Search results for "Delivery"
showing 10 items of 1271 documents
Extracellular vesicles from a renewable natural source: development of new biomaterials
2023
Le vescicole extracellulari (EV) sono nanoparticelle membranose derivate dalle cellule che mediano la comunicazione intercellulare trasferendo composti bioattivi come proteine e RNA. La scoperta delle EV come nanotecnologie naturali e mezzi di comunicazione tra cellule e persino tra specie ha suscitato grande interesse nel campo della somministrazione di farmaci. Le EV possiedono intrinsecamente diversi attributi che le rendono un buon veicolo per il rilascio di farmaci in organi e tessuti bersaglio specifici. Infatti, queste particelle: i) sono ben tollerate nel corpo, ii) hanno una lunga emivita circolante, iii) vengono internalizzate dalle cellule riceventi e iv) sono capaci di attravers…
Preparation, characterization and biological evaluation of Nanostructured Lipid Carriers (NLCs) conteining sorafenib
2013
Polymeric Nanogels: Nanocarriers For Drug Delivery Application.
2012
The application of nanotechnology to medicine has enabled the development of functionalised nanoparticles that, acting as carriers, can be loaded with drugs or genetic material to be released with a controlled mechanism in specific districts of the organism. Even though nanomedicine is a relative new branch of science, many type of nanocarriers for drug delivery have been developed over the past 30 years, such as liposomes, dendrimers, quantum dots, solid lipid nanoparticles, viruses and virus-like nanoparticles as well as a wide var iety of polymeric nanoparticles. Among these last, in our opinion, nanogels deserve a special attention. Nanogels are nanoscalar polymer networks, with a tende…
Large-scale radiation manufacturing of hierarchically assembled nanogels
2012
Nanogels (NGs), or small particles formed by physically or chemically crosslinked polymer networks, represent a niche in the development of "smart" nanoparticles for drug delivery and diagnostics. They offer unique advantages over other systems, including a large and flexible surface for multivalent bio-conjugation; an internal 3D aqueous environment for incorporation and protection of (bio)molecular drugs; the possibility to entrap active metal or mineral cores for imaging or phototherapeutic purposes; stimuli-responsiveness to achieve temporal and/or site control of the release function and biocompatibility. The availability of inexpensive and robust preparation methodologies is at the ba…
PREPARAZIONE E CARATTERIZZAZIONE DI NANOSISTEMI LIPIDICI PER IL DIREZIONAMENTO E IL RILASCIO MODIFICATO DI FARMACI E ACIDI NUCLEICI IN TERAPIA ONCOLO…
2016
sono stati sviluppati sistemi nanoparticellari in grado di intrappolare elevate quantità di farmaci e di legare materiale genico. I sistemi preparati sono stati caratterizzati da un punto di vista chimico-fisico e tecnologico farmaceutico. Sono stati infine utilizzati per prove in vitro e i risultati ottenuti hanno mostrato che essi possiedono le caratteristiche per potere essere considerati dei validi carrier per farmaci e materiale genico nel trattamento oncologico.
SUPERPARAMAGNETIC HYDROPHOBIC POLYASPARTAMIDE NANOPARTICLES FOR ANTICANCER DRUG DELIVERY
2012
Biocompatible Lipid Nanoparticles as Carriers to Improve Curcumin Efficacy in Ovarian Cancer Treatment
2017
Curcumin is a natural molecule with proved anticancer efficacy on several human cancer cell lines. However, its clinical application has been limited due to its poor bioavailability. Nanocarrier-based drug delivery approaches could make curcumin dispersible in aqueous media, thus overtaking the limits of its low solubility. The aim of this study was to increase the bioavailability and the antitumoral activity of curcumin, by entrapping it into nanostructured lipid carriers (NLCs). For this purpose here we describe the preparation and characterization of three kinds of curcumin-loaded NLCs. The nanosystems allowed the achievement of a controlled release of curcumin, the amounts of curcumin r…
Interazioni tra nanotubi e molecole organiche
Nell'ampio scenario dei nanomateriali, i sistemi nanotubolari godono di un consolidato e crescente interesse sia nell'ambito scientifico che industriale. Fra la miriade di sistemi tubolari, i più utilizzati sono i nanotubi a base di carbonio e carbon nanohorns e più recentemente, vista l'elevata biocompatibilità e il loro basso costo, nanotubi inorganici quali i nanotubi di allosite. la funzionalizzazione di questi materiali con diverse tipologie di molecole organiche, ha permesso la sintesi di materiali che potrebbero o hanno trovato applicazione come filler polimerici, come supporti eterogenei in catalisi e nel campo del drug carrier e delivery. Inoltre, nel caso di nanotubi di allosite, …
Mechanisms of cell death in canine parvovirus-infected cells provide intuitive insights to developing nanotools for medicine
2010
Jonna Nykky, Jenni E Tuusa, Sanna Kirjavainen, Matti Vuento, Leona GilbertNanoscience Center and Department of Biological and Environmental Science, University of Jyväskylä, FinlandAbstract: Viruses have great potential as nanotools in medicine for gene transfer, targeted gene delivery, and oncolytic cancer virotherapy. Here we have studied cell death mechanisms of canine parvovirus (CPV) to increase the knowledge on the CPV life cycle in order to facilitate the development of better parvovirus vectors. Morphological studies of CPV-infected Norden laboratory feline kidney (NLFK) cells and canine fibroma cells (A72) displayed characteristic apoptotic events. Apoptosis was f…
Exploring nose-to-brain insulin delivery as a new strategy for the treatment of Alzheimer’s disease
2019
A growing body of evidence shows that Insulin, Insulin Receptor (IR) and IR signaling are involved in brain cognitive functions and their dysfunction is implicated in Alzheimer’s disease (AD) degeneration. Thus, administration of insulin could be a strategy for AD treatment. For this aim we designed, synthesized and characterized a nanogel system (NG) to deliver insulin to the brain, as a tool for the development of a new therapy for AD. A carboxyl-functionalized poly(N-vinyl pyrrolidone) nanogel system produced by high energy ionizing radiation was chosen as substrate for the covalent attachment of insulin or fluorescent molecules, relevant for its tracing