Materials Map

Discover the materials research landscape. Find experts, partners, networks.

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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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The Materials Map is still under development. In its current state, it is only based on one single data source and, thus, incomplete and contains duplicates. We are working on incorporating new open data sources like ORCID to improve the quality and the timeliness of our data. We will update Materials Map as soon as possible and kindly ask for your patience.

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Duarte, Ana Rita C.

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in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (69/69 displayed)

  • 2024Assessment of oxidative stress biomarkers in Palaemon varians exposed to deep eutectic systemscitations
  • 2023Using Natural Deep Eutectic Systems as Alternative Media for Ocular Applications7citations
  • 2023Alginate–Chitosan Membranes for the Encapsulation of Lavender Essential Oil and Development of Biomedical Applications Related to Wound Healing15citations
  • 2023Menthol-based deep eutectic systems as antimicrobial and anti-inflammatory agents for wound healing27citations
  • 2023Hydrophobic DES Based on Menthol and Natural Organic Acids for Use in Antifouling Marine Coatings18citations
  • 2023Uncovering biodegradability and biocompatibility of betaine-based deep eutectic systems9citations
  • 2023Insights into therapeutic liquid mixtures and formulations towards tuberculosis therapy8citations
  • 2023Insights into therapeutic liquid mixtures and formulations towards tuberculosis therapy8citations
  • 2023Is it possible to correlate various physicochemical properties of Natural Deep eutectic systems in order to predict their behaviours as solvents?16citations
  • 2022Selective terpene based therapeutic deep eutectic systems against colorectal cancer24citations
  • 2022On the Not So Anomalous Water-induced Structural Transformations of Choline Chloride-Urea (Reline) Deep Eutectic System9citations
  • 2022Fractionated extraction of polyphenols from mate tea leaves using a combination of hydrophobic/ hydrophilic NADES32citations
  • 2022Fractionated extraction of polyphenols from mate tea leaves using a combination of hydrophobic/ hydrophilic NADES32citations
  • 2022Assessing the Influence of Betaine-Based Natural Deep Eutectic Systems on Horseradish Peroxidase35citations
  • 2022Assessment of deep eutectic solvents toxicity in zebrafish (Danio rerio)22citations
  • 2022Selective extraction and stabilization of bioactive compounds from rosemary leaves using a biphasic NADES24citations
  • 2021Natural deep eutectic systems—A new era of cryopreservation6citations
  • 2021Density of deep eutectic solvents ; The path forward cheminformatics-driven reliable predictions for mixtures33citations
  • 2021Effect of water on the structure and dynamics of choline chloride/glycerol eutectic systems72citations
  • 2021Evaluation of Deep Eutectic Systems as an Alternative to Solvents in Painting Conservation24citations
  • 2021Deep eutectic systems from betaine and polyols – Physicochemical and toxicological properties42citations
  • 2021Improved storage of influenza HA-VLPs using a trehalose-glycerol natural deep eutectic solvent system12citations
  • 2021Natural deep eutectic systems for nature-inspired cryopreservation of cells39citations
  • 2021Unravelling the nature of citric acid:l-arginine:water mixtures ; The bifunctional role of water36citations
  • 2021Low-Phytotoxic Deep Eutectic Systems as Alternative Extraction Media for the Recovery of Chitin from Brown Crab Shells35citations
  • 2021Low-Phytotoxic Deep Eutectic Systems as Alternative Extraction Media for the Recovery of Chitin from Brown Crab Shells35citations
  • 2021Influence of natural deep eutectic systems in water thermal behavior and their applications in cryopreservation24citations
  • 2021A look on target-specificity of eutectic systems based on natural bioactive compounds13citations
  • 2021Density of deep eutectic solvents33citations
  • 2020Optimal design of thedes based on perillyl alcohol and ibuprofen29citations
  • 2020Design and processing of drug delivery formulations of therapeutic deep eutectic systems for tuberculosis43citations
  • 2020Collagen from Atlantic cod (Gadus morhua) skins extracted using CO2 acidified water with potential application in healthcare63citations
  • 2020Terpene-Based Natural Deep Eutectic Systems as Efficient Solvents to Recover Astaxanthin from Brown Crab Shell Residues94citations
  • 2020Advancing spinal fusion: Interbody stabilization by in situ foaming of a chemically modified polycaprolactone5citations
  • 2019Unveil the Anticancer Potential of Limomene Based Therapeutic Deep Eutectic Solvents87citations
  • 2019Therapeutic Role of Deep Eutectic Solvents Based on Menthol and Saturated Fatty Acids on Wound Healing147citations
  • 2019Properties of therapeutic deep eutectic solvents of L-arginine and ethambutol for tuberculosis treatment60citations
  • 2019A closer look in the antimicrobial properties of deep eutectic solvents based on fatty acids73citations
  • 2018Synthesis and Physical and Thermodynamic Properties of Lactic Acid and Malic Acid-Based Natural Deep Eutectic Solvents48citations
  • 2018Chitin/Chitosan Based Aerogels1citations
  • 2018Subcritical carbon dioxide foaming of polycaprolactone for bone tissue regeneration24citations
  • 2018Natural deep eutectic systems as alternative nontoxic cryoprotective agents103citations
  • 2018Chitin/chitosan based aerogels: processing and morphology1citations
  • 2017Production of Electrospun Fast-Dissolving Drug Delivery Systems with Therapeutic Eutectic Systems Encapsulated in Gelatin59citations
  • 2017Biomaterials and bioactive agents in spinal fusion50citations
  • 2017From honeycomb- to microsphere-patterned surfaces of poly(lactic acid) and a starch-poly(lactic acid) blend via the breath figure method11citations
  • 2017A comparison between pure active pharmaceutical ingredients and therapeutic deep eutectic solvents208citations
  • 2017Green solvents for enhanced impregnation processes in biomedicine35citations
  • 2017Production of electrospun fast-dissolving drug delivery systems with therapeutic eutectic systems encapsulated in gelatin59citations
  • 2016In vitro bioactivity studies of ceramic structures isolated from marine sponges19citations
  • 2016Solubility and Permeability Enhancement of active compounds: Therapeutic Deep Eutectic Systems as New Vehicles for Drug Delivery4citations
  • 2016Dissolution enhancement of active pharmaceutical ingredients by therapeutic deep eutectic systems214citations
  • 2016Preparation of β-glucan scaffolds by hydrogel foaming with supercritical CO2citations
  • 2015Design of controlled release systems for THEDES - Therapeutic deep eutectic solvents, using supercritical fluid technology162citations
  • 2015The intersection between chemical and biomedical engineering: green technologies towards the development of enhanced biomaterials6citations
  • 2015Ketoprofen-eluting biodegradable ureteral stents by CO2 impregnation40citations
  • 2015Design of controlled release systems for THEDES - therapeutic deep eutectic solvents, using supercritical fluid technology162citations
  • 2015Coupling Thedes - Therapeutic Deep Eutectic Solvents And Supercritical Fluid Technology for the Development of Controlled Delivery Systems6citations
  • 2014Surface modification of silica-based marine sponge bioceramics induce hydroxyapatite formation15citations
  • 2014Nanostructured hollow tubes based on chitosan and alginate multilayers52citations
  • 2014Bioactive ceramics for tissue engineering and regenerative medicine derived from marine spongescitations
  • 2013Alternative methodology for chitin-hydroxyapatite composites using ionic liquids and supercritical fluid technology34citations
  • 2013Alternative methodology for chitin/hydroxyapatite composites using ionic liquids and supercritical fluid technology34citations
  • 2013Nanostructured hollow tubes based on chitosan and alginate multilayerscitations
  • 2013Marine sponges : a new source of bioactive ceramics for tissue engineering and regenerative medicine applications6citations
  • 2013Unleashing the potential of supercritical fluids for polymer processing in tissue engineering and regenerative medicine51citations
  • 2012PDLLA enriched with ulvan particles as a novel 3D porous scaffold targeted for bone engineering75citations
  • 2009Applications of supercritical expansion processes for particle formationcitations
  • 2009Processing of novel bioactive polymeric matrixes for tissue engineering using supercritical fluid technology40citations

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Chart of shared publication
Ferreira, Ines
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Pires, Elisabet
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Diniz, Mãrio
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Garralaga, M⪠Pilar
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Lomba, Laura
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Leonardo, Inês C.
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Redovniković, Ivana Radojčić
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Gaspar, Frédéric B.
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Correia, Ricardo
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Richheimer, Carolina
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Hornberger, Kathlyn
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Do, Hoang Tam
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Radojčić Redovniković, Ivana
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Paiva, A.
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Castro, Vânia Isabel Baptista
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Silva, Simone S.
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Silva, Simone Santos
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Barreiros, S.
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Borges, João Paulo Miranda Ribeiro
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Co-Authors (by relevance)

  • Ferreira, Ines
  • Pires, Elisabet
  • Diniz, Mãrio
  • Garralaga, M⪠Pilar
  • Lomba, Laura
  • Gracia-Barberãn, Sara
  • Paiva, Alexandre
  • Jesus, Ana Rita
  • Monteiro, Hugo
  • Sarmento, Célia
  • García, María Teresa
  • Sánchez, Encarnación Cruz
  • Oliveira, Filipe
  • Pereira, Joana Félix
  • Craveiro, Rita
  • García-Vargas, Jesús Manuel
  • Gracia, Ignacio
  • Silva, Joana M.
  • Silva, Eduardo
  • Reis, Rui L.
  • Matias, Ana
  • Gaudencio, Susana P.
  • Diniz, M. S.
  • Sobral, Rita
  • Valente, Sara
  • Ferreira, Inês João
  • Anes, Elsa
  • Santos, Filipa
  • Pires, David
  • Correia Fernandes, Cláudio
  • Haghbakhsh, Reza
  • Castro, Maria Miguel
  • Galamba, Nuno
  • Cassel, Eduardo
  • Mano, Francisca
  • Anacleto, Beatriz
  • Bronze, Maria Do Rosário
  • Rebocho, Sílvia
  • Gajardo-Parra, Nicolás F.
  • Meneses, Liane
  • Held, Christoph
  • Vieira, Carolina
  • Halder, Amit Kumar
  • Cordeiro, M. Natalia D. S.
  • Voroshylova, Iuliia V.
  • Barreiros, Susana
  • Ferreira, Ana
  • Cabrita, Eurico J.
  • Carlyle, Leslie
  • Marques, Raquel
  • Rodrigues, Liliana A.
  • Leonardo, Inês C.
  • Redovniković, Ivana Radojčić
  • Cardeira, Martim
  • Matias, Ana
  • Gaspar, Frédéric B.
  • Roldão, António
  • Alves, Paula
  • Correia, Ricardo
  • Carrondo, Manuel J. T.
  • Richheimer, Carolina
  • Hornberger, Kathlyn
  • Roda, Ana
  • Do, Hoang Tam
  • Chua, Yeong Zen
  • Kumar, Aarti
  • Radojčić Redovniković, Ivana
  • Matias, Ana A.
  • Castro, V. I. B.
  • Viciosa, M. T.
  • Castro, Vânia I. B.
  • Andrade, Maria Madalena Dionísio
  • Viciosa, M. Teresa
  • Paiva, A.
  • Reis, R. L.
  • Dionisio, M.
  • Reis, Rui Luís
  • Craveiro, R.
  • Silva, Eduardo Alexandre Pereira
  • Alves, Ana L.
  • Oliveira, Catarina
  • Sousa, Rita O.
  • Martins, Eva
  • Carvalho, Duarte Nuno
  • Silva, Tiago H.
  • Fernández, Naiara
  • Pereira, Carolina V.
  • Duarte, Rui M.
  • Correiapinto, Jorge
  • Rodrigues, Liliana
  • Pereira, Carolina, V.
  • Castro, Vania I. B.
  • Sa-Nogueira, Isabel
  • Leitão, Maria Inês P. S.
  • Silva, Eduardo Alves
  • Silva, Joana Maria Marques
  • Castro, Vânia Isabel Baptista
  • Silva, Simone S.
  • Correia-Pinto, Jorge
  • Silva, Simone Santos
  • Barreiros, S.
  • Martins, M.
  • Borges, João Paulo Miranda Ribeiro
  • De Sá-Nogueira, Isabel
  • Duarte, A. R. C.
  • Borges, J. P.
  • Martins, Marta
  • Sá-Nogueira, I.
  • Mano, F.
  • Varanda, Pedro
  • Pinto, Jorge Correia
  • Sousa, Nuno
  • Migliaresi, Claudio
  • Mano, João F.
  • Maniglio, Devid
  • Cabrita, E.
  • Ferreira, A. S. D.
  • Barros, Alexandre A.
  • Nogueira, Isabel Sá
  • Borges, João Paulo
  • Barros, Alexandre António Antunes
  • Silva, Tiago José Quinteiros Lopes Henriques
  • Mano, Joào F.
  • Aroso, Ivo Manuel Ascensão
  • Aroso, Ivo M.
  • Mano, J. F.
  • Silva, José Tiago
  • Silva, J. C.
  • Sa-Nogueira, I.
  • Aroso, I. M.
  • Silva, João C.
  • Rodríguez-Royo, S.
  • Salgado, M.
  • Cocero, M. J.
  • Rocha, A.
  • Rocha, Ângelo
  • Barros, A. A.
  • Oliveira, C.
  • Lima, Estevão
  • Lima, E.
  • Oliveira, Carlos
  • Dionisio, Madalena
  • Rocha, Â.
  • Fonseca, Jaime C.
  • Pinho, A. C. Marques De
  • Custódio, Catarina A.
  • Sher, Praveen
  • Neto, Ana I.
  • Oliveira, Joaquim M.
  • Sousa, Rui A.
  • Sousa, R. A.
  • Alves, A.
  • Santo, Vitor E.
  • Marques, Alexandra P.
  • Marques, A. P.
  • Gomes, Manuela E.
  • Alves, Anabela
  • Moreira-Silva, Joana
  • Caridade, Sofia G.
OrganizationsLocationPeople

article

In vitro bioactivity studies of ceramic structures isolated from marine sponges

  • Barros, Alexandre António Antunes
  • Silva, Tiago José Quinteiros Lopes Henriques
  • Mano, Joào F.
  • Barros, Alexandre A.
  • Duarte, Ana Rita C.
  • Aroso, Ivo Manuel Ascensão
  • Reis, Rui Luís
  • Aroso, Ivo M.
  • Reis, Rui L.
  • Mano, J. F.
  • Silva, José Tiago
Abstract

<p>In this work, we focused on the potential of bioceramics from different marine sponges - namely Petrosia ficiformis, Agelas oroides and Chondrosia reniformis - for novel biomedical/industrial applications. The bioceramics from these sponges were obtained after calcination at 750 °C for 6 h in a furnace. The morphological characteristics were evaluated by scanning electron microscopy (SEM). The in vitro bioactivity of the bioceramics was evaluated in simulated body fluid (SBF) after 14 and 21 d. Observation of the bioceramics by SEM after immersion in SBF solution, coupled with spectroscopic elemental analysis (EDS), showed that the surface morphology was consistent with a calcium-phosphate (Ca/P) coating, similar to hydroxyapatite crystals (HA). Evaluation of the characteristic peaks of Ca/P crystals by Fourier transform infrared spectroscopy and x-ray diffraction further confirmed the existence of HA. Cytotoxicity studies were carried out with the different ceramics and these were compared with a commercially available Bioglass<sup>®</sup>. In vitro tests demonstrated that marine bioceramics from these sponges are non-cytotoxic and have the potential to be used as substitutes for synthetic Bioglass<sup>®</sup>.</p>

Topics
  • morphology
  • surface
  • compound
  • scanning electron microscopy
  • x-ray diffraction
  • glass
  • glass
  • Energy-dispersive X-ray spectroscopy
  • ceramic
  • Calcium
  • Fourier transform infrared spectroscopy
  • elemental analysis
  • bioactivity