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Characterization of biofilm extracts from two marine bacteria ArchiMer
Passerini, Delphine; Fecamp, Florian; Marchand, Laetitia; Kolypczuk, Laetitia; Bonnetot, Sandrine; Sinquin, Corinne; Verrez-bagnis, Veronique; Hervio Heath, Dominique; Colliec Jouault, Sylvia; Delbarre Ladrat, Christine.
In the marine environment, biofilm formation is an important lifestyle for microorganisms. A biofilm is comprised of cells embedded in an extracellular matrix that holds them close together and keeps the biofilm attached to the colonized surface. This predominant lifestyle and its main regulation pathway, namely quorum-sensing (QS), have been shown to induce specific bioactive metabolites. In this study, we investigated the biofilm formation by two marine bacteria belonging to the Vibrio species to discover potentially innovative bioactive compounds. We proposed a protocol to isolate biofilm extracts, to analyze their biochemical composition, and to compare them to planktonic cell extracts. Cells were grown attached to a plastic surface; extracts were...
Tipo: Text Palavras-chave: Vibrio; Biofilm; Polysaccharide; Quorum-sensing; Activity.
Ano: 2019 URL: https://archimer.ifremer.fr/doc/00592/70381/68461.pdf
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Effect of low-molecular-weight fucoidan on experimental arterial thrombosis in the rabbit and rat ArchiMer
Colliec-jouault, Sylvia; Millet, J; Helley, D; Sinquin, Corinne; Fischer, Am.
Tipo: Text Palavras-chave: Arterial thrombosis; Polyaccharide; Fucoidan.
Ano: 2003 URL: http://archimer.ifremer.fr/doc/2003/publication-2116.pdf
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Effects of a sulfated exopolysaccharide produced by Altermonas infernus on bone biology ArchiMer
Velasco, C. Ruiz; Baud'Huin, M.; Sinquin, Corinne; Maillasson, M.; Heymann, D.; Colliec-jouault, Sylvia; Padrines, M..
The growth and differentiation of bone cells is controlled by various factors which can be modulated by heparan sulphates. Here, we investigated the effects of an oversulphated exopolysaccharide (OS-EPS) on bone. We compared the effect of this compound with that of a native exopolysaccharide (EPS). Long-term administration of OS-EPS causes cancellous bone loss in mice due, in part, to an increase in the number of osteoclasts lining the trabecular bone surface. No significant difference in cancellous bone volume was found between EPS-treated mice and age-matched control mice, underlying the importance of sulphation in trabecular bone loss. However, the mechanism sustaining this osteoporosis was unclear. To clarify OS-EPS activities, we investigated the...
Tipo: Text Palavras-chave: Bone metabolism; Bone remodeling; Exopolysaccharide; Glycosaminoglycan; Heparin.
Ano: 2011 URL: http://archimer.ifremer.fr/doc/00032/14300/15749.pdf
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Assessment of biochemical methods to detect enzymatic depolymerization of polysaccharides ArchiMer
Rigouin, Coraline; Delbarre Ladrat, Christine; Sinquin, Corinne; Colliec-jouault, Sylvia; Dion, M.
To find biocatalyst allowing depolymerization of new polysaccharides, one needs to get a sensitive and well adapted method to a screening program. This led us to compare biochemical methods of detection of the depolymerization. Currently used methods such as reducing sugars assays, double bond monitoring or molecular weight determination were tested to follow the kinetic of depolymerization with different enzyme / polysaccharide couples. The range of concentrations of assorted enzymes allowed us to identify the most sensitive and appropriate method to detect polysaccharide degradation. Reducing sugars assays are quantitative, sensitive and almost usable with all kind of polysaccharide but some compounds may interfere with them. When polysaccharide is...
Tipo: Text Palavras-chave: Detection; Enzyme; Depolymerization; Carbohydrate.
Ano: 2009 URL: http://archimer.ifremer.fr/doc/2008/publication-4723.pdf
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Bacteria enhance the production of extracellular polymeric substances by the green dinoflagellate Lepidodinium chlorophorum ArchiMer
Roux, Pauline; Siano, Raffaele; Collin, Karine; Bilien, Gwenael; Sinquin, Corinne; Marchand, Laetitia; Zykwinska, Agata; Delbarre-ladrat, Christine; Schapira, Mathilde.
High biomasses of the marine dinoflagellate Lepidodinium chlorophorum cause green seawater discolorations along Southern Brittany (NE Atlantic, France). The viscosity associated to these phenomena has been related to problems in oyster cultivation. The harmful effect of L. chlorophorum might originate from the secretion of Extracellular Polymeric Substances (EPS). To understand whether the EPS are produced by L. chlorophorum or its associated bacteria, or if they are a product of their interaction, batch cultures were performed under non-axenic and pseudo-axenic conditions for three strains. Maximum dinoflagellate cell abundances were observed in pseudo-axenic cultures. The non-sinking fraction of polymers (Soluble Extracellular Polymers, SEP), mainly...
Tipo: Text
Ano: 2021 URL: https://archimer.ifremer.fr/doc/00682/79403/81948.pdf
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Free-radical depolymerization with metallic catalysts of an exopolysaccharide produced by a bacterium isolated from a deep-sea hydrothermal vent polychaete annelid ArchiMer
Petit, Anne-celine; Noiret, N; Sinquin, Corinne; Ratiskol, Jacqueline; Guezennec, Jean; Colliec-jouault, Sylvia.
Free-radical depolymerization with metallic catalysts has been investigated to depolymerize an exopolysaccharide (EPS), with a high molecular weight (> 10(6) g/Mol), produced by the bacterium Alteromonas macleodii subsp. fijiensis biovar deepsane. Three metals (copper, zinc and manganese) were used either alone or mixed. These metals led to the depolymerization of the high molecular weight bacterial polysaccharide with different efficiency. This study specifies some conditions required to produce, with good reproducibility and yield, EPS derivatives of reduced molecular weight ranging from 100,000 to 20,000 g/mol. The more influential parameters are specified. This is a first study to find suitable industrial conditions in the presence of these metallic...
Tipo: Text Palavras-chave: Bacterial exopolysaccharide; Free radical depolymerization; H202; Metal.
Ano: 2006 URL: http://archimer.ifremer.fr/doc/2006/publication-2146.pdf
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Microcarriers Based on Glycosaminoglycan-Like Marine Exopolysaccharide for TGF-β1 Long-Term Protection ArchiMer
Zykwinska, Agata; Marquis, Melanie; Godin, Mathilde; Marchand, Laetitia; Sinquin, Corinne; Garnier, Catherine; Jonchere, Camille; Chedeville, Claire; Le Visage, Catherine; Guicheux, Jerome; Colliec-jouault, Sylvia; Cuenot, Stephane.
Articular cartilage is an avascular, non-innervated connective tissue with limited ability to regenerate. Articular degenerative processes arising from trauma, inflammation or due to aging are thus irreversible and may induce the loss of the joint function. To repair cartilaginous defects, tissue engineering approaches are under intense development. Association of cells and signalling proteins, such as growth factors, with biocompatible hydrogel matrix may lead to the regeneration of the healthy tissue. One current strategy to enhance both growth factor bioactivity and bioavailability is based on the delivery of these signalling proteins in microcarriers. In this context, the aim of the present study was to develop microcarriers by encapsulating...
Tipo: Text Palavras-chave: Exopolysaccharide; Growth factor; Microparticles; Microfluidics; Bioactivity.
Ano: 2019 URL: https://archimer.ifremer.fr/doc/00477/58882/61432.pdf
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Concentration and purification of Porphyridium cruentum exopolysaccharides by membrane filtration at various cross-flow velocities ArchiMer
Balti, Rafik; Le Balc'H, Romain; Brodu, Nicolas; Gilbert, Marthe; Le Gouic, Benjamin; Le Gall, Sophie; Sinquin, Corinne; Masse, Anthony.
Exopolysaccharides (EPS) from cell-free Porphyridium cruentum media were concentrated then purified (diafiltration) on a 0.14 µm ceramic membrane. The influence of cross-flow velocities on filtration performances was investigated. Mean permeate fluxes equal to 49.8, 68.9 and 81.9 L.h-1. m-2 were obtained during the concentration at 4 bar for respectively cross-flow velocities inside the membrane lumen equal to 2.5, 3.3 and 4.2 m.s-1; 49.7 L.h-1. m-2 for the diafiltration at 3.3 m.s-1. Permeate fluxes were correctly predicted from polysaccharide concentrations (10 % deviation). Volume reduction factors higher than 7.8 were reached. Rejection rates of polysaccharides and proteins varied according to the cross-flow velocities. Thus, the EPS recovery rate or...
Tipo: Text Palavras-chave: Membrane filtration; Exopolysaccharides; Microalga; Concentration; Diafiltration.
Ano: 2018 URL: https://archimer.ifremer.fr/doc/00445/55694/57360.pdf
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Antiviral Activities of Sulfated Polysaccharides Isolated from Sphaerococcus coronopifolius (Rhodophytha, Gigartinales) and Boergeseniella thuyoides (Rhodophyta, Ceramiales) ArchiMer
Bouhlal, Rhimou; Haslin, Camille; Chermann, Jean-claude; Colliec-jouault, Sylvia; Sinquin, Corinne; Simon, Gaelle; Cerantola, Stephane; Riadi, Hassane; Bourgougnon, Nathalie.
Water-soluble sulfated polysaccharides isolated from two red algae Sphaerococcus coronopifolius (Gigartinales, Sphaerococcaceae) and Boergeseniella thuyoides (Ceramiales, Rhodomelaceae) collected on the coast of Morocco inhibited in vitro replication of the Human Immunodeficiency Virus (HIV) at 12.5 mu g/mL. In addition, polysaccharides were capable of inhibiting the in vitro replication of Herpes simplex virus type 1 (HSV-1) on Vero cells values of EC(50) of 4.1 and 17.2 mu g/mL, respectively. The adsorption step of HSV-1 to the host cell seems to be the specific target for polysaccharide action. While for HIV-1, these results suggest a direct inhibitory effect on HIV-1 replication by controlling the appearance of the new generations of virus and...
Tipo: Text Palavras-chave: Herpes simplex virus; Human immunodeficiency virus; Antiviral activity; Sulfated polysaccharide; S. coronopifolius; B. thuyoides; Chemical composition.
Ano: 2011 URL: http://archimer.ifremer.fr/doc/00060/17120/14631.pdf
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Genome sequence of Vibrio diabolicus and identification of the exopolysaccharide HE800 biosynthesis locus ArchiMer
Goudenege, David; Boursicot, Vincent; Versigny, Typhaine; Bonnetot, Sandrine; Ratiskol, Jacqueline; Sinquin, Corinne; Lapointe, Gisele; Le Roux, Frederique; Delbarre-ladrat, Christine.
Vibrio diabolicus, a marine bacterium originating from deep-sea hydrothermal vents, produces the HE800 exopolysaccharide with high value for biotechnological purposes, especially for human health. Its genome was sequenced and analyzed; phylogenetic analysis using the core genome revealed V. diabolicus is close to another deep-sea Vibrio sp. (Ex25) within the Harveyi clade and Alginolyticus group. A genetic locus homologous to the syp cluster from Vibrio fischeri was demonstrated to be involved in the HE800 production. However, few genetic particularities suggest that the regulation of syp expression may be different in V. diabolicus. The presence of several types of glycosyltransferases within the locus indicates a capacity to generate diversity in the...
Tipo: Text Palavras-chave: Genome; Vibrio; Exopolysaccharide; Biosynthesis.
Ano: 2014 URL: https://archimer.ifremer.fr/doc/00241/35244/33892.pdf
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Bioprospecting for Exopolysaccharides from Deep-Sea Hydrothermal Vent Bacteria: Relationship between Bacterial Diversity and Chemical Diversity ArchiMer
Delbarre-ladrat, Christine; Salas, Marcia Leyva; Sinquin, Corinne; Zykwinska, Agata; Colliec-jouault, Sylvia.
Many bacteria biosynthesize structurally diverse exopolysaccharides (EPS) and excrete them into their surrounding environment. The EPS functional features have found many applications in industries such as cosmetics and pharmaceutics. In particular, some EPS produced by marine bacteria are composed of uronic acids, neutral sugars, and N-acetylhexosamines, and may also bear some functional sulfate groups. This suggests that they can share common structural features with glycosaminoglycans (GAG) like the two EPS (HE800 and GY785) originating from the deep sea. In an attempt to discover new EPS that may be promising candidates as GAG-mimetics, fifty-one marine bacterial strains originating from deep-sea hydrothermal vents were screened. The analysis of the...
Tipo: Text Palavras-chave: Exopolysaccharides; GAG; Marine bacteria; Glycopolymers; Sulfate; Production.
Ano: 2017 URL: https://archimer.ifremer.fr/doc/00399/51090/51873.pdf
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Sterilization of Exopolysaccharides Produced by Deep-Sea Bacteria: Impact on Their Stability and Degradation ArchiMer
Rederstorff, Emilie; Fatimi, Ahmed; Sinquin, Corinne; Ratiskol, Jacqueline; Merceron, Christophe; Vinatier, Claire; Weiss, Pierre; Colliec-jouault, Sylvia.
Polysaccharides are highly heat-sensitive macromolecules, so high temperature treatments are greatly destructive and cause considerable damage, such as a great decrease in both viscosity and molecular weight of the polymer. The technical feasibility of the production of exopolysaccharides by deep-sea bacteria Vibrio diabolicus and Alteromonas infernus was previously demonstrated using a bioproduct manufacturing process. The objective of this study was to determine which sterilization method, other than heat sterilization, was the most appropriate for these marine exopolysaccharides and was in accordance with bioprocess engineering requirements. Chemical sterilization using low-temperature ethylene oxide and a mixture of ionized gases (plasmas) was compared...
Tipo: Text Palavras-chave: Marine biotechnology; Polysaccharides; Sterilization procedures; Characterization; Molecular weight distribution; Rheology.
Ano: 2011 URL: http://archimer.ifremer.fr/doc/00027/13776/10913.pdf
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Pharmacological Modulation of Human Mesenchymal Stem Cell Chondrogenesis by a Chemically Oversulfated Polysaccharide of Marine Origin: Potential Application to Cartilage Regenerative Medicine ArchiMer
Merceron, Christophe; Portron, Sophie; Vignes-colombeix, Caroline; Rederstorff, Emilie; Masson, Martial; Lesoeur, Julie; Sourice, Sophie; Sinquin, Corinne; Colliec-jouault, Sylvia; Weiss, Pierre; Vinatier, Claire; Guicheux, Jerome.
Mesenchymal stem cells (MSCs) are considered as an attractive source of cells for cartilage engineering due to their availability and capacity for expansion and multipotency. Differentiation of MSC into chondrocytes is crucial to successful cartilage regeneration and can be induced by various biological agents, including polysaccharides that participate in many biological processes through interactions with growth factors. Here, we hypothesize that growth factor-induced differentiation of MSC can be increased by chemically oversulfated marine polysaccharides. To test our hypothesis, human adipose tissue-derived MSCs (hATSCs) were cultured in pellets with transforming growth factor (TGF)-beta 1-supplemented chondrogenic medium containing either the...
Tipo: Text Palavras-chave: Cartilage; Adipose-derived mesenchymal stem cells; Polysaccharides; Transforming growth factor-beta.
Ano: 2012 URL: http://archimer.ifremer.fr/doc/00071/18227/17457.pdf
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Enzymatic depolymerization of the GY785 exopolysaccharide produced by the deep-sea hydrothermal bacterium Alteromonas infernus : structural study and enzyme activity assessment ArchiMer
Zykwinska, Agata; Berre, Ludivine Tripon-le; Sinquin, Corinne; Ropartz, David; Rogniaux, Helene; Colliec-jouault, Sylvia; Delbarre-ladrat, Christine.
Polysaccharides have attracted much attention due to their interesting physico-chemical and also biological properties that are explored in food, cosmetic and pharmaceutical industries. GY785 exopolysaccharide (EPS) presenting an unusual structure is secreted by the deep-sea hydrothermal bacterium, Alteromonas infernus. Low-molecular weight (LMW) derivatives obtained by chemical depolymerization of the native high molecular weight (HMW) EPS were previously shown to exhibit biological properties similar to glycosaminoglycans (GAG). In the present study, in order to generate well defined derivatives with a better control of the depolymerization, an enzymatic approach was applied for the first time. Various commercially available enzymes were firstly screened...
Tipo: Text Palavras-chave: Exopolysaccharide; Enzyme; Depolymerization; Oligosaccharide; Mass spectrometry.
Ano: 2018 URL: https://archimer.ifremer.fr/doc/00423/53458/54352.pdf
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Antiproliferative Properties of Scandium Exopolysaccharide Complexes on Several Cancer Cell Lines ArchiMer
Muñoz-garcia, Javier; Mazza, Mattia; Alliot, Cyrille; Sinquin, Corinne; Colliec-jouault, Sylvia; Heymann, Dominique; Huclier-markai, Sandrine.
Antimetastatic properties on both murine and human osteosarcoma cell lines (POS-1 and KHOS) have been evidenced using exopolysaccharide (EPS) derivatives, produced by Alteromonas infernus bacterium. These derivatives had no significant effect on the cell cycle neither a pro-apoptotic effect on osteosarcoma cells. Based on this observation, these EPSs could be employed as new drug delivery systems for therapeutic uses. A theranostic approach, i.e., combination of a predictive biomarker with a therapeutic agent, has been developed notably by combining with true pair of theranostic radionuclides, such as scandium 47Sc/44Sc. However, it is crucial to ensure that, once complexation is done, the biological properties of the vector remain intact, allowing the...
Tipo: Text Palavras-chave: Exopolysaccharides; Scandium; Theranostic; Cancer cell lines; Proliferation.
Ano: 2021 URL: https://archimer.ifremer.fr/doc/00686/79826/82630.pdf
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An in vitro study of two GAG-like marine polysaccharides incorporated into injectable hydrogels for bone and cartilage tissue engineering ArchiMer
Rederstorff, Emilie; Weiss, Pierre; Sourice, S.; Pilet, P.; Xie, F.; Sinquin, Corinne; Colliec-jouault, Sylvia; Guicheux, Jerome; Laib, S..
Natural polysaccharides are attractive compounds with which to build scaffolds for bone and cartilage tissue engineering. Here we tested two non-standard ones, HE800 and GY785, for the two-dimensional (2-D) and three-dimensional (3-D) culture of osteoblasts (MC3T3-E1) and chondrocytes (C28/I2). These two glycosaminoglycan-like marine exopolysaccharides were incorporated into an injectable silylated hydroxypropylmethylcellulose-based hydrogel (Si-HPMC) that has already shown its suitability for bone and cartilage tissue engineering. Results showed that, similarly to hyaluronic acid (HA) (the control), HE800 and GY785 significantly improved the mechanical properties of the Si-HPMC hydrogel and induced the attachment of MC3T3-E1 and C28/I2 cells when these...
Tipo: Text Palavras-chave: Glycosaminoglycan; Hydrogel; Polysaccharide; Bone and cartilage tissue engineering; In vitro test.
Ano: 2011 URL: http://archimer.ifremer.fr/doc/00030/14090/15747.pdf
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Screening of enzymatic activities for the depolymerisation of the marine bacterial exopolysaccharide HE800 ArchiMer
Rigouin, Coraline; Delbarre-ladrat, Christine; Ratiskol, Jacqueline; Sinquin, Corinne; Colliec-jouault, Sylvia; Dion, Michel.
Tipo: Text Palavras-chave: Polysaccharide; Enzymatic depolymerisation; Low-molecular-weight derivatives; Enterococcus faecalis; Endo-N-acetyl-galactosaminidase.
Ano: 2012 URL: http://archimer.ifremer.fr/doc/00098/20907/18741.pdf
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Emulsifying Activity and Stability of a Non-Toxic Bioemulsifier Synthesized by Microbacterium sp MC3B-10 ArchiMer
Camacho-chab, Juan Carlos; Guezennec, Jean; Chan-bacab, Manuel Jesus; Rios-leal, Elvira; Sinquin, Corinne; Muniz-salazar, Raquel; De La Rosa-garcia, Susana Del C.; Reyes-estebanez, Manuela; Ortega-morales, Benjamin Otto.
A previously reported bacterial bioemulsifier, here termed microbactan, was further analyzed to characterize its lipid component, molecular weight, ionic character and toxicity, along with its bioemulsifying potential for hydrophobic substrates at a range of temperatures, salinities and pH values. Analyses showed that microbactan is a high molecular weight (700 kDa), non-ionic molecule. Gas chromatography of the lipid fraction revealed the presence of palmitic, stearic, and oleic acids; thus microbactan may be considered a glycolipoprotein. Microbactan emulsified aromatic hydrocarbons and oils to various extents; the highest emulsification index was recorded against motor oil (96%). The stability of the microbactan-motor oil emulsion model reached its...
Tipo: Text Palavras-chave: Bioemulsifier; Emulsifying stability; Non-toxic; Microbacterium sp; Biotechnology.
Ano: 2013 URL: http://archimer.ifremer.fr/doc/00171/28260/26530.pdf
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Deep-sea Hydrothermal Vent Bacteria as a Source of Glycosaminoglycan-Mimetic Exopolysaccharides ArchiMer
Zykwinska, Agata; Marchand, Laetitia; Bonnetot, Sandrine; Sinquin, Corinne; Colliec-jouault, Sylvia; Delbarre-ladrat, Christine.
Bacteria have developed a unique strategy to survive in extreme environmental conditions through the synthesis of an extracellular polymeric matrix conferring upon the cells a protective microenvironment. The main structural component of this complex network constitutes high-molecular weight hydrophilic macromolecules, namely exopolysaccharides (EPS). EPS composition with the presence of particular chemical features may closely be related to the specific conditions in which bacteria evolve. Deep-sea hydrothermal vent bacteria have already been shown to produce EPS rich in hexosamines and uronic acids, frequently bearing some sulfate groups. Such a particular composition ensures interesting functional properties, including biological activities mimicking...
Tipo: Text Palavras-chave: Exopolysaccharide; Glycosaminoglycan; Uronic acid; Hexosamine; Phylogenetic analysis.
Ano: 2019 URL: https://archimer.ifremer.fr/doc/00506/61756/65728.pdf
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Marine Polysaccharide-Collagen Coatings on Ti6Al4V Alloy Formed by Self-Assembly ArchiMer
Norris, Karl; Mishukova, Oksana; Zykwinska, Agata; Colliec-jouault, Sylvia; Sinquin, Corinne; Koptioug, Andrei; Cuenot, Stéphane; Kerns, Jemma; Surmeneva, Maria; Surmenev, Roman; Douglas, Timothy.
Polysaccharides of marine origin are gaining interest as biomaterial components. Bacteria derived from deep-sea hydrothermal vents can produce sulfated exopolysaccharides (EPS), which can influence cell behavior. The use of such polysaccharides as components of organic, collagen fibril-based coatings on biomaterial surfaces remains unexplored. In this study, collagen fibril coatings enriched with HE800 and GY785 EPS derivatives were deposited on titanium alloy (Ti6Al4V) scaffolds produced by rapid prototyping and subjected to physicochemical and cell biological characterization. Coatings were formed by a self-assembly process whereby polysaccharides were added to acidic collagen molecule solution, followed by neutralization to induced self-assembly of...
Tipo: Text Palavras-chave: Marine exopolysaccharide; Collagen; Surface modification; Ti6Al4V.
Ano: 2019 URL: https://archimer.ifremer.fr/doc/00477/58881/61433.pdf
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