73 resultados para percoll


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The objective of this study was to characterize acrosomal ultrastructure following discontinuous Percoll gradient centrifugation of cryopreserved bovine sperm. Semen was collected from six bulls of different breeds and three ejaculates per bull were evaluated. Frozen semen samples were thawed and the acrosomal region of sperm cells was evaluated by transmission electron microscopy (TEM) before (n = 18) and after (n = 18) Percoll centrifugation. The evaluation of 20 sperm heads from each of the 36 samples analyzed ensured that a large number of cells were investigated. The data were subjected to analysis of variance at a level of significance of 5%. Percoll centrifugation reduced the percentage of sperm exhibiting normal acrosomes (from 61.77 to 30.24%), reduced the percentage of sperm presenting atypical acrosome reactions (from 28.38 to 4.84%) and increased the percentage of sperm exhibiting damage in the acrosome (from 6.14 to 64.26%). The percentage of sperm with typical acrosome reactions was not significantly different before (3.70%) and after (0.67%) centrifugation. TEM distinguished four different types of acrosomal status and enabled ultrastructural characterization of acrosomal injuries. The percentage of sperm exhibiting normal acrosomes decreased and damage in the acrosome was the most frequent acrosomal injury with the Percoll gradient centrifugation protocol utilized.

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Light-microscopic and electron-microscopic studies of the tropical marine sponge Haliclona sp. (Or der: Haplosclerida Family: Haliclonidae) from Heron Island, Great Barrier Reef, have revealed that this sponge is characterized by the presence of dinoflagellates and by nematocysts. The dinoflagellates are 7-10 mu m in size, intracellular, and contain a pyrenoid with a single stalk, whereas the single chloroplast is branched, curved, and lacks grana. Mitochondria are present, and the nucleus is oval and has distinct chromosomal structure. The dinoflagellates are morphologically similar to Symbiodinium microadriaticum, the common intracellular symbiont of corals, although more detailed biochemical and molecular studies are required to provide a precise taxonomic assignment. The major sponge cell types found in Haliclona sp, are spongocytes, choanocytes, and archaeocytes; groups of dinoflagellates are enclosed within large vacuoles in the archaeocytes. The occurrence of dinoflagellates in marine sponges has previously been thought to be restricted to a small group of sponges including the excavating hadromerid sponges; the dinoflagellates in these sponges are usually referred to as symbionts. The role of the dinoflagellates present in Haliclona sp. as a genuine symbiotic partner requires experimental investigation. The sponge grows on coral substrates, from which it may acquire the nematocysts, and shows features, such as mucus production, which are typical of some excavating sponges. The cytotoxic alkaloids, haliclonacyclamines A and B, associated with Haliclona sp. are shown by Percoll density gradient fractionation to be localized within the sponge cells rather than the dinoflagellates. The ability to synthesize bioactive compounds such as the haliclonacyclamines may help Haliclona sp. to preserve its remarkable ecological niche.

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O presente estudo visou verificar o efeito sobre alguns parâmetros da seleção por gradiente de Percoll® e da adição de plasma seminal do sêmen eqüino preservado a +4oC. O primeiro experimento avaliou a taxa de recuperação de espermatozóides após seleção por Percoll® em diferentes protocolos de centrifugação. Foram realizadas 5 coletas de sêmen de um garanhão. Imediatamente após a coleta, o sêmen foi avaliado quanto à motilidade, vigor e concentração. Foram retiradas duas amostras de 4 mL, diluídas em leite desnatado UHT com concentrações de 50 e 100 x 106 espermatozóides por mL cada. Cada uma destas amostras foi dividida em 4 alíquotas de 1 mL, que foram então colocadas sobre Percoll® e submetidas a diferentes tempos e velocidades de centrifugação. V1 - 200 g (5 min) + 800 g (10 min); V2 - 800 g (10 min); V3 - 800 g (15 min); V4 - 800 g (20 min). Após esse processo, o sobrenadante foi desprezado e o pellet de cada alíquota ressuspendido com 0,5 mL de leite UHT. As 8 amostras foram novamente avaliadas para concentração, motilidade e vigor. O segundo experimento estudou o efeito da adição de plasma seminal de diferentes qualidades ao sêmen eqüino selecionado por gradiente de Percoll® e resfriado a +4°C por até 72 horas. Foram utilizados 40 ejaculados de 4 garanhões, sendo dois com boa qualidade de sêmen e dois com baixa qualidade de sêmen. Imediatamente após a coleta, o sêmen foi avaliado quanto à motilidade, vigor e concentração e preparadas cinco frações de 100x106 espermatozóides, diluídas 1:1 (v/v) em EDTA-Glicose. Quatro delas, constituídas por 1mL a 2mL, foram depositadas sobre Percoll®. A fração restante foi centrifugada em tubo de vidro de 10 mL, sob as mesmas condições de tempo e velocidade das demais amostras. Foi realizada centrifugação por 5 minutos em 200 g, seguida de 10 minutos em 800 g. O sobrenadante foi descartado e o pellet ressuspendido com leite UHT desnatado compondo os seguintes tratamentos: Sp: 1,5 mL de leite UHT desnatado sem adição de plasma seminal; Hp: 1,425 mL de leite UHT desnatado acrescido de 75 L de plasma seminal homólogo; Ap: 1,425 mL de leite UHT desnatado acrescido de 75 L de plasma seminal do pool de alta qualidade; Bp: 1,425mL de leite UHT desnatado acrescido de 75 L plasma seminal do pool de baixa qualidade; Cc: foi centrifugada sem seleção por Percoll®, teve seu sobrenadante descartado e ressuspendida com 2 mL de leite UHT; C : uma amostra de sêmen diluído em leite UHT foi mantida como controle no processo de armazenamento. As amostras foram resfriadas a +4°C e examinadas a cada 24h até as 72 horas em relação à motilidade, funcionalidade de membrana (teste hiposmótico) e integridade de membrana (CFDA/PI). A seleção por gradiente descontínuo de Percoll® 90/45% mostrou-se efetiva na recuperação de espermatozóides com motilidades progressiva e total. A adição de 5% de plasma seminal ou a ausência de plasma não influenciaram os valores da motilidade das amostras selecionadas por gradiente de Percoll®. A seleção por Percoll não influenciou na percentagem de células com membrana plasmática funcional. Concentrações superiores a 2% de plasma seminal resultaram em decréscimo do número de células com membrana funcional, enquanto que as amostras sem plasma seminal apresentaram os melhores resultados e o grupo controle, que apresentava a maior percentagem de plasma, os piores. A utilização de Percoll® não separou células com alteração de membrana. A percentagem de células com membrana completamente íntegra foi significativamente maior nas amostras que sofreram processo de centrifugação, independentemente da seleção. O processo de seleção por Percoll® foi efetivo na recuperação de espermatozóides de eqüino com motilidade progressiva, mas não selecionou espermatozóides quanto à funcionalidade nem à integridade de membrana. Concentrações inferiores a 2% de plasma seminal melhoraram a funcionalidade de membrana. A ausência de plasma seminal melhorou os resultados de integridade das membranas plasmática e acrossomal; e a adição de plasma de alta qualidade não melhorou a motilidade de espermatozóides selecionados por Percoll®.

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The aim of this work was to assess the morphometry and chromatin integrity of bovine sperm head after a three layers discontinuous Percoll (TM) density gradient centrifugation. Frozen semen doses were obtained from six bulls of different breeds, including three taurine and three Zebu animals. Three ejaculates per bull were evaluated. The semen doses were thawed and two smears were made from each sample before (control) and after the Percoll (TM) centrifugation (Percoll (TM) group). The smears were stained with toluidine blue and grayscale digital images were captured and processed in Scilab environment software. It was observed that chromatin heterogeneity was reduced (P<0.05) and chromatin decondensation was increased (P<0.05) after the Percollm treatment utilized. In addition, it was observed that sperm head length was higher (P<0.05) and the side symmetry was lower (P<0.05) in centrifuged sperm cells. When analyzed separately by subspecies, it was observed that the decrease (P<0.05) in chromatin heterogeneity and the increase (P<0.05) in chromatin decondensation occurred in Zebu sperm heads. In addition, the length and the width:length ratio of sperm heads was affected by Percoll (TM) centrifugation in Zebu semen. In conclusion, the three layers discontinuous Percoll (TM) centrifugation increased the chromatin decondensation and the morphometric alterations of frozen-thawed bovine semen. However, the real implication of these findings in fertility rates of centrifuged sperm must be investigated. (C) 2011 Elsevier B.V. All rights reserved.

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The objective of this study was to evaluate the quality of bovine frozen-thawed sperm cells after Percoll gradient centrifugation. Frozen semen doses were obtained from six bulls of different breeds, including three taurine and three Zebu animals. Four ejaculates per bull were evaluated before and after discontinuous Percoll gradient centrifugation. Sperm motility was assessed by computer-assisted semen analysis and the integrity of the plasma and acrosomal membranes, as well as mitochondrial function, were evaluated using a combination of fluorescent probes propidium iodide, fluorescein isothiocyanate-conjugated Pisum sativum agglutinin and 5,5',6,6'-tetrachloro-1,1',3,3'-tetraethylbenzimidazolcarbocyanine iodide. The procedure of Percoll gradient centrifugation increased the percentage of total and progressive sperm motility, beat frequency, rectilinear motility, linearity and rapidly moving cells. In addition, the percentage of cells with intact plasma membrane and mitochondrial membrane potential was increased in post-centrifugation samples. However, the percentage of sperm cells with intact acrosomal membrane was markedly reduced. The method used selected the motile cells with intact plasma membrane and higher mitochondrial functionality in frozen-thawed bull semen, but processing, centrifugation and/or the Percoll medium caused damage to the acrosomal membrane.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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The objective of this study was to characterize acrosomal ultrastructure following discontinuous Percoll gradient centrifugation of cryopreserved bovine sperm. Semen was collected from six bulls of different breeds and three ejaculates per bull were evaluated. Frozen semen samples were thawed and the acrosomal region of sperm cells was evaluated by transmission electron microscopy (TEM) before (n = 18) and after (n = 18) Percoll centrifugation. The evaluation of 20 sperm heads from each of the 36 samples analyzed ensured that a large number of cells were investigated. The data were subjected to analysis of variance at a level of significance of 5%. Percoll centrifugation reduced the percentage of sperm exhibiting normal acrosomes (from 61.77 to 30.24%), reduced the percentage of sperm presenting atypical acrosome reactions (from 28.38 to 4.84%) and increased the percentage of sperm exhibiting damage in the acrosome (from 6.14 to 64.26%). The percentage of sperm with typical acrosome reactions was not significantly different before (3.70%) and after (0.67%) centrifugation. TEM distinguished four different types of acrosomal status and enabled ultrastructural characterization of acrosomal injuries. The percentage of sperm exhibiting normal acrosomes decreased and damage in the acrosome was the most frequent acrosomal injury with the Percoll gradient centrifugation protocol utilized.

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The aim of the present study was to evaluate the selection of X chromosome of buffaloes sperm with Percoll gradients. The stock solution of Percoll was prepared in the proportion of 1:11 (1 part of Percoll:11 parts of a solution containing KCl 1M, NaH(2)PO(4) 0.1M, NaCl 1.5M and sodium HEPES 23.8 g/ml). In order to prepare 9 different gradients were added to the stocked Percoll the A solution (glicine-yolk extender) in the following proportions: 90, 80, 72, 65, 57, 49, 34 and 25%. A sample of 0.7 ml of the fresh semen was deposited at 2 ml of Percoll 80% for the sperm wash. The precipitate was put in tube with 0.7 ml of each gradient. Then, the precipitated was washed in TES solution by centrifugation (500xg for 10 minutes), and collected again and diluted in TES solution to be freeze. The presence of the F body in the spermatozoa was observed in 58.7 +/- 5.4% of the control group and in 41.2 +/- 5.4% of the treated group (p<0.01). This result showed an increment of 17.55 of male sperm in the Percoll's group. The reduction of the centrifugation force did not improve the percentage of X sperm.

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Pós-graduação em Biotecnologia Animal - FMVZ