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S Ledda

Publications and source records attributed to S Ledda.

At least 37 records · Page 2Linked to original sources

Development of parthenogenetic and cloned ovine embryos: effect of activation protocols.

Preliminary experiments carried out on ovine oocytes were designed to establish correlations between activation protocols and subsequent rates of embryonic development. The best activation protocols were thereafter used in studies on ovine parthenogenesis and cloning. The first study established that chemical activators induce pronuclear development at a slightly higher rate than physical activation (ionomycin, 96%; ethanol, 95%; electro activation, 80%). Inhibition of second polar body extrusion and one single pronucleus were observed in the majority of the oocytes (approximately 90%) treated for 3 h with 6-dimethylaminopurine (6-DMAP) following either ionomycin or ethanol activation. While over 80% of these oocytes cleaved after transfer to the oviducts of recipients, progression to the blastocyst stage was higher after ionomycin as compared with ethanol activation (58% vs. 19%). The ionomycin plus 6-DMAP activation protocol was used to produce parthenogenetic blastocysts whose subsequent development was monitored both by ultrasonography and by direct fetal examination. Over 70% of parthenogenotes were viable on Day 21 of pregnancy but dead by Day 25. The effects of 6-DMAP on nuclear remodeling and fetal development of cloned embryos was then investigated. Control cloned embryos underwent nuclear envelope breakdown (NEBD), premature chromatin condensation (PCC), and inhibition of DNA synthesis. By contrast, reconstructed embryos treated with 6-DMAP exhibited intact nuclear membranes, interphase chromatin, and no interference on DNA synthesis. Moreover, cloned embryos developed to blastocyst stage in higher percentage after 6-DMAP treatment (83% vs. 25%). We conclude that ionomycin followed by 6-DMAP incubation yields high percentages of diploid parthenogenetic embryos that develop to Day 25 before dying. Cloned embryos activated by the ionomycin-6-DMAP protocol develop readily to term.

Adenine↗

Embryo cloning in sheep: work in progress.

We summarize here the procedures for nuclear transfer using S-phase cytoplasts and describe a new method for avoiding loss of reconstructed embryos from the oviducts during in vivo culture. We obtained 2 clones of 5 genetically identical animals following the transfer of blastomeres from 16-cell embryos into enucleated preactivated cytoplasts. Metaphase II oocytes and embryos were surgically collected from superovulated Sarda breed ewes 54 and 120 h after sponge removal, respectively. Oocytes were exposed for 15 min to 5 mug/ml of Hoechst 33342 and were micromanipulated at room temperature. Efficiency in embryo reconstruction was 100% for enucleation and 98% for fusion. Embryos were embedded in agar as separate clones and transferred into the oviducts of temporary recipients. The fimbriae were closed with glass-nylon made filters. Embryo recovery from the temporary recipients was 97.3%, with a cleavage rate of 81.4%; development to morula-blastocyst stage was 70.6%. A total of 29 Grade 1 blastocysts corresponding to 5 clones were transferred into 13 naturally synchronous ewes, and scanning was performed at 30 and 90 d. Ten ewes were pregnant at the first scanning and nine at the second for a final pregnancy rate of 71.4%; the survival rate at term was 48%. Overall, we obtained 4 clones of identical lambs: two sets of 5 (one male set and one female set) and two sets of twins (both sets male). Pregnancy length in recipients carrying clones was longer than the standard period in Sarda breed (153 vs 150 d, respectively). Weight at birth was higher for male lambs obtained from nuclear transfer than for normal males (4.1 vs 3.6 kg), while the weight for females was normal.

Journal Article↗

Polyvinyl alcohol as a defined substitute for serum in vitrification and warming solutions to cryopreserve ovine embryos at different stages of development.

The purpose of this study was to assess the viability of ovine embryos after replacing fetal calf serum (FCS) with polyvinyl alcohol (PVA) in vitrification and warming solutions. Ovine embryos were obtained from superovulated Sardinian breed ewes at 4, 5, 6, and 7 days after insemination. All vitrification and warming solutions were prepared using buffered saline solution with 20% FCS (group a) or 0.1% PVA (group b). Embryos were vitrified in 20 microliters of glycerol 3.4 M + ethylene glycol 4.6 M and loaded into the centre of 0.25 ml straws between two columns of sucrose solution (0.5 M), and plunged immediately into liquid nitrogen. After being warmed in a water bath at 35 degrees C for 10 s, the vitrified embryos were moved to 0.25 M sucrose solution for 3 min. Embryos were cultured in TCM-199 after washing with 10% FCS and sheep oviductal epithelial cells up to hatching or re-expansion of the blastocoelic cavity. No significant difference in the viability rates was observed between embryos vitrified/warmed in PVA or FCS solutions. In both groups, the rate of in vitro viability was (P < 0.01) lower at the precompacted and compacted morula stages than at the expanded, hatching or hatched blastocyst stage. In both groups, early blastocysts were less viable than expanded (P < 0.01), hatching or hatched blastocyst (P < 0.05). There was no significant difference in survival rates at days 14 (79 and 76%) and 45 (63 and 59%) after transfer into sychronised recipients between vitrified expanded blastocysts of groups a and b, respectively. These results suggest that it is possible replace serum with PVA in vitrification and warming solutions without reducing in vivo and in vitro viability.

Animals↗

Meiotic progression and developmental competence of oocytes collected from juvenile and adult ewes.

The complete nuclear maturation and fertilization in vitro of oocytes from 30-40-day-old juvenile lambs, and their ability to develop up to the blastocyst stage when transferred into recipient ewes after fertilization in vivo and culture was studied. Cumulus-oocyte complexes were recovered from juvenile ovaries and only those with several cumulus cell layers were selected and compared with oocytes from adult sheep. The rate of meiotic progression was significantly lower (P < 0.001) for juvenile oocytes (8%) than for adult oocytes (58%) without gonadotrophins in the culture medium. However, a similar maturation rate was observed in oocytes of both juvenile (76%) and adult sheep (84%) in the presence of gonadotrophins. Eighteen hours after in vitro insemination, the fertilization rates for juvenile oocytes were not significantly different from those of adult oocytes (64% and 72%, respectively). Parthenogenetic activation and polyspermy were higher in juvenile than in adult oocytes (P < 0.001). The proportion of blastocysts produced was lower for juvenile (20%) than for in vitro matured adult oocytes (49%) after their transfer into transitory recipients for 5.5 days (P < 0.01). However, the viability of blastocysts (67%) derived from in vitro matured juvenile oocytes showed a rate of hatching similar to that obtained from adult oocytes (74%). Pregnancy rates for recipient ewes at 90 days were similar for both juvenile (57%) and adult (61%) oocytes. The results indicate that it is possible to mature and fertilize in vitro matured juvenile oocytes to produce viable embryos.

Animals↗

Effect of biopsy and vitrification on in vitro survival of ovine embryos at different stages of development.

The objective of the present study was to assess the in vitro viability of ovine embryos at different stages of development after combining cell sampling and vitrification. Precompacted morulae, compacted morulae and blastocysts were obtained from superovulated Sarda ewes at 4, 5 or 6 d following insemination. Embryo cell biopsy was carried out in a 100-microl drop of PBS + 10% fetal calf serum (FCS) with 10 micromol nocodazole and 7.5 microg/ml cytochalasin-b by aspiration (3-5 cells). Embryos were cryopreserved at room temperature after exposure of 2 solutions for 5 min, transferred into a vitrification solution, loaded into the center of 0.25-ml straws separated by air bubbles from 2 columns of sucrose 0.5 M and plunged immediately into liquid nitrogen. In Experiment 1, the in vitro viability of manipulated or vitrified embryos after in vitro co-culture in TCM 199 medium with 10% FCS and sheep oviductal epithelial cells (SOEC) in 5% CO2 humidified atmosphere in air at 39 degrees C was significantly lower (P < 0.05 and P < 0.01, respectively) at precompacted morula (60 and 30%) and compacted morula (62 and 39%) stages than intact embryos at the same stages (87 and 88%). No differences were found at the blastocyst stage. In Experiment 2, the in vitro survival rate of precompacted morulae which were manipulated and immediately vitrified was lower (P < 0.05) than in those manipulated and, after a temporary period of culture, vitrified at blastocyst stage (21 vs 48%); while no differences were found at compacted morula and blastocyst stages. The results show that 1) the stage of development influences the subsequent in vitro viability of manipulated and vitrified ovine embryos, 2) temporary culture after manipulation and before vitrification improves the in vitro viability of embryos, and 3) the hole in the zona pellucida resulting from biopsy does not affect blastocyst survival after subsequent vitrification.

Journal Article↗

The effect of 6-dimethylaminopurine (6-DMAP) on DNA synthesis in activated mammalian oocytes.

Mouse, sheep and bovine metaphase II oocytes were briefly preincubated in medium with 6-dimethylaminopurine (6-DMAP) and thereafter activated with ethanol before further culture in 6-DMAP supplemented medium. The presence of 6-DMAP enhances the efficiency of activation and the speed of pronuclear formation but has no effect on DNA synthesis. These results are discussed in the context of recently published data showing that the preincubation of condensed chromosomes with 6-DMAP blocks DNA synthesis when nuclei become reformed.

Adenine↗

Two culture systems showing a biphasic effect on ovine embryo development from the 1-2 cell stage to hatched blastocysts.

This study compared the effect of using either CZB or TCM 199 media on both the development of 1-2 cell ovine embryos from superovulated ewes to the blastocyst stage (Experiment 1), and the hatching process of ovine blastocysts developed in vitro (Experiment 2). For the first 5 d, the CZB medium showed higher rates of embryo development than the TCM 199 medium (p < 0.001). The embryos reaching the > 16 cell stage were 79 vs 52% and 74 vs 20% with or without an oviductal monolayer, respectively, and those reaching the blastocyst stage were 71 vs 46% and 46 vs 13% with or without cells. The CZB medium was less able to support the hatching process of the blastocysts obtained in the first experiment than was the TCM-199 medium + 10% FCS (fetal calf serum) with cells (31 vs 92%; p < 0.001) or without cells (13 vs 66%; p < 0.001). No blastocysts completely escaped from the zona pellucida (ZP) in the CZB medium compared with 80 and 61% in the TCM 199 medium with or without cells, respectively. In Experiment 3, 47% of the blastocysts migrated through the artificial opening of the ZP and hatched completely. After 24 h of culture in the CZB medium, however, they showed blastocoelic cavity breakdown. During the preliminary cleavages, the ovine embryos developed better in CZB medium than in TCM 199, but the latter was more efficient in promoting the hatching process of the blastocysts.

Animals↗

Superovulatory response and quality of embryos recovered from anestrus ewes after a single injection of porcine FSH dissolved in polyvinylpyrrolidone.

The effects of a single injection of porcine FSH (pFSH) administered in long acting vehicle on the superovulatory response of milk (Sarda breed) sheep were determined during the anestrous season. The sheep (n=42), synchronized with intravaginal sponges (40 mg fluorogestone acetate -FGA- for 14 d) were submitted 24 h before sponge removal to three different superovulatory treatments. Group 1 (n=16) was treated with a single intramuscular (im) injection of 16 mg of pFHS dissolved in 30 % polyvinylpyrrolidone (PVP); Group 2 (n=12) was injected im with 6, 5, 3 and 2 mg of pFSH every 12 h over 2 d; Group 3 (n=14) was given 800 IU of PMSG and 12 mg of pFSH. All sheep were mated with a fertile ram. Embryos were recovered surgically at Day 7 of sponge removal and graded for the quality according to their morphology. The percentage of good quality embryos recovered was 84% in Group 1, 68% in Group 2 and 77% in Group 3. Data for the onset of estrus, number of corpora lutea (CL), number of unovulated follicles, embryo recovery rate, embryo quality and fertilization rate were recorded for the 3 groups. The onset of estrus, number of CL, number of unovulated follicles, fertilization rate and number of good quality embryos did not differ significantly among the 3 groups. The embryo recovery rate was significantly lower in the group treated with PMSG-FSH (Group 3) than in the 2 other groups. It is concluded that during the anestrous season a single injection im of pFSH results on average in a superovulatory response as good as the more traditional treatments like multiple injections of pFSH and PMSG-pFSH combined.

Journal Article↗

[Use of a protein-free medium for the in vitro development of sheep embryos].

The employment of protein-free medium for the culture of ovine embryos collected at the 1-2 cell stage from superovulated ewes was investigated. For this purpose sheep zygotes were randomly allocated in four treatment groups: T1) CZB medium + bovine serum albumin (BSA) on sheep oviductal monolayer (SOM), T2) CZB + polyvinyl alcohol (PVA) + SOM, T3) CZB + PVA + SOM supplemented with inositol (I) and serine (S), T4) TCM 199 + 10% fetal calf serum + SOM. Standard culture conditions were 2 ml of medium in 35 mm Petri dishes, under 5% CO2 in air at 39 degrees C. The percentages of morulae and blastocysts were recorded after 4 and 7 days of culture. After 4 days of culture there was no significant difference (P > 0.05) in the percentage of morulae between embryos cultured in T1 (86%), T2 (85%), T3 (88.8%), and T4 (87.5%). After 7 days the percentages of blastocysts were T1 (70%), T2 (50%), T3 (55.5%) and T4 (46.8%). These data suggest that a protein-free medium, CZB + PVA and CZB + PVA + I + S, can support ovine preimplantation embryo development in vitro; however CZB medium supplemented with BSA enhances development to blastocyst.

Animals↗

[Microencapsulation in Na-alginate and in vitro development of sheep blastomeres].

Embryos at 4 cell stage obtained from Sarda ewes superovulated with FSHp (Sigma) were micromanipulated in order to obtain single blastomeres (1/4 E). The 1/4 E have been located randomly in two groups. In the first (Group A n. 30) the 1/4 E have been put back in empty zonae pellucidae; in the second (Group B n. 21) they have been microencapsulated in sodium alginate (1.1%) by dropping cell-alginate solution in a 1.5% CaCl2. Each capsule (1 mm diameter) contained four 1/4 E. The blastomeres have been co-cultured for 5 days in CZB medium on oviductal cell monolayer in a humidified incubator (5% CO2, 95% air, 38.5 degrees C). No differences were found between the groups reaching blastocyst stage after the end of the culture period (A 50%-B 47%).

Alginates↗

Kinetics of the ontogenic and reversible hemoglobin switching in the mouflon (Ovis musimon) and sheep x mouflon hybrid.

1. Hemoglobin (Hb) switching in the perinatal life of wild mouflon (Ovis musimon) was characterized by the replacement of Hb F by 60% levels of Hb C, and subsequently of Hb C by Hb B. 2. The recently discovered Hb M variant was not replaced by Hb C; thus, Hb BM heterozygote newborns synthesized 30% Hb C at the expense of Hb B. 3. Hybrid B mouflon x B sheep synthesized only 5% Hb C at birth but were able to produce 30% Hb C in adult life following induced anemia. 4. Adult BB and BM mouflons, after the same extent of induced anemia, synthesized HB C levels similar to those produced at birth. The results indicate a mouflon beta-globin gene cluster arrangement similar to those of sheep and goat, the beta C gene having an intermediate expression. Results also suggest a selective disadvantage in hybrid animals.

Animals↗

Haemoglobin phenotypes of the wild European mouflon sheep living on the island of Sardinia.

Haemoglobin (Hb) phenotypes have been studied in 100 wild European mouflons living on the island of Sardinia by means of isoelectric focusing (pH 6.7-7.7 range) of the native tetramers, acid-urea-Triton gel-electrophoresis, and reversed-phase HPLC of globin chains. The result indicates the presence of two beta-globin alleles one of which, corresponding to the beta B, being the most common (f = 0.94). None were carriers of the earlier described Hb A. The new Hb was provisionally named Hb M. Severely anaemic mouflons were able to synthesize Hb C at expense of the Hb B alone, thus suggesting structural and physiological homologies between mouflon beta B and sheep beta A globin genes, and between the newly observed beta M allele and the beta B of the domestic Sardinian sheep.

Alleles↗

[In vitro dissection and development of sheep embryos after preservation at very low temperature (-196 degrees C)].

Embryos obtained from Sardinian breed ewes superovulated with FSH-p (Sigma) were frozen at -196 degrees C in liquid nitrogen. After 6 months storage, the embryos (12, all at the compact morula stage), were thawed in a water bath at 39 degrees C for 30 minutes. Six embryos were dissected with a Leitz micromanipulator using a simplified technique. Both demi and intact embryos, were cultured in medium TCM 199 + 10% FCS at 38 degrees C in 5% CO2 for 24 hours. Only five demi-embryos (41.6%) became blastocysts versus 4 whole embryos (66.6%) after the culture period. Splitting as our results show, lowers the embryo viability after freezing-thawing, but it can be used in certain instances to obtain genetic improvement in the Sardinian breed.

Animals↗

[In vitro separation and development of sheep blastomeres].

Four cell embryos collected by laparatomy from Sardinian breed ewes superovulated with FSH-p (16 mg Sigma), were divested of their zonae pellucidae (ZP) by micromanipulation or chemical methods (pronase 0.5%, tyrode pH 2.2). The blastomeres were separated by pipetting using a flame polished pasteur pipette in a Ca free medium (PBS. Sigma) and were inserted into previously evacuated Z.P. using a Leitz micromanipulator. The Z.P. were removed either mechanically or with acid tyrode; pronase was unable to digest them after incubation at 30 degrees C for 120 minutes. The single blastomeres were cocultured on a monolayer of ovine oviductal epithelial cells in TCM 199 + 10 FCS at 38 degrees C in 5% CO2 for 60 hours. No developments were observed in blastomeres obtained by acid digestion of the ZP while 50% of the other blastomeres continued their development until the 16 cell stages. Our results suggest that coculture with oviductal epithelial cell monolayers can support in vitro development of single ovine blastomeres.

Animals↗

[Oxygen affinity of mouflon blood].

Hemoglobin phenotypes of European mouflon and sheep were analyzed by isoelectric focusing; the results show that the sheep HbA migrated faster than that of other animals, while the mouflon HbA was more anodic than the sheep HbB. The oxygen dissociation curve of blood from mouflon is similar to that of sheep with HbA. The authors suggest that the mouflon should not be considered a direct ancestor of the Sardinian breed of sheep.

Animals↗