture media. Sunflower oil, which has a completely different chemical composition than MO but a higher oxidative status, and unaltered MO were used as controls. Oocyte maturation, fertilization and embryo development were affected differently depending on the oil overlay used. While the suspected MO was not able to sustain in vitro maturation and fertilization, the oocytes incubated in the presence of sunflower oil were matured and fertilized similarly to those of the unaltered MO group. Moreover, the cleavage rate of presumed zygotes cultured under the suspected MO was severely reduced compared with those cultured under the other oils, and none of the cleaved embryos developed to the blastocyst stage. Although the cleavage rates in the sunflower oil and unaltered MO groups were similar, embryos cultured under sunflower oil also failed to develop to the blastocyst stage. Our results revealed that the suspected MO and sunflower oil had similar levels of peroxides and that these levels were much higher than those of the unaltered MO. The total oxidant status was higher in media incubated under peroxidized oils than in fresh media or media incubated without an oil overlay or under unaltered MO, indicating that oxidant agents were transferred to the incubation media. However, unlike the sunflower oil group, the culture media incubated under the suspected MO had high levels of total oxidant status and low levels of hydrogen peroxide and reactive oxygen species, suggesting the presence of other unknown oxidant agents in that oil. These results indicate that a peroxidized MO overlay dramatically decreases embryo production outcomes. This decrease could be associated with the higher peroxide values of the oil but cannot be explained by the levels of hydrogen peroxide and reactive oxygen species transferred from the oil to the culture media. It is likely that different oxidant agent(s) and/or other toxic compounds present in the peroxidized MO are responsible for its damaging effects on oocytes and embryos. (C) 2017 Elsevier Inc. All rights reserved.