4 resultados para Hydrogels thermoréversibles

em AMS Tesi di Laurea - Alm@DL - Università di Bologna


Relevância:

10.00% 10.00%

Publicador:

Resumo:

I generatori compatti di neutroni possono rappresentare un grande progresso nell'ambito della Medicina Nucleare. Sono una valida alternativa rispetto ai metodi tradizionali per la produzione dei radioisotopi necessari per la sintesi dei radiofarmaci, e permettono di esplorare e sviluppare nuove metodologie radioterapeutiche innovative, complementari e potenzialmente più efficaci rispetto a quelle già esistenti. Enea sta portando avanti due progetti in questo ambito. Il primo, SORGENTINA-RF, è volto allo sviluppo di una macchina in grado di produrre un fascio di neutroni a 14MeV, con la quale irradiare un target di molibdeno metallico, in modo da ottenere tecnezio-99 metastabile (99mTc), il radioisotopo più usato al mondo nelle procedure di imaging biomedico. Il secondo progetto, LINC-ER, ha lo scopo di progettare le infrastrutture necessarie ad accogliere un generatore compatto di neutroni, il cui scopo sarà quello di eliminare le residue cellule tumorali dopo un intervento chirurgico, a ferita aperta, in modo simile alle attuali tecniche di radioterapia intraoperatoria, che però sfruttano elettroni o raggi X. Questo lavoro di tesi trova posto in questi progetti perché ha contributo a portare avanti le ricerche in due aspetti specifici. Nel caso di SORGENTINA-RF, sono stati studiati tutti gli aspetti radiochimici per ottenere dal molibdeno metallico la soluzione liquida di molibdato sodico da cui si estrae il 99mTc. In questo caso si è deciso di puntare su processo “green” e innovativo basato sull’uso di perossido di idrogeno. Durante la tesi si sono studiati i più importanti fattori che governano questo processo e si è definito un meccanismo chimico che lo spiega. Nel caso di LINC-ER, invece, il lavoro sperimentale è stato quello di studiare metodi e rotte sintetiche nuove per ottenere nanoparticelle di composti di boro e bario, dispersi in hydrogels in grado di amplificare gli effetti del fascio neutronico sui tessuti cancerogeni e ridurli su quelli sani.

Relevância:

10.00% 10.00%

Publicador:

Resumo:

The main research topic of the present master thesis consisted in the modification and electrochemical testing of inkjet printed graphene electrodes with a thin polymeric hydrogel layer made of cross-linked poly(N-isopropylacrylamide) (PNIPAAM) acting as a functional layer to fabricate selective sensors. The first experimental activities dealt with the synthesis of the polymeric hydrogel and the modification of the active surface of graphene sensors through photopolymerization. Simultaneous inkjet printing and photopolymerization of the hydrogel precursor inks onto graphene demonstrated to be the most effective and reproducible technique for the modification of the electrode with PNIPAAM. The electrochemical performance of the modified electrodes was tested through cyclic voltammetry. Voltammograms with standard redox couples with either positive, neutral or negative charges, suggested an electrostatic filtering effect by the hydrogel blocking negatively charged redox species in near neutral pH electrolyte solutions from reaching the electrode surface. PNIPAAM is a known thermo-responsive polymer, but the variation of temperature did not influence the filtering properties of the hydrogels for the redox couples studied. However, a variation of the filter capacity of the material was observed at pH 2 in which the PNIPAAM hydrogel, most likely in protonated form, became impermeable to positively charged redox species and permeable to negatively charged species. Finally, the filtering capacity of the electrodes modified with PNIPAAM was evaluated for the electrochemical determination of analytes in presence of negatively charge potential interferents, such as antioxidants like ascorbic acid. The outcome of the final experiments suggested the possibility to use the inkjet-printed PNIPAAM thin layer for electroanalytical applications as an electrostatic filter against interferents of opposite charges, typically present in complex matrices, such as food and beverages.

Relevância:

10.00% 10.00%

Publicador:

Resumo:

The purpose of my internship, carried out during my Erasmus period at the Complutense University of Madrid, was focused on the formulation of ionogels and hydrogels for the obtainment of films with high lignin content, and on their characterization measuring their antibacterial properties. For biomass formulation I used lignocellulosic biomass (Pinus Radiata) as raw material and ionic liquid as solvent. The two ionic liquids proposed were: 1-ethyl-3-methylimidazoliumdimethylphosphate [Emim][DMP] and 1-ethyl-3-methylimidazoliumdiethylphosphate [Emim][DEP]. The two-starting cellulose-rich solids were obtained from Pinus radiata wood that had been submitted to an organosolv process, to reduce its lignin content to fifteen (ORG15) and twenty per cent (ORG20). Having two ionic liquids and two solids available, the first phase of the project was devoted to the screening of both solids in both ionic liquids. Through this, it was possible to identify that only the [Emim][DMP] ionic liquid fulfils the purpose. It was also possible to discard the cellulose-rich solid ORG20 because its dissolution in the ionic liquid was not possible (after the time fixed) and, additionally, a Pinus radiata cellulose-rich solid bleached with hydrogen peroxide and containing ten per cent of lignin (ORG10B) was included in the screening. After screening, a total of five ionogels were subsequently formulated: two gels were formulated with the starting raw material ORG15 (with 1% and 1.75% cellulose, respectively) and three with ORG10B (with 1%, 1.75% and 3% cellulose, respectively). Five hydrogels were obtained from the ionogels. Rheological tests were performed on each ionogel and hydrogel. Finally, films were formulated from hydrogels and they were analysed by antibacterial testing to see if they could be applied as food packaging. In addition, antioxidant and properties such as opacity and transparency were also studied.

Relevância:

10.00% 10.00%

Publicador:

Resumo:

Three-dimensional (3D) multicellular spheroids are exceptional in vitro cell models for their ability to accurately mimic real cell-cell interaction processes. However, the challenges in producing well-defined spheroids with controlled size together with the deficiency of techniques to monitor them significantly restrict their use. Herein, a novel device to study spheroid formation in real time is presented. By exploiting electrochemical impedance spectroscopy, a multi-electrode array (MEA) attached to a calcium alginate scaffold is able to monitor the behaviour of 36 different hydrogel wells. The scaffold contains inverted shape pyramidal microwells, which guide the aggregation of cells into spheroids with controlled dimensions. Preliminar studies on calcium alginate, optimisation of fabrication strategy are shown, together with testing of the device in the presence and the absence of the hydrogel. Lastly, the device was tested for its intended aim, i.e. to monitor the formation of a spheroid, proving its potential as an impedance biosensor.