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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
1

Entwicklung eines dreidimensionalen Fibringelmodells zur In-Vitro-Analyse von Fibrose und Angiogenese Alginat-mikroverkapselter Langerhans-Inseln / A 3D fibrin-gel model to study fibrosis and vascularization of encapsulated pacreatic islets in vitro

Medwedowsky, Artur January 2010 (has links) (PDF)
Entwicklung eines dreidimensionalen Fibringelmodells zur In-Vitro-Analyse von Fibrose und Angiogenese Alginat-mikroverkapselter Langerhans-Inseln / Immunoprotection of the pancreatic islets by encapsulation with alginate can potentially provide their transplantation without immunosuppression. The fundamental obstacle to large-scale clinical transplantation of encapsulated islets is limited graft survival. Critical for adequate long-term function of the graft is the absence of fibrotic overgrowth and sufficient supplementation with oxygen and nutrients. The aim of this study was to develop a model to investigate molecular and cellular mechanisms of fibrosis and vascularization of alginate-encapsulated islets. A 3D fibrin-gel model was developed to assess the mitogenic and angiogenic activity of encapsulated islet cells and encapsulation material per se. The 3D fibrin-gel matrix, containing filled or empty capsules, was seeded with fibroblasts and endothelial cells. Their migration and prolifiration were evaluated by phase-contrast microscopy and histology. Viability (FDA/PI) and function (insulin-ELISA) of encapsulated islets were assessed at different time-points. Inflammatory and angiogenic cytokines were tested with ELISA. Embedded into the 3D fibrin-gel, encapsulated islet cells preserved their viability and function to day +14 in culture. Encapsulated islet cells influenced migration, proliferation and cytokine production of fibroblasts when these were seeded into the 3D fibrin gel: fibroblasts migrated directly to encapsulated islets and grew firmly around the capsules, migration to empty capsules was much slower and overgrowth less prominent. TNFa production increased significantly after 10 days incubation of encapsulated islets with fibroblasts, but not with empty fibroblasts. Co-culture of encapsulated islets with endothelial cells induced the formation of vascular-like tubular structures around the capsules . This model was useful to test the mitogenic and angiogenic properties of the encapsulation material (purified versus non-purified alginates). Adhesion of endothelial cells to collagen-layered capsules was much more prominent than to non-layered capsules; endothelial cells strongly proliferated, forming a monolayer on the capsule surface. Moreover, they migrated into the fibrin-gel-matrix, forming new tube-like structures. These processes were accelerated by VEGF. The 3D fibrin-gel model is very useful for studying the mechanisms of fibrosis and vascularization of encapsulated islets in vitro. In vivo conditions can be imitated, and factors involved in these processes can be analyzed separately.
2

Algae hydrocarbons designed for bio-based lubricants / Kolväten från alger anpassade för biobaserade smörjmedel

Sjöhag, Elin January 2020 (has links)
Smörjmedel är en nödvändighet för maskiner för att minska slitage och energiförbrukning. Dock är över 95% av de använda smörjmedlen i dag fossilbaserade. Smörjmedel baserade på vegetabiliska oljor finns tillgängliga men har ofta en lägre oxidativ stabilitet och sämre lågtemperaturegenskaper än deras fossilbaserade motsvarigheter. Ett annat hinder att övervinna är att ersätta vanligt använda förtjockningsmedel i halvfast smörjmedel med biobaserat alternativ vilket också visat sig vara en utmanande uppgift. Representanter för marina biomassa som mikro- och makroalger har potential att användas i framtiden som förnybar råvara källor på grund av deras kemiska sammansättningar såväl som gynnsamma odlingsförhållanden. Mikroalger har ett högt lipidinnehåll och vissa arter har ett högt innehåll av kolväten som liknar råolja. Makroalger har ett högt innehåll av polysackarider med en förtjockningsförmåga i vatten. Även om mikroalger innehåller lovande kolväten och lipider som kan användas i smörjmedelsapplikationer är det idag inte ekonomiskt möjligt att använda mikroalger för att producera produkter med lågt värde. Även makroalger är för kostsamma att kultivera för billiga produkter, För att kunna använda polysackarider som tillsatser i olja måste de vara mer hydrofoba. I denna studie oxiderades alginat först i en ringöppningsreaktion, för att senare reduceras i en Schiff-basformation och reduktion till en mer amfifil polysackarid. Resultaten visade en hög nedbrytning av polysackariden både i oxidationsreaktionen och i reduktionsreaktionen, från en startmolekylvikt av 580 000 g/mol till ~ 10 000 g/mol. Etanol kunde användas i oxidationsreaktionen för att öka den möjliga alginatkoncentrationen. Både FTIR- och 1H-NMR-resultaten indikerade en lyckad oxidation och reduktion. Framtida arbete involverar inblandning av det hydrofobt modifierade alginatet i en basolja och utvärdering av effekten av den erhållna biobaserade basoljekomponenten på oljeegenskaperna, till exempelökning av viskositeten, oxidationsstabilitet och förtjockningsbeteenden. / Lubricants are a necessity for machineries in order to reduce friction and wear. However, over 95% of the lubricants used today are fossil-based. Vegetable oil-based lubricants are available but often possess lower oxidative stability and poorer low temperature properties than their fossil-based counterparts. Vegetable oils are therefore not a perfect solution to reduce crude oil usage. Another obstacle to overcome would be a replacement of commonly used thickeners in semisolid lubricants with bio-based alternative, which has proven to be a challenging task. Marine biomass representatives such as micro-and macroalgae have the potential to be used in the future as renewable feedstock sources due to their chemical compositions as well as beneficial cultivation conditions such as usage of non-arable land and saltwater. Microalgae have a high lipid content, and in some species a high content of hydrocarbons similar to crude oil. Macroalgae have a high content of polysaccharides, some with gelling abilities. Even though microalgae contain promising hydrocarbons and lipids that can be used in lubricant applications, it is currently not economically feasible to use microalgae to produce low valueproducts. Macroalgae are also too expensive to cultivate to be used in low price products. In order to use polysaccharides as additives in oil, they need to be more amphiphilic. In this study, alginate, derived from brown seaweed, was first oxidized in a ring opening reaction to later be reduced in a Schiff base formation and reduction to introduce more hydrophobic side groups. The results revealed a severe degradation of the polysaccharide both in the oxidation and in the reduction reaction, from a starting molecular weight of 580 000 g/mol to ~ 10 000 g/mol. Ethanol was proved to be a suitable solvent in the oxidation reaction which increased the possible alginate concentration. Both FTIR and 1H-NMR results indicated a successful oxidation and reduction. Future work involves incorporation of the hydrophobically modified alginate in a base oil and evaluation of the presence of the obtained bio-based base oil component on the oil properties, for example viscosity increase, oxidation stability and thickening behaviors.
3

Biphasic Scaffolds from Marine Collagens for Regeneration of Osteochondral Defects

Bernhardt, Anne, Paul, Birgit, Gelinsky, Michael 11 June 2018 (has links) (PDF)
Background: Collagens of marine origin are applied increasingly as alternatives to mammalian collagens in tissue engineering. The aim of the present study was to develop a biphasic scaffold from exclusively marine collagens supporting both osteogenic and chondrogenic differentiation and to find a suitable setup for in vitro chondrogenic and osteogenic differentiation of human mesenchymal stroma cells (hMSC). Methods: Biphasic scaffolds from biomimetically mineralized salmon collagen and fibrillized jellyfish collagen were fabricated by joint freeze-drying and crosslinking. Different experiments were performed to analyze the influence of cell density and TGF-β on osteogenic differentiation of the cells in the scaffolds. Gene expression analysis and analysis of cartilage extracellular matrix components were performed and activity of alkaline phosphatase was determined. Furthermore, histological sections of differentiated cells in the biphasic scaffolds were analyzed. Results: Stable biphasic scaffolds from two different marine collagens were prepared. An in vitro setup for osteochondral differentiation was developed involving (1) different seeding densities in the phases; (2) additional application of alginate hydrogel in the chondral part; (3) pre-differentiation and sequential seeding of the scaffolds and (4) osteochondral medium. Spatially separated osteogenic and chondrogenic differentiation of hMSC was achieved in this setup, while osteochondral medium in combination with the biphasic scaffolds alone was not sufficient to reach this ambition. Conclusions: Biphasic, but monolithic scaffolds from exclusively marine collagens are suitable for the development of osteochondral constructs.
4

Scaffolds fabricated by three-dimensional plotting for bone tissue engineering and regeneration / Herstellung von Scaffolds für das Tissue Engineering und Regeneration von Knochen durch dreidimensionales Plotten

Luo, Yongxiang 14 November 2013 (has links) (PDF)
In this thesis, several types of scaffolds composed of different materials and designed structures and functions were fabricated by 3D plotting under mild conditions (room temperature and without using any organic solvent). Broad biomaterials including inorganic (such as calcium phosphate cement and mesoporous bioglass), organic (such as alginate and gelatin) and composite materials were prepared into printable pastes to plot as 3D scaffolds for bone tissue engineering. Organic/inorganic biphasic and bipartite structure, core/shell alginate/nano-hydroxyapatite and hollow fiber structure were designed and realized. Scaffolds with multi functions including suitable mechanical properties, sustained drug/protein delivery and in vitro vascularization were achievable. 3D plotting provided great achievements in the field of tissue engineering by preparing advanced scaffolds, as well as by plotting cell/matrix constructs, and even complex tissues and organs.
5

Aprofitament de residus vegetals per a la concentració i separació d'ions metàl·lics de solucions aquoses

Fiol Santaló, Núria 08 February 2005 (has links)
La adsorció sobre carbó actiu és un tractament habitual para a l'eliminació de metalls contaminants d'afluents aquosos. Amb la finalitat de reduir el cost dels tractament actuals s'està estudiant la utilització d'adsorbents de baix cost com a substituts dels sorbents convencionals que s'utilitzen usualment en els tractaments d'aigües. En aquesta tesi s'ha avaluat la possibilitat d'aprofitar diversos residus vegetals procedents de processos agrícoles o residus industrials, com a sorbents per a l'eliminació de metalls de solucions aquoses. En concret, el treball s'ha centrat en assolir dos grans objectius, primer de tot, conèixer la possibilitat d'utilitzar el pinyol d'oliva com a adsorbent de metalls divalents de solucions aquoses, com són el Cd(II), Cu(II), Ni(II) i Pb(II), i en segon lloc, avaluar la utilització de quatre residus vegetals (escorça de yohimbe, rapa de raïm, suro i pinyol d'oliva) per a l'extracció de Cr(VI) de solucions aquoses i utilitzar el residu vegetal més apropiat com a base per tal d'obtenir un nou sorbent, amb més bona morfologia per ser utilitzat en sistemes d'eliminació de Cr(VI) en continu. Les dades cinètiques d'adsorció es van tractar amb el model cinètic de pseudo-segon ordre, amb el que es van determinar la velocitat inicial d'adsorció dels metalls. Els models d'isotermes d'equilibri de Langmuir i Freundlich es van utilitzar per descriure els equilibris d'adsorció i calcular els paràmetres de les isotermes. En els assajos amb mescles binàries de metalls, els resultats es van tractar amb el model ampliat de Langmuir.En aquest treball s'ha determinat, primerament, que el pinyol d'oliva és un bon sorbent dels metalls divalents estudiats. S'ha determinat que l'adsorció dels metalls varia amb el pH de la solució i que la presència de sals en la solució provoca una davallada en l'adsorció. També es va determinar la competència en l'adsorció entre els metalls al realitzar assajos en mescles binàries.Amb els estudis d'extracció de Cr(VI) amb els quatre materials s'ha determinat que aquests vegetals poden adsorbir el Cr(VI) en solució, tot i que la rapa i la yohimbe són els materials que presenten unes capacitats d'adsorció més elevades. Les anàlisis amb espectroscòpia electrònica de Raig-X realitzats en la rapa de raïm i la yohimbe en contacte amb Cr(VI) varen demostrar la presència del metall en els dos estats d'oxidació, Cr(VI) i Cr(III), evidenciant la participació del mecanisme de reducció de Cr(VI) en l'adsorció del metall sobre els materials.Amb l'encapsulació de la rapa de raïm es va incrementar significativament la capacitat d'adsorció del metall respecta a la seva utilització en la forma original. Les dades experimentals es van tractar amb un model de difusió i es va determinar el coeficient de difusió en l'adsorció en el sorbent amb diferent percentatge de rapa en l'interior.Finalment s'han realitzat estudis preliminars d'adsorció de crom hexavalent en continu utilitzant columnes de petites dimensions farcides amb el sorbent format per boles de rapa encapsulada en alginat càlcic. En aquests assajos s'ha determinat l'efecte en l'adsorció de metall de diversos paràmetres d'operació, com la concentració inicial de metall, el cabal i l'alçada de llit. El model de transferència de matèria i difusió en columna emprat pel tractament de les dades experimentals va mostrar l'efecte de la concentració inicial i del cabal en els coeficients de difusió i transferència de matèria. El model BDST no va predir correctament el temps de servei en els diferents paràmetres d'operació experimentats a causa de la complexitat del procés d'adsorció. Amb aquests assajos preliminars s'han establert les bases de l'adsorció de Cr(VI) amb el nou sorbent en sistemes en continu amb la finalitat de realitzar estudis posteriors d'eliminació del metall en columnes de majors dimensions. / Adsorption with activated carbon is a usual treatment to remove metals from wastewater. In order to reduce the cost of the treatment, several studies have been carried out to evaluate the use of low cost sorbents as an alternative to conventional sorbents used in wastewater treatment. In this work, the use of different vegetable wastes from agricultural or industrial processes has been evaluated as sorbents for metal removal from aqueous solutions. The aim of this work was to study first, the usefulness of olive stones as a sorbent for divalent metals such as Cd(II), Cu(II), Ni(II) and Pb(II) from aqueous solutions and then the use of four vegetable wastes (yohimbe bark, grape stalks, cork and olive stones) for the removal of Cr(VI) from aqueous solutions. The vegetable waste powder was encapsulated in calcium alginate to obtain spherical gel beads that were used in continuous flow process for Cr(VI) removal.In all sorption experiments, kinetic data were modeled by the pseudo-second order kinetic equation and determine the constants sorption rates. Langmuir and Freundlich model isotherms were use to describe sorption equilibrium data and to obtain the isotherm parameters. In binary mixtures, the extended Langmuir isotherm model was used. The results showed that olive stones are a good sorbent for studied divalent metal. Metal uptake was pH dependent and the presence of salts in solution provokes a decrease in metal uptake. A clear competence between metals to be adsorbed on the waste was observed in metal binary mixtures. Although results obtained in Cr(VI) removal studies show that the four studied wastes can adsorb Cr(VI), grape stalks and yohimbe bark wastes showed the best chromium sorption capacity. X-Ray Photoelectron Spectroscopy analysis on grape stalks and yohimbe chromium loaded samples put into evidence that both Cr(VI) and Cr(III) were sorbed on wastes surface indicating that Cr(VI) sorption process involves a redox reaction. The gel beads obtained when encapsulating grape stalks in calcium alginate showed a significant increase in Cr(VI) sorption capacity compared to the original grape stalks waste. A diffusion model was used to analyze the experimental data and to determine the diffusion coefficient for Cr(VI) sorption by beads containing different percentage of grape stalks encapsulated in calcium alginate. Finally, preliminary studies of Cr(VI) removal in continuous flow using the beads containing grape stalks powder gel in laboratory columns have been carried out. The effect of operating parameters such as feed metal concentration, flow rate and bed depth was studied. The mass transfer and diffusion model used to describe column data showed the effect of feed metal concentration and flow rate in both, diffusion and mass transfer coefficients, respectively. The bed depth service time model (BDST) failed in predicting the service time when changing operating parameters due to the complexity of the sorption process. With these preliminary column experiments we established the basis for Cr(VI) sorption by the proposed sorbent in continuous flow process for further development of the process to be used in higher scale columns.
6

Biphasic Scaffolds from Marine Collagens for Regeneration of Osteochondral Defects

Bernhardt, Anne, Paul, Birgit, Gelinsky, Michael 11 June 2018 (has links)
Background: Collagens of marine origin are applied increasingly as alternatives to mammalian collagens in tissue engineering. The aim of the present study was to develop a biphasic scaffold from exclusively marine collagens supporting both osteogenic and chondrogenic differentiation and to find a suitable setup for in vitro chondrogenic and osteogenic differentiation of human mesenchymal stroma cells (hMSC). Methods: Biphasic scaffolds from biomimetically mineralized salmon collagen and fibrillized jellyfish collagen were fabricated by joint freeze-drying and crosslinking. Different experiments were performed to analyze the influence of cell density and TGF-β on osteogenic differentiation of the cells in the scaffolds. Gene expression analysis and analysis of cartilage extracellular matrix components were performed and activity of alkaline phosphatase was determined. Furthermore, histological sections of differentiated cells in the biphasic scaffolds were analyzed. Results: Stable biphasic scaffolds from two different marine collagens were prepared. An in vitro setup for osteochondral differentiation was developed involving (1) different seeding densities in the phases; (2) additional application of alginate hydrogel in the chondral part; (3) pre-differentiation and sequential seeding of the scaffolds and (4) osteochondral medium. Spatially separated osteogenic and chondrogenic differentiation of hMSC was achieved in this setup, while osteochondral medium in combination with the biphasic scaffolds alone was not sufficient to reach this ambition. Conclusions: Biphasic, but monolithic scaffolds from exclusively marine collagens are suitable for the development of osteochondral constructs.
7

Label-free multiphoton microscopy reveals relevant tissue changes induced by alginate hydrogel implantation in rat spinal cord injury

Galli, Roberta, Sitoci-Ficici, Kerim H., Uckermann, Ortrud, Later, Robert, Marečková, Magda, Koch, Maria, Leipnitz, Elke, Schackert, Gabriele, Koch, Edmund, Gelinsky, Michael, Steiner, Gerald, Kirsch, Matthias 24 April 2019 (has links)
The development of therapies promoting recovery after spinal cord injury is a challenge. Alginate hydrogels offer the possibility to develop biocompatible implants with mechanical properties tailored to the nervous tissue, which could provide a permissive environment for tissue repair. Here, the effects of non-functionalized soft calcium alginate hydrogel were investigated in a rat model of thoracic spinal cord hemisection and compared to lesioned untreated controls. Open field locomotion tests were employed to evaluate functional recovery. Tissue analysis was performed with label-free multiphoton microscopy using a multimodal approach that combines coherent anti-Stokes Raman scattering to visualize axonal structures, two-photon fluorescence to visualize inflammation, second harmonic generation to visualize collagenous scarring. Treated animals recovered hindlimb function significantly better than controls. Multiphoton microscopy revealed that the implant influenced the injury-induced tissue response, leading to decreased inflammation, reduced scarring with different morphology and increased presence of axons. Demyelination of contralateral white matter near the lesion was prevented. Reduced chronic inflammation and increased amount of axons in the lesion correlated with improved hindlimb functions, being thus relevant for locomotion recovery. In conclusion, non-functionalized hydrogel improved functional outcome after spinal cord injury in rats. Furthermore, label-free multiphoton microscopy qualified as suitable technique for regeneration studies.
8

Scaffolds fabricated by three-dimensional plotting for bone tissue engineering and regeneration

Luo, Yongxiang 26 September 2013 (has links)
In this thesis, several types of scaffolds composed of different materials and designed structures and functions were fabricated by 3D plotting under mild conditions (room temperature and without using any organic solvent). Broad biomaterials including inorganic (such as calcium phosphate cement and mesoporous bioglass), organic (such as alginate and gelatin) and composite materials were prepared into printable pastes to plot as 3D scaffolds for bone tissue engineering. Organic/inorganic biphasic and bipartite structure, core/shell alginate/nano-hydroxyapatite and hollow fiber structure were designed and realized. Scaffolds with multi functions including suitable mechanical properties, sustained drug/protein delivery and in vitro vascularization were achievable. 3D plotting provided great achievements in the field of tissue engineering by preparing advanced scaffolds, as well as by plotting cell/matrix constructs, and even complex tissues and organs.
9

Hydroxylapatit-Verbundwerkstoffe und -Biokeramiken mit parallel orientierten Porenkanälen für das Tissue Engineering von Knochen / Hydroxyapatite composites and bioceramics with parallel aligned pore channels for tissue enginering of bone

Despang, Florian 01 July 2013 (has links) (PDF)
Für das Tissue Engineering von Knochen werden poröse dreidimensionale Substrate (Scaffolds) als Zellträger benötigt, die in der vorliegenden Arbeit über keramische Technologie hergestellt wurden. Neben dem strukturierten und getrockneten Verbundwerkstoff (Grünkörper) und der Sinterkeramik wurde auch der Zwischenzustand nach Ausheizen der organischen Phase (Braunkörper) evaluiert. Bei der Herstellung blieb die Architektur der parallel orientierten Kanalporen, die über den Sol-Gel-Prozess der gerichteten ionotropen Gelbildung des Alginates erzeugt wurde, in allen Materialzuständen erhalten. Die Herstellungstechnologie wurde derart optimiert, dass die neuartigen anisotropen Scaffolds allen prinzipiell gestellten Forderungen für das Tissue Engineering entsprachen – sie waren porös mit weithin einstellbarer Porengröße, sterilisierbar, gut handhabbar unter Zellkulturbedingungen, biokompatibel und degradabel. Der unerwartete Favorit der Biomaterialentwicklung, der Braunkörper – eine nanokristalline, poröse Hydroxylapatit-Biokeramik – lag in einer ersten in vivo-Studie nach 4 Wochen integriert im Knochen vor. Die beobachtete Knochenneubildung deutete auf eine osteokonduktive Wirkung des Materials hin. Die in der vorliegenden Arbeit untersuchten Technologien und Biomaterialien bieten eine Basis für weitere Forschung und motivieren zur Weiterentwicklung und Nutzung als Scaffold für das Tissue Engineering oder Knochenersatzmaterial unter Verwendung der interessanten Architektur.
10

Entwicklung und Charakterisierung von Scaffolds auf Basis von mineralisiertem Kollagen zur gezielten Wirkstofffreisetzung für die Knochengewebe-Regeneration

Knaack, Sven 12 January 2016 (has links) (PDF)
Beim Tissue Engineering ist die Vaskularisierung von größeren Zell-Matrix-Konstrukten nach Implantation bis heute ein großes Problem. Durch das initiale Fehlen eines mikrovaskulären Netzwerkes kommt es zu einem raschen Zellsterben im Scaffold. Aufgrund dessen war das Ziel dieser Arbeit, im Sinne des in situ-Tissue Engineering ein Scaffold auf Basis von mineralisiertem Kollagen zu entwickeln, welches mit dem angiogenen Wachstumsfaktor VEGF funktionalisiert wird, um den Prozess der Vaskularisierung – die Einsprossung von Blutgefäßen – zu fördern und gleichzeitig durch Chemoattraktion in vivo Zellen aus dem umliegenden Knochengewebe in das Innere des Scaffolds migrieren zu lassen, so dass eine beschleunigte Defektheilung erzielt wird. Poröse Scaffolds aus mineralisiertem Kollagen wurden durch zwei unterschiedliche Strategien funktionalisiert und durch in vitro-Testungen charakterisiert. Die erste Strategie umfasste die Heparin-Modifizierung der gesamten Scaffolds, während die zweite Strategie die Injizierung eines zentralen VEGF-haltiges Depots in das Scaffoldinnere darstellte. Neben der Charakterisierung der Scaffolds wurde die Freisetzungskinetik des Modellwachstumsfaktors VEGF aus den modifizierten Scaffolds untersucht und die biologische Aktivität des freigesetzten Faktors auf Endothelzellen getestet. Zusätzlich wurde bei der 2. Strategie, der Injizierung eines Wirkstoffdepots, die Ausbildung eines Wirkstoffgradienten und die zielgerichtete Migration von Endothelzellen in Richtung des Wirkstoffdepots analysiert.

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