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P D Cetica

Publications and source records attributed to P D Cetica.

8 recordsLinked to original sources

Reactive oxygen species in bovine embryo in vitro production.

Oxidative modifications of cell components due to the action of reactive oxygen species (ROS) is one of the most potentially damaging processes for proper cell function. However, in the last few years it has been observed that ROS participate in physiological processes. The aim of this work was to determine ROS generation during in vitro production of bovine embryos. Cumulus-oocyte complexes were recovered by aspiration of antral follicles from ovaries obtained from slaughtered cows and cultured in medium 199 for 22 h at 39 degrees C in 5% CO2: 95% humidified air. In vitro fertilization was carried out in IVF-mSOF with frozen-thawed semen in the same culture conditions and embryo in vitro culture in IVC-mSOF at 90% N2: 5% CO2: 5% O2. ROS was determined in denuded oocytes and embryos at successive stages of development by the 2',7'-dichlorodihydrofluorescein diacetate fluorescent assay. ROS production was not modified during oocyte maturation. However, a gradual increase in ROS production was observed up to the late morula stage during embryo in vitro culture (P < 0.05). In expanded blastocysts, ROS level decreased to reach values similar to the corresponding in oocytes. In the bovine species, the variation in ROS level during the complete process of embryo in vitro production was determined for the first time.

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Influence of oocyte-secreted factors and culture duration on the metabolic activity of bovine cumulus cell complexes.

Intracellular communication between the cumulus cell complex and the oocyte is essential for numerous processes during oocyte maturation. The aim of this study was to determine the interaction between oocyte-secreted factors and the metabolic activity of bovine cumulus cell complexes during in vitro maturation (IVM). Cumulus-oocyte complexes (COCs) were aspirated from ovaries derived from an abattoir and divided into four treatment groups: (i) intact COCs, (ii) oocytectomized complexes (OOX), in which the ooplasm was microsurgically removed, (iii) OOX co-cultured with denuded oocytes (OOX+DO) and (iv) DO. The complexes were cultured individually in IVM media. After 0-4, 10-14 and 20-24 h of culture, the utilization of oxygen, glucose, pyruvate and L-lactate by the complexes was measured. The metabolic activity of the DO was undetectable. There were no significant differences in metabolic measurement among any of the treatment groups, indicating that the metabolism of the cumulus complex is not affected by the presence of the oocyte. When metabolic activity for the complexes was analysed relative to time in culture, there was an approximate twofold increase in the consumption of oxygen, glucose and pyruvate over the 24 h period (P<0.05), although production of L-lactate remained constant. The relationship between total glucose uptake and L-lactate production indicated that the majority of glucose consumed at the start of culture was being utilized via glycolysis, but by the cessation of the maturation period, there was significant utilization of glucose elsewhere, possibly for the formation of cumulus extracellular matrix. These results indicate that metabolism of COC does not reflect biochemical activity of the oocyte. Nevertheless, the metabolic requirements of the COC increase throughout maturation.

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Antioxidant enzyme activity and oxidative stress in bovine oocyte in vitro maturation.

Reactive oxygen species (ROS) production is a normal process of cell metabolism. In vitro environments usually increase cell production of ROS, which has been implicated as a main cause of cell damage. Nevertheless, the role of ROS in oocyte in vitro maturation (IVM) is controversial. In most cells, enzymatic antioxidant systems can attenuate the effect of oxidative stress by scavenging ROS. The aim of this work was to determine whether: (1) standard conditions of bovine oocyte IVM are responsible for oxidative stress; (2) cumulus cells participate in protection against oxidative stress of the oocyte; and (3) enzymatic antioxidant activity is present in oocytes and cumulus cells. Cumulus-oocyte complexes (COCs) were matured in TCM-199 + 10% steer serum for 24 h at 39 degrees C in 5% CO2:95% humidified air. Oxidative stress was determined by the 2',7'-dichlorofluorescein diacetate assay. Superoxide dismutase (SOD), glutathione peroxidase, and catalase activities were measured spectrophotometrically. Under standard conditions of in vitro maturation, there was no increase in ROS production per COC (P > 0.05), but ROS level per cumulus cell diminished. There was no modification in ROS levels in oocytes matured in the presence versus the absence of their surrounding cumulus cells ( P > 0.05). To the best of our knowledge, the presence of SOD, glutathione peroxidase and catalase activities were detected in oocytes and cumulus cells for the first time. Enzymatic units were lower in denuded oocytes with respect to cumulus (P < 0.05), accounting for 37% for SOD, 25% for glutathione peroxidase, and 11% for catalase of the total COC units. Specific enzyme activity diminished in cumulus cells (P > 0.05) and increased in oocytes due to maturation (P > 0.05). The presence of activity of an enzymatic antioxidant system in the bovine oocyte would regulate in part ROS levels during IVM. Oocytes could be capable of controlling the increase in ROS because of the presence of their own enzymatic antioxidant system, SOD having the highest specific activity with respect to cumulus cells.

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Comparative morphologic placental types in Dasypodidae (Chaetophractus villosus, Cabassous chacoensis, Tolypeutes matacus and Dasypus hybridus).

Information about the morphology of placentas in armadillos is scarce, except for D. novemcinctus. A comparative study of morphologic placental types in armadillos is important in order to have a comprehensive view of the peculiar reproductive physiology in this family. The aim of this paper is to perform a comparative analysis of the morphological features of the placenta in Chaetophractus villosus, Cabassous chacoensis, Tolypeutes matacus and Dasypus hybridus in order to classify them in accordance with Grosser (1909). The placentas were studied macroscopically and histologically (light microscopy in 1 micron thick sections and electron microscopy for fine structure). The macroscopic study in the 4 studied species showed a similar pear-shaped placenta homogeneously villosus in almost all the surface. The histological analysis showed that the 4 studied species had a hemochorial type of placenta. This type of placenta was also found in D. novemcinctus (Dasypodidae), but it is different from those described for other xenarthrans. Hemochorial types of placenta have also been described in more modern mammals. Despite the many primitive features of the armadillos and the different anatomical and physiological features between the genuses of dasypodids, all the studied species share this structural type of placenta.

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Effect of lactate dehydrogenase activity and isoenzyme localization in bovine oocytes and utilization of oxidative substrates on in vitro maturation.

Oocyte nutritional metabolism changes during maturation in order to increase the energy available to support metabolic requirements. The aim of this work was to study pyruvate and lactate utilization as oxidative substrates on IVM and lactate dehydrogenase (LDH) activity and localization of their isoenzymes in bovine oocytes. Immature cumulus-oocyte complexes (COCs) were recovered by aspiration of antral follicles in ovaries obtained from slaughtered cows. The COCs and denuded oocytes were separately cultured in TCM-199 with steer serum (controls) and were supplemented with pyruvate, lactate or lactate plus NAD for 24 h at 39 degrees C in 5% CO2:95% humidified air. No significant differences were found in IVM rates of COCs matured according to the various treatments (P>0.05). The IVM rate in denuded oocytes without supplementation was 47.8%. The presence of pyruvate in the culture medium resulted in an increased number of matured denuded oocytes (59.4%; P<0.05), but the addition of lactate failed to improve the IVM rate of matured denuded oocytes (47.6%, P>0.05). When the medium was supplemented with lactate plus NAD, the IVM rate of denuded oocytes likewise failed to differ from that obtained with the addition of pyruvate (59.9%, P>0.05). The LDH activity in immature and matured COCs and denuded oocytes was (3.1+/-1.6) 10(-3), (3.3+/-1.6) 10(-3) U/COC, (5.2+/-2.0) 10(-5), (5.4+/-3.5) 10(-5) U/oocyte with pyruvate as substrate, and (1.2+/-0.5) 10(-3), (1.0+/-0.5) 10(-3) U/COC, (2.2+/-0.1) 10(-5), (2.5+/-1.4) 10(-5) U/oocyte respectively, with lactate; no significant differences due to maturation status were observed (P>0.05; n = 9 for each LDH activity). Electrophoresis disclosed that the principal band corresponded to the LDH-1 isoenzyme in oocytes, while there was no predominance of any isoenzyme in cumulus cells. Due to the fact that LDH-1 is the main oocyte isoenzyme, the pyruvate used during oocyte maturation could be partly produced from lactate when the NAD supply is adequate. Cumulus cells would be responsible for providing pyruvate and/or lactate as oxidative substrates to be used by the bovine oocyte and this supply would be regulated by the LDH activity in these cells.

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Study of evaluation criteria used for in vitro bovine oocyte selection and maturation.

Production of bovine preimplantation embryos in vitro requires beneficial maturation conditions and high quality oocytes at the germinal vesicle stage. The current classification of oocytes is based on character of the cumulus cell investment around the oocyte. We wished to study the nuclear stage of immature oocytes selected for in vitro maturation according to cumulus cell character and, in the other hand, to compare the relationship among 3 parameters utilized to evaluate in vitro maturation of bovine oocytes (degree of cumulus expansion, meiotic maturation rate and in vitro fertilization rate) when fetal calf serum, steer serum and bovine follicular fluid supplementation were used. Ovaries were collected at an abattoir and the oocytes harvested. As regards selection criteria, immature oocytes were classified as Class A, B, C and D according to the character of the cumulus cells. A high percentage of Class A oocytes (87.7%) were in the germinal vesicle stage with respect to the other classes (p < 0.05). Significant differences were found in the meiotic maturation rate in Class A oocytes (76.5%) versus those of the other classes (p < 0.05). The meiotic maturation rate diminished to 47.5% when Class A oocytes were denuded and then matured in vitro (p < 0.05). As regards maturation criteria, there was no cumulus expansion when oocytes were matured in TCM-199 without supplementation, partial expansion with the addition of fetal calf serum and full expansion when supplemented with steer serum or bovine follicular fluid. No significant differences were found in the meiotic maturation rate for the various treatments. In vitro fertilization rate was significantly lower in media without supplementation versus supplemented media (p < 0.05), but no significant differences were found between the supplemented media inter se. There is no direct relationship between the three studied parameters to evaluate in vitro maturation. Class A oocytes are the most likely to mature in vitro as they not only have a close association with their surrounding cumulus cells, but are also very numerous in the germinal vesicle stage. The degree of cumulus expansion and the meiotic maturation rate have a relative importance in evaluating in vitro maturation, as oocyte maturation implies not only nuclear events but also at other cellular levels, as evaluated by in vitro fertilization.

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Effect of alpha-tocopherol and ascorbic acid on bovine in vitro fertilization.

The aim of this work was to study the effect of alpha-tocopherol (vitamin E) and ascorbic acid on the in vitro fertilization process. Frozen bovine semen was prepared using extenders with and without addition of vitamin E. Samples were capacitated with heparin in the fertilization medium. In vitro matured oocytes were inseminated with spermatozoa frozen with and without vitamin E and, after thawing, fertilized in TALP medium (control) and in TALP medium with vitamin E (1 mg/ml), with ascorbic acid (5 mM) and with vitamin E plus ascorbic acid. Gametes were incubated in the respective fertilization medium for 48 h; those frozen without vitamin E yielded 75, 76, 69 and 49% of fertilized oocytes in the control, vitamin E, ascorbic acid and vitamin E plus ascorbic acid media, respectively. The last value was significantly different (P < 0.01). In bovine sperm frozen with vitamin E, fertilization rates were 74, 50, 47 and 34%, respectively for the 4 groups. Values observed for the different supplements were significantly different inter se (P < 0.01), except between the media with vitamin E and with ascorbic acid. These results indicate that preserved antioxidant capacity of vitamin E impairs the success of the in vitro fertilization process.

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Evolutionary sperm morphology and morphometry in armadillos.

Little is known about the evolution of vertebrate spermatozoa. In most eutherian taxa a high degree of uniformity in sperm shapes and dimensions among species was observed. The aim of this work is to trace a possible evolutionary change in sperm morphology and morphometry in dasypodids. The main difference between the spermatozoa of the studied armadillos is the shape of the sperm heads. We have classified the spermatozoa into 4 different groups according with their head shapes. Sperm from group 1 (Dasypus) are considered ancestral and are clearly separated from the others. The remaining sperm types are derivative ones; those from group 2 (Tolypeutes) are farther from those of groups 3 (Priodontes and Cabassous) and 4 (Chaetopractus, Zaedyus and Euphractus) which would have recently differentiated from each other. The sperm shape and size are not constant across taxa in armadillos; an important evolutive differentiation was established on the sperm morphology and morphometry between the different genera in Dasypodidae.

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