0000000000223553

AUTHOR

Márcio R. Custódio

showing 8 related works from this author

Formation of spicules by sclerocytes from the freshwater spongeEphydatia muelleri in short-term cultures in vitro

1995

Cells from the freshwater sponge Ephydatia muelleri were isolated by dissociating hatching gemmules. During the first 24 h the cells reaggregated, but the aggregates progressively disintegrated again to single cells, among which the spicule-forming sclerocytes were recognized. Such cultures were used to study spicule (megascleres) formation in vitro. The isolated sclerocytes formed the organic central axial filament onto which they deposited inorganic silicon. The size of the spicules (200 to 350 microns in length) as well as the rate of spicule formation (1 to 10 microns/h) under in vitro conditions were similar to the values measured in vivo. Immediately after completion of spicule format…

SpiculebiologySilicatesFresh WaterCell BiologyGeneral Medicinebiology.organism_classificationIn vitroCulture MediaPoriferaCell biologyMicroscopy ElectronSpongeSponge spiculeCell cultureBotanyAnimalsEphydatia muelleriDevelopmental biologyCells CulturedDevelopmental BiologySclerocyteIn Vitro Cellular & Developmental Biology - Animal
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Evolution of Cell Adhesion Systems: Evidence for Arg-Gly-Asp-Mediated Adhesion in the Protozoan Neoparamoeba aestuarina

1995

Developmental processes in multicellular organisms require structural elements, such as adhesion molecules, to stabilize cells at functional positions. In vertebrates, a series of extracellular matrix proteins, e.g. fibronectin and laminin, are involved in cell adhesion. These proteins contain Arg-Gly-Asp [RGD] at their binding sites. Here we show that at concentrations above 2 mM the peptide GRGDSPK, comprising the tripeptide RGD (Arg-Gly-Asp), prevents the adhesiveness of cells of the marine amoeba Neoparamoeba aestuarina. In addition, elevated levels of GRGDSPK cause cells to alter their shapes from those with digitiform subpseudopodia to rounded cells with small lobed pseudopodia. These…

biologyCell adhesion moleculeMolecular Sequence DataCellIntegrinEukaryotaMicrobiologyCell biologyFibronectinExtracellular matrixStructure-Activity Relationshipmedicine.anatomical_structureLamininCell Adhesionbiology.proteinmedicineAnimalsPseudopodiaAmino Acid SequenceCell adhesionOligopeptidesThe Journal of Eukaryotic Microbiology
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Citocentrifugación como un método adicional para estudiar celomitos de equinodermos: un enfoque comparativo que combina células vivas, preparaciones …

2021

Abstract Introduction: Echinoderm coelomocytes have traditionally been investigated through a morphological approach using light microscopy, which relies on the idea of constant cell shape as a stable character. However, this can be affected by biotic or abiotic conditions. Objective: To analyze if the consistency in cell morphology offered by the cytocentrifugation method, might be used as a convenient tool to study echinoderm coelomocytes. Methods: Cells of Echinaster (Othilia) brasiliensis (Asteroidea), Holothuria (Holothuria) tubulosa (Holothuroidea), Eucidaris tribuloides, Arbacia lixula, Lytechinus variegatus, and Echinometra lucunter (Echinoidea) were spread on microscope slides by c…

Comparative cell morphologyenergy-dispersive x-ray spectroscopyinmunología de invertebradosinvertebrate immunologyEnergy-dispersive x-ray spectroscopycomparative cell morphologyvibratile cellscélulas vibrátilesMicroscopyFluorescence microscopecomparative cell morphology; echinoderm physiology; energy-dispersive x-ray spectroscopy; invertebrate immunology; spherulocytes; vibratile cells.morfología celular comparativa; fisiología de equinodermos; espectroscopía de rayos-x de energía dispersiva; inmunología de invertebrados; esferulocitos; células vibrátiles.Arbacia lixulaesferulocitosLytechinus variegatusVibratile cellsespectroscopía de rayos-x de energía dispersivamorfología celular comparativabiologyechinoderm physiologyChemistryEchinoderm physiologyEchinometra lucunterbiology.organism_classificationspherulocytesSpherulocytesfisiología de equinodermosEchinodermBiochemistryEucidaris tribuloidesInvertebrate immunologyGeneral Agricultural and Biological SciencesHolothuriaRevista de Biología Tropical
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Primmorphs generated from dissociated cells of the sponge Suberites domuncula: a model system for studies of cell proliferation and cell death

1999

Sponges (Porifera) represent the lowest metazoan phylum; they have been shown to be provided with the characteristic metazoan structural and functional molecules. One autapomorphic character of sponges is the presence of high levels of telomerase activity in all cells (or almost all cells, including somatic cells). In spite of this fact previous attempts to cultivate sponge cells remained unsuccessful. It was found that dissociated sponge cells do not replicate DNA and lose their telomerase activity. In addition, no nutrients or metabolites have been detected that would stimulate sponge cells to divide. In the present study we report the culture conditions required for the formation of mult…

AgingTelomeraseCell DeathbiologyCell divisionSomatic cellCell growthPinacodermbiology.organism_classificationModels BiologicalPoriferaMicrobiologyCell biologySuberites domunculaSpongeCell cultureAnimalsCell DivisionDevelopmental BiologyMechanisms of Ageing and Development
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Humoral responses during wound healing in Holothuria tubulosa (Gmelin, 1788)

2021

Abstract Wounds in living organisms trigger tissue-repair mechanisms. The sea cucumber (Holoturia tubulosa) is an excellent model species for achieving a better understanding of the humoral and cellular aspects involved in such healing processes. Consequently, this study assesses data on its morphometric, physiological and humoral responses 1, 2, 6, 24 and 48h after wound induction. In particular, morphometric data on the weight, width, length and coelomic-fluid volume of the species were estimated at different times during our experiments. In addition, the humoral aspects related to the enzymatic activity of esterase, alkaline phosphatase and peroxidase, as well as the cytotoxic activity o…

PhysiologySettore BIO/05 - ZoologiaBiochemistryEsteraseCytotoxic activity Echinoderm Enzyme activity Regeneration mechanism Immunity sea cucumber03 medical and health sciencesSea cucumberAnimalsHolothuriaCytotoxic T cellSettore BIO/06 - Anatomia Comparata E CitologiaMolecular Biology030304 developmental biologyWound Healing0303 health sciencesSheepbiologyBody WeightHolothuria tubulosa04 agricultural and veterinary sciencesbiology.organism_classificationEnzyme assayFISIOLOGIABiochemistry040102 fisheriesbiology.protein0401 agriculture forestry and fisheriesAlkaline phosphataseRabbitssense organsWound healingPeroxidaseComparative Biochemistry and Physiology Part B: Biochemistry and Molecular Biology
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Genome size and chromosomes in marine sponges [Suberites domuncula, Geodia cydonium]

1995

The genome size of the marine sponges Suberites domuncula and Geodia cydonium has been determined by flow cytofluorometric analysis using diamidino-phenylindole [DAPI]. Using human lymphocytes as reference the amount of DNA in cells from S. domuncula has been determined to be 3.7 pg and that of G. cydonium 3.3 pg. While no chromosomes could be identified in G. cydonium, the karyotype of the Suberites domuncula is 32 chromosomes in the diploid state. The size of the chromosomes was between 0.25 and 1.0 micron. No pronounced banding pattern was visible.

IndolesMitosisProphaseGenomeChromosomesMicrobiologychemistry.chemical_compoundProphaseAnimalsMitosisGenome sizeFluorescent DyesGenomebiologyKaryotypeDNACell BiologyGeneral Medicinebiology.organism_classificationMolecular biologyPoriferaSuberites domunculachemistryKaryotypingPloidyDNACell Biology International
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Evolutionary relationships of Metazoa within the eukaryotes based on molecular data from Porifera

1999

Recent molecular data provide strong support for the view that all metazoan phyla, including Porifera, are of monophyletic origin. The relationship of Metazoa, including the Porifera, to Plantae, Fungi and unicellular eukaryotes has only rarely been studied by using cDNAs coding for proteins. Sequence data from rDNA suggested a relationship of Porifera to unicellular eukaryotes (choanoflagellates). However, ultrastructural studies of choanocytes did not support these findings. In the present study, we compared amino acid sequences that are found in a variety of metazoans (including sponges) with those of Plantae, Fungi and unicellular eukaryotes, to obtain an answer to this question. We use…

DNA ComplementaryMolecular Sequence DataProtein Serine-Threonine KinasesBiologyGeneral Biochemistry Genetics and Molecular BiologyEvolution MolecularMonophylyCalmodulinTubulinPhylogeneticsAnimalsHSP70 Heat-Shock ProteinsAmino Acid SequenceCloning MolecularPeptide sequencePhylogenyProtein Kinase CDNA PrimersGeneral Environmental ScienceBase SequenceGeneral Immunology and MicrobiologyPhylogenetic treePhylumChoanocytefungiGeneral Medicinebiology.organism_classificationMolecular biologyPoriferaSpongeEukaryotic CellsEvolutionary biologyMolecular phylogeneticsGeneral Agricultural and Biological SciencesResearch ArticleProceedings of the Royal Society of London. Series B: Biological Sciences
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The use of an integrative approach to identify coelomocytes in three species of the genus Holothuria (Echinodermata)

2021

Coelomocytes in the Holothuroidea are traditionally identified according to their morphology through light, fluorescence, or electron microscopy. Former studies have typically used only one method, with few works combining two or more approaches. Studies using cytocentrifugation to study these cells are scarcer. Thus, for the first time, an integrative approach was used to compare coelomocytes in Holothuroidea. This approach consisted of living and stained cells, scanning electron microscopy (for spherule cells), and accurate morphometric analyses. Specifically, we used specimens of Holothuria grisea, Holothuria arenicola, and Holothuria tubulosa to test whether cytocentrifugation could be …

phagocytescytocentrifugationBIOLOGIA CELULARAnimal Science and Zoologyspherule cellsmaturation processsea cucumber
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