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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.
21

Solubility Ratios, Encapsulation Efficiency, and Size of Beta-sitosterol Loaded Poly(Lactide)-Block-Poly(Ethylene glycol) Polymeric Micelles

Alqarni, Ali 31 July 2019 (has links)
β-sitosterol/poly(ethylene glycol)-block-poly(lactic acid) (PLA-b-PEG) complexes were prepared by solution blending in purified water and ethanol. The mixture of water and ethanol is a suitable solvent system for the two components. The complex was studied by using Nuclear Magnetic Resonance (NMR) spectroscopy and Differential Scanning Calorimetry (DSC). β-sitosterol is a drug that may reduce the swelling of benign prostatic hyperplasia (BPH) and diminishing inflammation. However, it is hydrophobic and difficult to deliver in aqueous solution. Since PLA-b-PEG has amphiphilic properties, the complex described here may enhance delivery of this drug for treatment of BPH. Proton NMR (1HNMR) of the complexes shows that the methylene (CH2) protons of the PEG, the (-O-CH-) of PLA, and (CH3) of PLA are slightly shifted because of its non-covalent interaction with β-sitosterol. The complex formation was supported by 2-D NMR (NOESY) spectroscopy. NOESY spectra show cross peaks, indicating the interaction between the two components. DSC of the complexes shows thermal characteristics that are different from the individual components. In particular, the PEG in the complex shows a lower melting point and decreased crystallinity compared to the pure PEG. The melting point is lowered from 57°C to 55.3 °C for the PEG-b-PLA/β-sitosterol (5%) complex. Under the same condition, the melting point of PLA dropped from 170 °C to 130 °C. Atomic force microscopy shows changes in the surface morphology of the copolymer from crystalline to amorphous when incorporated with the drug. NMR, DSC, AFM, and MTT assay studies suggest the formation of a relatively stable β-sitosterol/poly(lactic acid)-block-poly(ethylene glycol) complex. The cell proliferation assay (MTT assay) suggests significant inhibition of the stimulation of growth of prostate cancer cells upon addition the complex.
22

Mechanisms for modifying the physiochemical and physiomechanical properties of poly (lactic-co-glycoic) acid: the impact on controllled drug delivery

Sibambo, Sibongile Ruth 29 July 2011 (has links)
MPharm. Faculty of Health Sciences, University of the Witwatersrand, 2007
23

Eco Friendly Composites Prepared from Lactic Acid Based Resin and Natural Fiber

Esmaeili, Nima, Javanshir, Shahrzad January 2014 (has links)
Lactic acid based thermoset were synthesised by reacting lactic acid with glycerol andfunctionalizing lactic acid branches by methacrylic anhydride. Resins with different chainlength were prepared and their thermo mechanical properties were examined through DMAanalysis and their molecular structures were analyzed by NMR method and their viscositywere investigated through rheometry analysis and three monomers were selected as the bestchain length. Degree of reaction in different reaction times was evaluated by a modifiedtitration method and bulk preparation of resin was performed by optimal process condition.DSC analysis was conducted in order to evaluate curing behaviour of resin with benzoylperoxide as cross-linking initiator. TGA analysis was performed to check thermo stability ofthe resin. Bio composites by viscose unidirectional and bidirectional knitted fabrics and alsonon woven viscose fiber with different fiber loads were prepared by ordinary hand layupimpregnation followed by compress moulding and their mechanical and thermo mechanicalproperties were characterized by tensile, flexural, charpy and DMA analysis and optimumfiber loads were identified for each fiber type. Ageing properties of prepared composites wereexamined by placing samples in climate chamber to simulate long time ageing and ageingexperiment was followed by tensile and flexural test to evaluate mechanical properties afterageing simulation. Composite`s swelling properties for water and some other solvents wereinvestigated and also their chemical resistance were evaluated by immersing them in 1M HCland KOH. The resin was also compared with a commercial oil based thermoset by preparingglass fiber reinforced composites and also effect of adding styrene to the resin were evaluated.Results of this work demonstrated that the novel synthesised have very high mechanical andthermo mechanical properties surpassing commercial oil based poly esters but ageingbehaviour is not very good however adding styrene can improve ageing properties. Also theresin is compatible with cellulosic natural fibers and forms strong composites. / Program: Masterutbildning i energi- och material
24

The Effect of the Physical Form of Biodegradable Polymer Carriers on the Humoral Immune Response to Co-Delivered Antigen

Bennewitz, Nancy Lee 02 December 2004 (has links)
The biomaterial component of a tissue engineered device has been shown to enhance the immune response to a co-delivered model shed antigen. The purpose of this research was to investigate in vivo the differential level of the immune response toward different forms of the biomaterial. A model shed antigen, ovalbumin (OVA), was incorporated into polymeric biomaterial carriers made of 50:50 poly(lactic-co-glycolic acid) (PLGA) in the form of microparticles (MP) or scaffolds (SC). These MP and SC biomaterial carrier vehicles with incorporated antigen were then injected or implanted, respectively, into C57BL6 mice to investigate the differential level of the immune response towards OVA controlled release from PLGA MP and PLGA SC. For each polymeric carrier, the resulting time-dependent systemic humoral immune response towards the incorporated OVA, the OVA-specific IgG concentration and isotypes (IgG2a or IgG1, indicating a predominant Th1 or Th2 response, respectively) were determined using ELISA. To assess the differential level of the immune response depending on the form of PLGA, the total amounts of polymer and OVA delivered were kept constant as well as the release rate of OVA. The in vitro protein release kinetics were studied for both PLGA MPs and PLGA scaffolds to examine the release rate of OVA from the polymeric carriers. The level of the humoral immune response was higher and sustained for OVA released from PLGA SC which were implanted with associated tissue damage, and lower and transient when the same amount of polymer and OVA were delivered from PLGA MP, which were minimally invasively delivered by injection. This immune response was primarily Th2 helper T cell-dependent as exemplified by the predominance of IgG1 isotype, although for the strong adjuvant, Complete Freunds adjuvant (CFA), and PLGA SC carriers the anti-OVA IgG2a isotype levels were also significant, potentially indicating both a Th2 and Th1 response. The PLGA SC and PLGA MP exhibited similar protein release kinetics, releasing similar amounts of OVA at each time point. Each carrier incubated contained the same ratio of OVA to polymer. In vitro protein release kinetics experiments suggest that the rate of release of OVA from PLGA SC and PLGA MP was similar, and therefore the enhanced immune response induced by PLGA SC is most likely due to danger signals from implantation which primed the system for an enhanced immune response and not from a difference in concentration of OVA released from the carriers.
25

Studies of PLGA Nanoparticles for Pharmaceutical Applications

Sun, Yanqi 08 1900 (has links)
PLGA have already been successfully applied for controlled drug delivery systems by the pharmaceutical industry due to its biocompatibility, biodegradability and ease of processing. It has recently further been developed and formulated into a form of nanoparticle. The single emulsion evaporation method was used to prepare nanoparticles in this study. By varying different parameters such as the concentration of regents, the type of surfactant and emulsion method, different particle sizes and size distribution of PLGA nanoparticles could be obtained. The stability of PLGA nanoparticles was further investigated by assessing their thermal property over a certain period of time using DSC. The decrease of Tg confirmed the hydration and degradation of PLGA polymers and nanoparticles. The changes of surface morphology showed that the nanoparticles were in spherical shape and maintained smooth surface before the storage, whereas they started to lose their original shapes as well as agglomerate to each other after 2-week storage. These results suggested that there was an erosion and degradation of PLGA nanoparticles during storage. Ibuprofen-loaded PLGA nanoparticles have been successfully prepared by o/w single emulsion evaporation method. During the stability study, a faster degradation rate compared to non-loaded PLGA nanoparticles was exhibited, showing that Ibuprofen increased the degradation rate of PLGA nanoparticles. According to the results of drug releasing study, PLGA nanoparticles exhibiting a slower drug release rate than pure drug which proved that drug-nanoparticule system could effectively increase the stability of drugs. PLGA polymer is a potential material for drug delivery system.
26

Indium complexes and their role in the ring-opening polymerization of lactide

Douglas, Amy Frances 05 1900 (has links)
The synthesis and characterization of a series of chiral indium complexes bearing a tridentate NNO ligand are reported. The ligand 2-[[[(dimethylamino)cyclohexyl]amino]methyl]- 4,6-bis(tert-butyl) phenol (H₂NNO) was synthesized via a previously published procedure and bound to indium by both a protonolysis and salt metathesis route. A dimethylated indium complex (NNO)InMe₂ (1) was isolated by reaction of InMe₃ with H₂NNO. A one-pot saltmetathesis route was used to produce a unique mixed-bridge dinuclear indium complex [(NNO)InCl] ₂(μ-OEt)(μ-Cl) (3) from a mixture of indium trichloride, potassium ethoxide and the monopotassiated salt of the ligand, KH(NNO). Direct reaction of KH(NNO) and indium trichloride resulted in the formation of (NNO)InCl₂ (4) which was carried forward to 3 by reaction with sodium ethoxide. The complex 3 is active for the ROP of β-butyrolactone ε-caprolactone and lactide and is the first reported indium-based catalyst for lactide or β-butyrolactone ROP. Kinetic studies of 3 for ROP of LA revealed that catalyst was well-behaved, and that the rate was first order with regard to lactide and catalyst. The enthalpy and entropy of activation for the ROP were experimentally determined. Polymer produced by ROP by 3 has narrow molecular weight distribution and a good correlation is seen between the observed moleular weight and monomer loading. A mechanism was proposed for 3 acting as a catalyst for the ROP of lactide; however further experiments are required to confirm this mechanism. Polymer samples isolated from the ROP of rac-lactide by rac-3 show isotactic enrichment. It is postulated that the chiral catalyst 3 is exerting stereocontrol via an enantiomorphic site control mechanism.
27

Indium complexes and their role in the ring-opening polymerization of lactide

Douglas, Amy Frances 05 1900 (has links)
The synthesis and characterization of a series of chiral indium complexes bearing a tridentate NNO ligand are reported. The ligand 2-[[[(dimethylamino)cyclohexyl]amino]methyl]- 4,6-bis(tert-butyl) phenol (H₂NNO) was synthesized via a previously published procedure and bound to indium by both a protonolysis and salt metathesis route. A dimethylated indium complex (NNO)InMe₂ (1) was isolated by reaction of InMe₃ with H₂NNO. A one-pot saltmetathesis route was used to produce a unique mixed-bridge dinuclear indium complex [(NNO)InCl] ₂(μ-OEt)(μ-Cl) (3) from a mixture of indium trichloride, potassium ethoxide and the monopotassiated salt of the ligand, KH(NNO). Direct reaction of KH(NNO) and indium trichloride resulted in the formation of (NNO)InCl₂ (4) which was carried forward to 3 by reaction with sodium ethoxide. The complex 3 is active for the ROP of β-butyrolactone ε-caprolactone and lactide and is the first reported indium-based catalyst for lactide or β-butyrolactone ROP. Kinetic studies of 3 for ROP of LA revealed that catalyst was well-behaved, and that the rate was first order with regard to lactide and catalyst. The enthalpy and entropy of activation for the ROP were experimentally determined. Polymer produced by ROP by 3 has narrow molecular weight distribution and a good correlation is seen between the observed moleular weight and monomer loading. A mechanism was proposed for 3 acting as a catalyst for the ROP of lactide; however further experiments are required to confirm this mechanism. Polymer samples isolated from the ROP of rac-lactide by rac-3 show isotactic enrichment. It is postulated that the chiral catalyst 3 is exerting stereocontrol via an enantiomorphic site control mechanism.
28

Bioparticle engineering using dense gas technologies

Lam, Un Teng, Chemical Sciences & Engineering, Faculty of Engineering, UNSW January 2009 (has links)
The applications of dense gas technology (DGT) in modern particle engineering have shown promising results in producing submicron particles with uniform particle morphology. In this study, two configurations of dense gas antisolvent processes were employed for the micronization, encapsulation and co-precipitation of pharmaceutical compounds. The encapsulation of superparamagnetic iron oxide nanoparticles (SPIONs) by a pH-responsive polymer (Eudragit?? S100) was successfully performed using the supercritical antisolvent (SAS) process. Nanocomposites of less than 200nm in diameter with encapsulated SPIONs content as high as 16 wt% were achieved. Magnetic characterization of the product was also performed and the data were fitted by the Langevin equation. The superparamagnetic properties of the composites were preserved and the effective magnetic size was about 10 nm. The magnetically and pH-responsive nanocomposites can be potentially utilized as magnetic resonance imaging contrast agents and drug carriers. Screening experiments of 8 active pharmaceutical ingredients and 5 pharmaceutical excipients were performed using the recently patented atomized rapid injection solvent extraction (ARISE) process. Candidates with promising product morphology and recovery were selected for co-precipitation studies. The co-precipitation of the anti-cancer drug 5-fluorouracil (5FU) and poly l-lactic acid (PLLA) was conducted to develop a controlled release system. Experiments were designed based on a two-level, three-factor factorial design, in order to investigate the effects of processing parameters on product characteristics. Submicron PLLA-5FU composites (diameter<0.8 ??m) with a drug loading of 7.4 wt% were produced.
29

Modification of poly(lactic acid) via olefin cross-metathesis

Sinclair, Fern January 2017 (has links)
Poly(lactic acid), PLA, is a viable replacement to petroleum derived polymers due to its renewable feedstock, biodegradability and bioassimilability, yet improvements in its physical, thermal and mechanical properties are required before it can fully enter all commodity markets. This thesis investigates olefin cross-metathesis (CM) as a synthetic strategy to modify the properties of PLA. The use of novel lanthanide and actinide catalysts on the microstructure control of PLA are also explored. The Tebbe reagent was used in a new synthetic strategy to produce a novel olefin derivative of lactide (MML). Olefin CM of MML with hex-1-ene was successful but polymerisation pre- and post-CM was unsuccessful due to monomer instability. CM of another olefin derivative of lactide, 3-methylenated lactide (3-ML) was successful with aliphatic alkenes; hex-1-ene to dodec-1-ene. To overcome competing alcoholysis of the functionalised monomers, which prevented polymerisation, hydrogenation was used to remove the olefin entity followed by successful ring-opening polymerisation (ROP) to produce polymers of low glass-transition temperatures (Tg). Post-polymerisation CM on an olefin containing polymer P(β-heptenolactone) P(β-HL), with methyl acrylate and an epoxide, generated functionalised homopolymers with increased Tg’s. Co-polymerisation of lactide with β-HL generated novel gradient-copolymers. Olefin CM with 15 different cross-partners produced functionalised copolymers with different thermal properties. Based on this route a new methodology was created to introduce two unique functionalities into the polymer backbone by manipulation of the olefin reactivities. Finally, in a collaborative project, uranium and cerium catalysts, Me3SiOU(OArP)3 and Me3SiOCe(OArP)3 - designed out-with the group- were tested and compared as ROP catalysts for lactide. Both catalysts were active in living polymerisations of L-lactide and under immortal conditions the activity and rates of the catalysts were switched, accounted for by a change in the coordination sphere due to ligand displacement. ROP of rac-lactide using the uranium analogue produced heterotactic-biased PLA with a Pr = 0.79.
30

Efeito de modificadores poliméricos e argila organofílica nas propriedades do biopolímero poli (ácido lático) – PLA.

CUNHA, Bartira Brandão da. 06 July 2018 (has links)
Submitted by Maria Medeiros (maria.dilva1@ufcg.edu.br) on 2018-07-06T12:08:50Z No. of bitstreams: 1 BARTIRA BRANDÃO DA CUNHA - TESE (PPGCEMat) 2015.pdf: 9101656 bytes, checksum: d0261dbd09ba7b441015349ba1e717c3 (MD5) / Made available in DSpace on 2018-07-06T12:08:50Z (GMT). No. of bitstreams: 1 BARTIRA BRANDÃO DA CUNHA - TESE (PPGCEMat) 2015.pdf: 9101656 bytes, checksum: d0261dbd09ba7b441015349ba1e717c3 (MD5) Previous issue date: 2015-01-29 / Capes / A crescente busca por materiais alternativos que tragam menos dano ao meio ambiente resultou no desenvolvimento dos polímeros biodegradáveis. Estes materiais, do ponto de vista do processamento de obtenção, apresentam redução no consumo energético que aliada à ausência de inércia na sua degradação implicam na redução do acúmulo de lixo plástico no meio ambiente. Entretanto, alguns desses polímeros, como o poli (ácido lático) - PLA, por exemplo, apresentam algumas limitações quanto a sua aplicação, por ser um polímero de alta fragilidade e rigidez. A fim de ampliar o uso comercial do PLA, algumas pesquisas estão sendo desenvolvidas com o intuito de melhorar essas propriedades. Com base nisto, o atual trabalho de doutorado teve por objetivo estudar o efeito de modificadores poliméricos e argila organofílica nas propriedades do PLA a fim de se obter maior conhecimento sobre esse novo tipo de material. Para tanto o trabalho ocorreu em duas etapas: na primeira foram usados três modificadores poliméricos diferentes, cada um foi usado individualmente com o PLA, na proporção 90/10 (PLA/Modificador); na segunda, para cada sistema PLA/Modificador, foi acrescentado o teor de 3 pcr (partes por cem de resina) de argila organofílica. Os modificadores utilizados foram o Biostrength 150, o Paraloid e o EGMA, e a argila foi a Brasgel bentonítica. As misturas foram realizadas por meio de fusão. Para avaliar o efeito da modificação no PLA as amostras foram caracterizadas por meio das técnicas de Difração de Raios X (DRX), Espectroscopia na Região do Infravermelho por Transformada de Fourier (FTIR), Ensaios Mecânicos de Tração e Impacto, Microscopia Eletrônica de Varredura (MEV) Análises Térmicas por Calorimetria Exploratória Diferencial (DSC), Termogravimetria (TG) e DinâmicoMecânica (DMTA), Reologia e análise por temperatura de Distorção Térmica (HDT). Os resultados apontaram que as propriedades mecânicas de resistência ao impacto melhoraram significativamente, dependendo do modificador em uso, e também quando houve a combinação com a argila organofílica. No geral as propriedades mecânicas indicam que houve a tenacificação no PLA sem perda expressiva do módulo de elasticidade. As análises morfológicas apontaram uma boa dispersão do material. E as propriedades térmicas não sofreram grandes alterações. Os dados obtidos no ensaio reológico sugerem a formação de uma rede percolada na presença da argila. Concluindo-se por tanto que os modificadores poliméricos atuaram como dissipadores de energia e uso da argila inibiu a coalescência dos modificadores em meio a matriz polimérica, atuando de fato como uma barreira. / The increasing search for alternative materials that bring less damage to the environment resulted in the development of biodegradable polymers. These materials, from the viewpoint of obtaining processing, show a reduction in the energy consumption and the lack of inertia in its degradation imply the reduction of plastic waste accumulation in the environment. However, some of these polymers such as poly (lactic acid) - PLA, for example, have some limitations on their application, being a polymer of high rigidity and brittleness. In order to expand the commercial use of PLA, some research is being done with the aim of improving these properties. On this basis, the current doctoral work aimed to study the effect of polymeric modifiers and organoclay in PLA properties in order to obtain greater insight into this new type of material. For this work occurred in two stages: the first were used three different polymeric modifiers, each was used individually with the PLA in proportion 90/10 (PLA / Modifier); the second, for each PLA / modifier system was added 3 phr of the content (parts per hundred resin) of organophilic clay. The modifiers used were Biostrength 150, the Paraloid and E-GMA, and bentonite clay was the Brasgel. The mixtures were made by way of merger. To evaluate the effect of change in PLA samples were characterized by the techniques of X-ray Diffraction (XRD), Infrared Spectroscopy in the Region Fourier Transform (FTIR), Traction Mechanical Testing and Impact, Scanning Electron Microscopy (SEM) Thermal Analysis by Differential Scanning Calorimetry (DSC), thermogravimetry (TG) and Dynamic-Mechanical (DMTA), Rheology and analysis Temperature Heat Distortion (HDT). The results showed that the mechanical properties of impact resistance improved significantly with the use of polymeric modifiers and also when it was the combination with the organoclay. Overall mechanical properties indicate that there was no significant toughening the PLA loss modulus. Morphological analysis showed a good dispersion of the material. And the thermal properties did not change much. Rheological data obtained in testing suggest the formation of a percolating network in the presence of the clay. In conclusion therefore is that polymeric modifiers acted as energy sinks and use of the clay modifiers inhibit coalescence of the polymer matrix in the middle, in fact acting as a barrier.

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