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1.
Pesqui. vet. bras ; 31(6): 538-542, jun. 2011. ilus
Article in Portuguese | LILACS, Sec. Est. Saúde SP | ID: lil-593234

ABSTRACT

The aim of the present study was to evaluate the cell proliferative activity, by AgNORs number, in different regions of bovine placenta throughout gestation. A total of 28 bovine placentas were separated into four groups: group I (60 to 120 days), group II (121 to 170 days), group III (171 to 220 days), and group IV (221 to 290 days). It was found a greater number of AgNORs in giant trophoblastic cells (GTC) when compared with mononuclear trophoblastic cells (MTC) (p<0,001) in all regions and gestational groups analyzed, that confirms their intensive synthesis activity in trophoblast epithelium. The central region of the placentome begins an intense proliferative activity in group II, observed by clusters, while placentomes edges showed a higher number of clusters on group III. These data suggest that the central region of the placentomes began an intense proliferative activity prior to its edge, both declines at the end of pregnancy. Interplacentomal area showed a higher number of AgNORs in the group IV, suggesting a higher proliferative activity of these cells at the end of pregnancy. The results of this study indicate that the proliferative activity, as determined by the amount of intranuclear AgNORs, exhibits patterns that are not only specific to each type of trophoblastic cells, but also for each specific region of bovine placenta throughout pregnancy.


Este estudo teve como objetivo analisar atividade proliferativa das células trofoblásticas, através da quantificação de AgNORs, em diferentes regiões da placenta bovina ao longo da gestação. Foram utilizados 28 úteros, sendo estes agrupados de acordo com as idades gestacionais: grupo I (60-120 dias); II (121- 170 dias); III (171-220 dias) e IV (221-290 dias). Foi encontrado um número significativamente maior de AgNORs nas células trofoblásticas gigantes (CTG) em relação às mononucleadas (CTM) (p<0,001) em todas as regiões e grupos gestacionais analisados, o que confirma sua intensa atividade de síntese no epitélio trofoblástico. A região central do placentônio inicia uma atividade proliferativa mais intensa já no grupo II, observada pelo número de clusters, enquanto que a margem do placentônio apresenta uma maior quantidade de clusters no grupo III. Estes dados sugerem que a região central do placentônio inicia uma intensa atividade proliferativa anteriormente a sua margem, ambas declinando no final da gestação. A área interplacentomal apresentou um maior número de AgNORs no último grupo gestacional, sugerindo uma maior atividade proliferativa dessas células no final da prenhez. Os resultados deste estudo indicam que a atividade proliferativa, determinada pela quantidade de AgNORs intranucleares, exibe padrões que são específicos não somente para cada tipo de célula trofoblástica, mas também para cada região específica da placenta bovina ao longo da gestação.


Subject(s)
Animals , Pregnancy , Cattle , Gestational Trophoblastic Disease , Trophoblastic Tumor, Placental Site/diagnosis , Trophoblastic Tumor, Placental Site/veterinary , Cell Proliferation
2.
Reprod Biol Endocrinol ; 7: 25, 2009 Mar 30.
Article in English | MEDLINE | ID: mdl-19331666

ABSTRACT

BACKGROUND: Placental and fetal growth requires high rates of cellular turnover and differentiation, which contributes to conceptus development. The trophoblast has unique properties and a wide range of metabolic, endocrine and angiogenic functions, but the proliferative profile of the bovine placenta characterized by flow cytometry analysis and its role in fetal development are currently uncharacterized. Complete understanding of placental apoptotic and proliferative rates may be relevant to development, especially if related to the pathogenesis of pregnancy losses and placental abnormalities. METHODS: In this study, the proliferation activity and apoptosis in different regions of normal bovine placenta (central and boundary regions of placentomes, placentomal fusion, microplacentomes, and interplacentomal regions), from distinct gestation periods (Days 70 to 290 of pregnancy), were analyzed by flow cytometry. RESULTS: Our results indicated that microplacentomes presented a lower number of apoptotic cells throughout pregnancy, with a higher proliferative activity by the end of gestation, suggesting that such structures do not contribute significantly to normal of placental functions and conceptus development during pregnancy. The placentome edges revealed a higher number of apoptotic cells from Day 170 on, which suggests that placentome detachment may well initiate in this region. CONCLUSION: Variations involving proliferation and apoptotic rates may influence placental maturation and detachment, compromising placental functions and leading to fetal stress, abnormalities in development and abortion, as frequently seen in bovine pregnancies from in vitro fertilization and cloning procedures. Our findings describing the pattern of cell proliferation and apoptosis in normal bovine pregnancies may be useful for unraveling some of the developmental deviations seen in nature and after in vitro embryo manipulations.


Subject(s)
Apoptosis , Cell Proliferation , Placenta/cytology , Pregnancy , Animals , Cattle , Cell Cycle , Female , Flow Cytometry , Hybridization, Genetic , Placentation
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