Search results for "Calcium carbonate"

showing 10 items of 175 documents

Histologic and histomorphometric assessment of eggshell-derived bone graft substitutes on bone healing in rats

2013

Objective: The objective of this study was to histologically and histomorphometrically evaluate the efficacy of the new formulations of eggshell-derived calcium carbonate in rats. Study Design: The study was conducted on 30 adult male rats. Four standardized and circular intrabony defects were created in the both maxilla and mandibula of each animal. Three different graft materials were prepared as follows: 1) Material A: Eggshell-derived calcium carbonate combined with carrageenan gel, 2) Material B: Eggshell-derived calcium carbonate combined with xanthan gum gel, and 3) Material C: Eggshell-derived calcium carbonate powder. The right mandibular defect sites were grafted with Material A i…

Adult malebusiness.industryResearchDentistryOdontologíaFibrous tissueBone healing:CIENCIAS MÉDICAS [UNESCO]Biocompatible materialCiencias de la saludOsteoid Formationchemistry.chemical_compoundCalcium carbonatechemistryMaxillaBiomaterials and Bioengineering in DentistryUNESCO::CIENCIAS MÉDICASMedicineEggshellbusinessGeneral DentistryJournal of Clinical and Experimental Dentistry
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Phase selection of calcium carbonate through the chirality of adsorbed amino acids.

2007

Alaninechemistry.chemical_classificationModels MolecularAlanineInorganic chemistryStereoisomerismStereoisomerismGeneral ChemistryHydrogen-Ion ConcentrationCatalysislaw.inventionAmino acidCalcium Carbonatechemistry.chemical_compoundCalcium carbonatechemistrylawMicroscopy Electron ScanningAdsorptionHomochiralityCrystallizationAmino AcidsChirality (chemistry)CrystallizationBiomineralizationAngewandte Chemie (International ed. in English)
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Decomposition of ammonium sulfate residue in a high solid/gas ratio suspension state with an industrial-scale reactor system (production line)

2015

Abstract Ammonium sulfate residue is a particulate solid and is produced during the manufacture of ammonium sulfate fertilizer. The residue used in this study contained a large portion of calcium carbonate, from which active lime (CaO) was recovered via thermal decomposition. We used a purpose-built device to decompose the residue in a semi-suspension state. We found that CaO had the highest activity when residue was decomposed at 850–900 °C. Our experiments indicated that ammonium sulfate residue should be decomposed in a suspension state to produce active CaO. Based on our laboratory test findings, an industrial-scale production line with a high solid/gas ratio in a suspension state was d…

Ammonium sulfateGeneral Chemical EngineeringInorganic chemistryThermal decompositionengineering.materialParticulatesDecompositionchemistry.chemical_compoundResidue (chemistry)Calcium carbonatechemistryengineeringGeneral Materials ScienceCitric acidLimeParticuology
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Amorphous, nanocrystalline and crystalline calcium carbonates in biological materials

2010

Raman spectroscopy is a powerful tool in identifying different calcium carbonate polymorphs. Here, the method is applied to cultured pearls from freshwater (genus Hyriopsis) and marine bivalve species (Pinctada maxima) as well as to shells of Diplodon chilensis patagonicus bivalves. Raman spectra for vaterite, detected for the first time in an adult shell, and amorphous calcium carbonate (ACC) are discussed. Results for ACC are compared with those of synthetically produced ACC and with the Raman spectroscopic features of stable biogenic ACC from the crustacean Porcellio scaber. Decomposition of the most intense signal of all calcium carbonate polymorphs—the ν1 symmetric stretching mode of t…

Analytical chemistryMineralogyAmorphous calcium carbonateNanocrystalline materialAmorphous solidchemistry.chemical_compoundCrystallinitysymbols.namesakeCalcium carbonatechemistryVateritesymbolsCarbonateGeneral Materials ScienceRaman spectroscopySpectroscopyJournal of Raman Spectroscopy
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Common genetic denominators for Ca++-based skeleton in Metazoa: role of osteoclast-stimulating factor and of carbonic anhydrase in a calcareous spong…

2012

Calcium-based matrices serve predominantly as inorganic, hard skeletal systems in Metazoa from calcareous sponges [phylum Porifera; class Calcarea] to proto- and deuterostomian multicellular animals. The calcareous sponges form their skeletal elements, the spicules, from amorphous calcium carbonate (ACC). Treatment of spicules from Sycon raphanus with sodium hypochlorite (NaOCl) results in the disintegration of the ACC in those skeletal elements. Until now a distinct protein/enzyme involved in ACC metabolism could not been identified in those animals. We applied the technique of phage display combinatorial libraries to identify oligopeptides that bind to NaOCl-treated spicules: those oligop…

Anatomy and PhysiologyMarine and Aquatic Scienceslcsh:MedicineBiochemistryCalcium Chloridechemistry.chemical_compoundMolecular Cell BiologySycon raphanuslcsh:ScienceCarbonic AnhydrasesSclerocytechemistry.chemical_classification0303 health sciencesMultidisciplinaryCalcareous spongebiology030302 biochemistry & molecular biologyIntracellular Signaling Peptides and ProteinsRecombinant ProteinsAmorphous calcium carbonatePoriferaEnzymesChemistrymedicine.anatomical_structureBiochemistryMedicineOligopeptidesResearch ArticleBiotechnologyDNA ComplementaryMolecular Sequence DataMarine BiologyCalcium Carbonate03 medical and health sciencesSponge spiculeOsteoclastCarbonic anhydraseChemical BiologymedicineAnimalsAmino Acid SequenceBiology030304 developmental biologySequence Homology Amino AcidEvolutionary Developmental Biologylcsh:Rbiology.organism_classificationEnzymechemistryEarth Sciencesbiology.proteinCalciumlcsh:QPeptidesPhysiological ProcessesDevelopmental BiologyPLoS ONE
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Natural Compounds as Sustainable Additives for Biopolymers

2020

In the last few decades, the interest towards natural compounds, coming from a natural source and biodegradable, for biopolymers is always increasing because of a public request for the formulation of safe, eco-friendly, and sustainable materials. The main classes of natural compounds for biopolymers are: (i) naturally occurring fillers (nFil), such as nano-/micro- sized layered alumino-silicate: halloysite, bentonite, montmorillonite, hydroxyapatite, calcium carbonate, etc.; (ii) naturally occurring fibers (nFib), such as wood and vegetable fibers; (iii) naturally occurring antioxidant molecules (nAO), such as phenols, polyphenols, vitamins, and carotenoids. However, in this short review, …

AntioxidantPolymers and Plasticsmedicine.medical_treatmentbiopolymersReviewengineering.materialHalloysiteNatural (archaeology)lcsh:QD241-441chemistry.chemical_compoundnatural fiberslcsh:Organic chemistrybiopolymermedicineOrganic chemistryPhenolsnatural antioxidantsnatural fillerSettore CHIM/06 - Chimica OrganicaGeneral Chemistrynatural fibernatural fillersSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiMontmorilloniteCalcium carbonatechemistryPolyphenolBentoniteengineeringPolymers
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Primary Cell Culture of Fresh Water Hyriopsis cumingii Mantle/Pearl Sac Tissues and Its Effect on Calcium Carbonate Mineralization

2014

Primary cell cultures of the fresh water Hyriopsis cumingii mantle and pearl sac tissues were produced in this study, and the influence of the tissue, cells, and secreted protein on calcium carbonate crystal nucleation and growth was studied. The study contributes to a further understanding of the influence of organic matrices on CaCO3 crystal formation. This research started from the protein level to the tissue/cell level, which is crucial for understanding the inorganic deposition process. The new data also add relevant theoretical approaches to an overall understanding of biomineralization processes. In the experimental groups with mantle or pearl sac tissue, the growth patterns of arago…

AragoniteMineralogyCrystal growthGeneral Chemistryengineering.materialCondensed Matter PhysicsMineralization (biology)Amorphous calcium carbonatechemistry.chemical_compoundCalcium carbonatechemistryCell cultureBiophysicsengineeringGeneral Materials ScienceMantle (mollusc)BiomineralizationCrystal Growth & Design
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Micro-Raman spectroscopy of pigments contained in different calcium carbonate polymorphs from freshwater cultured pearls

2008

The metastable calcium carbonate polymorph vaterite has recently been found to occur commonly in freshwater cultured pearls from Japan and China. Organic pigment molecules in these vaterite regions of freshwater cultured pearls were analysed by resonance and near-resonance micro-Raman spectroscopy, in single spectra and in mapping modes and are compared with their aragonitic counterparts. Four different excitation wavelengths (487.9, 514.5, 532.2 and 632.8 nm) were used, resulting in differential increase of resolution for the pigments. Although vaterite areas were always lightly coloured (light yellow, light brown or white), ten different pigments were identified and a single colour is for…

AragoniteMineralogyengineering.materialConjugated systemResonance (chemistry)Crystallographysymbols.namesakechemistry.chemical_compoundPigmentCalcium carbonatechemistryVateritevisual_artengineeringsymbolsvisual_art.visual_art_mediumGeneral Materials ScienceRaman spectroscopySpectroscopySpectroscopyJournal of Raman Spectroscopy
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Bone Scaffolds Based on Degradable Vaterite/PEG‐Composite Microgels

2019

Vaterite, a metastable modification of calcium carbonate, embedded in a flexible microgel packaging with adjustable mechanical properties, functionality, and biocompatibility, provides a powerful scaffolding for bone tissue regeneration, as it is easily convertible to bone-like hydroxyapatite (HA). In this study, the synthesis and physical analysis of a packaging material to encapsulate vaterite particles and osteoblast cells into monodisperse, sub-millimeter-sized microgels, is described whereby a systematic approach is used to tailor the microgel properties. The size and shape of the microgels is controlled via droplet-based microfluidics. Key requirements for the polymer system, such as …

BiocompatibilityDispersityBiomedical EngineeringPharmaceutical Science02 engineering and technology010402 general chemistryBone tissue01 natural sciencesBone and BonesCalcium CarbonateBiomaterialschemistry.chemical_compoundOsteogenesisVateritePEG ratiomedicineddc:610chemistry.chemical_classificationMicrogelsOsteoblastPolymer021001 nanoscience & nanotechnology0104 chemical sciencesmedicine.anatomical_structurechemistryChemical engineering0210 nano-technologyGelsEthylene glycol
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Synthesis of calcium carbonate biological materials: how many proteins are needed?

2013

In Nature, calcium carbonate biomineralizations are the most abundant mineralized structures of biological origin. Because many exhibit remarkable characteristics, several attempts have been made to use them as substitution materials for bone reconstruction or as models for generating biomimetic composites that exhibit tailored properties. CaCO3biomineralizations contain small amounts of amalgamate of proteins and polysaccharides that are secreted during the calcification process. They contribute to control the morphology of the crystallites and to spatially organize them in well-defined microstructures. These macromolecules, collectively defined as the skeletal matrix, have been the focus …

Biomimetic materialsMaterials scienceNanotechnology02 engineering and technologyProteomics03 medical and health scienceschemistry.chemical_compoundmolluscproteomicsGeneral Materials ScienceOrganic matrixcalcium carbonate[SDV.IB.BIO]Life Sciences [q-bio]/Bioengineering/Biomaterialscoral030304 developmental biologyorganic matrix0303 health sciencesMechanical EngineeringMean value021001 nanoscience & nanotechnologybiomineralization[ SDV.IB.BIO ] Life Sciences [q-bio]/Bioengineering/BiomaterialsBiological materialsCalcium carbonatechemistryMechanics of Materialsshell0210 nano-technologyproteinBiomineralizationMacromolecule
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