Search results for "Medaka"

showing 4 items of 4 documents

Use of Medaka Fish as Vertebrate Model to Study the Effect of Cocoa Polyphenols in the Resistance to Oxidative Stress and Life Span Extension.

2018

Oxidative stress (OS) can induce cell apoptosis and thus plays an important role in aging. Antioxidant foods protect tissues from OS and contribute to a healthier lifestyle. In this study, we described the used of medaka embryos (Oryzias latipes) to study the putative antioxidant capacity of dietary cocoa extract in vertebrates. A polyphenol-enriched cocoa extract regulated the expression of several genes implicated in OS, thereby protecting fish embryos from induced OS. The cocoa extract activated superoxide dismutase enzyme activity in embryos and adult fish tissues, suggesting a common mechanism for protection during embryonic development and adulthood. Furthermore, long-term feeding of …

0301 basic medicineAgingAntioxidantanimal structuresantioxidantEmbryo Nonmammalianmedicine.medical_treatmentOryziasLongevityOryziasmedicine.disease_causecocoa polyphenolsSuperoxide dismutase03 medical and health sciencesbiology.animalmedaka fishBotanymedicinelife span extensionAnimalsSodFlavonoidsCacaobiologyPlant ExtractsSuperoxide DismutaseCocoa ExtractVertebratefood and beveragesGene Expression Regulation DevelopmentalPolyphenolsVitamin K 3EmbryoHydrogen Peroxidebiology.organism_classificationEnzyme assayCell biologyOxidative Stress030104 developmental biologyembryonic structuresDietary Supplementsbiology.proteinFoxOGeriatrics and GerontologyOxidative stressRejuvenation research
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Nanog Regulates Primordial Germ Cell Migration Through Cxcr4b

2010

Abstract Gonadal development in vertebrates depends on the early determination of primordial germ cells (PGCs) and their correct migration to the sites where the gonads develop. Several genes have been implicated in PGC specification and migration in vertebrates. Additionally, some of the genes associated with pluripotency, such as Oct4 and Nanog, are expressed in PGCs and gonads, suggesting a role for these genes in maintaining pluripotency of the germ lineage, which may be considered the only cell type that perpetually maintains stemness properties. Here, we report that medaka Nanog (Ol-Nanog) is expressed in the developing PGCs. Depletion of Ol-Nanog protein causes aberrant migration of …

Fish ProteinsHomeobox protein NANOGChromatin ImmunoprecipitationReceptors CXCR4endocrine systemCell typeGenotypeOryziasBiologyNanogCxcr4bOpen Reading FramesCell MovementAnimalsPromoter Regions Genetic3' Untranslated RegionsGeneIn Situ Hybridizationreproductive and urinary physiologyHomeodomain ProteinsRegulation of gene expressionMessenger RNABinding SitesReverse Transcriptase Polymerase Chain Reactionurogenital systemThree prime untranslated regionPGCGene Expression Regulation DevelopmentalCell BiologyImmunohistochemistryPhenotypeMolecular biologyChemokine CXCL12MedakaGerm CellsPhenotypeGene Knockdown Techniquesembryonic structuresMolecular Medicinebiological phenomena cell phenomena and immunityChromatin immunoprecipitationDevelopmental BiologyStem Cells
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Nanog Regulates Proliferation During Early Fish Development

2009

Abstract Nanog is involved in controlling pluripotency and differentiation of stem cells in vitro. However, its function in vivo has been studied only in mouse embryos and various reports suggest that Nanog may not be required for the regulation of differentiation. To better understand endogenous Nanog function, more animal models should be introduced to complement the murine model. Here, we have identified the homolog of the mammalian Nanog gene in teleost fish and describe the endogenous expression of Ol-Nanog mRNA and protein during medaka (Oryzias latipes) embryonic development and in the adult gonads. Using medaka fish as a vertebrate model to study Nanog function, we demonstrate that …

Fish ProteinsHomeobox protein NANOGOryziasRex1ProliferationOryziasBiologyNanogPolymerase Chain ReactionGene expressionAnimalsRNA MessengerGonadsTranscription factorIn Situ Hybridizationreproductive and urinary physiologyCell ProliferationHomeodomain ProteinsRegulation of gene expressionCell CycleEmbryogenesisGene Expression Regulation DevelopmentalCell Biologybiology.organism_classificationImmunohistochemistryMolecular biologyMedakaDifferentiationembryonic structuresMolecular Medicinebiological phenomena cell phenomena and immunityStem cellDevelopmental BiologyStem Cells
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Autophagy

2021

In 2008, we published the first set of guidelines for standardizing research in autophagy. Since then, this topic has received increasing attention, and many scientists have entered the field. Our knowledge base and relevant new technologies have also been expanding. Thus, it is important to formulate on a regular basis updated guidelines for monitoring autophagy in different organisms. Despite numerous reviews, there continues to be confusion regarding acceptable methods to evaluate autophagy, especially in multicellular eukaryotes. Here, we present a set of guidelines for investigators to select and interpret methods to examine autophagy and related processes, and for reviewers to provide…

macroautophagy;autophagyAutophagosome[SDV]Life Sciences [q-bio]canceLC3 macroautophagyautophagosomeneurodegeneration;[SDV.BC]Life Sciences [q-bio]/Cellular BiologyAutophagy AutophagosomeNOstress vacuolestressautophagic processesstrerfluxLC3cancerguidelinesAutophagosome; cancer; flux; LC3; lysosome; macroautophagy; neurodegeneration; phagophore; stress; vacuoleSettore BIO/06 - Anatomia Comparata E Citologia[SDV.BC] Life Sciences [q-bio]/Cellular BiologyComputingMilieux_MISCELLANEOUSMedaka oryzias latipesphagophorevacuoleQHneurodegenerationAutophagosome cancer flux LC3 lysosome macroautophagy neurodegeneration phagophore stress vacuoleautophagy; autophagic processes; guidelines; autophagosome; cancer; flux; LC3; lysosome; macroautophagy; neurodegeneration; phagophore; stress; vacuolefluxmacroautophagystress.lysosomeAutophagosome; LC3; cancer; flux; lysosome; macroautophagy; neurodegeneration; phagophore; stress; vacuoleSettore BIO/17 - ISTOLOGIARC
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