Matches in SemOpenAlex for { <https://semopenalex.org/work/W2056547611> ?p ?o ?g. }
- W2056547611 endingPage "77" @default.
- W2056547611 startingPage "68" @default.
- W2056547611 abstract "Among the chitosan derivatives, trimethylchitosan (TMC) has been shown to have penetration enhancement properties also in intestinal environment. In addition, the use of nanoparticulate systems has the advantage of protecting peptidic drugs from intestinal degradations, due to internalisation behaviour. Therefore, the aim of this paper was to evaluate nanoparticulate systems based on TMC. In particular the mucoadhesive and absorption enhancement properties of nanoparticles based on TMC with different quaternization degree (QD) intended for the intestinal administration of macromolecules (peptides) have been evaluated. Comparison with chitosan (CS.HCl) nanoparticles was made. The nanoparticles were loaded with fluorescein isothiocyanate dextran (FD4, MW 4400 Da), used as the model macromolecule. The intestinal penetration enhancement properties of nanoparticles were investigated in an in vitro Caco-2 cell model and an ex vivo rat jejunum model. The mucoadhesion of the nanosystems was evaluated using excised rat jejunum. All of the nanoparticulate systems interacted with the Caco-2 cells decreasing the transepithelial electric resistance (TEER) and increasing Lucifer Yellow (LY) Papp (paracellular pathway marker). All the nanosystems improved FD4 Papp, with the exception of the nanoparticles based on TMC with the highest QD. In this case an entrapment of nanoparticles into Caco-2 cells was supposed. Analogous results were obtained using the excised rat jejunum model. The increase in QD of TMC was seen to favour the mucoadhesion, resulting in a prolonged residence time on intestinal mucosa. The nanoparticle penetration into excised rat jejunum tissue, observed by means of CLSM, suggested that the mucoadhesive properties delayed the absorption of nanoparticles, however they produced an increase in the contact time with intestinal epithelium, offering a better chance for internalisation. The improvement of mucoadhesion and of nanoparticle internalisation with respect to chitosan nanosystems makes the TMCs nanosystems suitable carriers for the intestinal absorption of peptides." @default.
- W2056547611 created "2016-06-24" @default.
- W2056547611 creator A5008935149 @default.
- W2056547611 creator A5023781229 @default.
- W2056547611 creator A5035322997 @default.
- W2056547611 creator A5035825723 @default.
- W2056547611 creator A5038221114 @default.
- W2056547611 creator A5053035943 @default.
- W2056547611 creator A5062278907 @default.
- W2056547611 creator A5064470065 @default.
- W2056547611 date "2007-01-01" @default.
- W2056547611 modified "2023-10-14" @default.
- W2056547611 title "Nanoparticles based on N-trimethylchitosan: Evaluation of absorption properties using in vitro (Caco-2 cells) and ex vivo (excised rat jejunum) models" @default.
- W2056547611 cites W1238203966 @default.
- W2056547611 cites W1485563738 @default.
- W2056547611 cites W1498725963 @default.
- W2056547611 cites W1506654534 @default.
- W2056547611 cites W1552145313 @default.
- W2056547611 cites W1574786557 @default.
- W2056547611 cites W1965872705 @default.
- W2056547611 cites W1973230016 @default.
- W2056547611 cites W1976418823 @default.
- W2056547611 cites W1992373115 @default.
- W2056547611 cites W1993211875 @default.
- W2056547611 cites W1999934318 @default.
- W2056547611 cites W2003026662 @default.
- W2056547611 cites W2006406939 @default.
- W2056547611 cites W2012076219 @default.
- W2056547611 cites W2013998409 @default.
- W2056547611 cites W2053944183 @default.
- W2056547611 cites W2061765162 @default.
- W2056547611 cites W2064454719 @default.
- W2056547611 cites W2069788772 @default.
- W2056547611 cites W2072051252 @default.
- W2056547611 cites W2072515072 @default.
- W2056547611 cites W2086757310 @default.
- W2056547611 cites W2090530492 @default.
- W2056547611 cites W2094788147 @default.
- W2056547611 cites W2106169256 @default.
- W2056547611 doi "https://doi.org/10.1016/j.ejpb.2006.07.016" @default.
- W2056547611 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/16962751" @default.
- W2056547611 hasPublicationYear "2007" @default.
- W2056547611 type Work @default.
- W2056547611 sameAs 2056547611 @default.
- W2056547611 citedByCount "127" @default.
- W2056547611 countsByYear W20565476112012 @default.
- W2056547611 countsByYear W20565476112013 @default.
- W2056547611 countsByYear W20565476112014 @default.
- W2056547611 countsByYear W20565476112015 @default.
- W2056547611 countsByYear W20565476112016 @default.
- W2056547611 countsByYear W20565476112017 @default.
- W2056547611 countsByYear W20565476112018 @default.
- W2056547611 countsByYear W20565476112019 @default.
- W2056547611 countsByYear W20565476112020 @default.
- W2056547611 countsByYear W20565476112021 @default.
- W2056547611 countsByYear W20565476112022 @default.
- W2056547611 countsByYear W20565476112023 @default.
- W2056547611 crossrefType "journal-article" @default.
- W2056547611 hasAuthorship W2056547611A5008935149 @default.
- W2056547611 hasAuthorship W2056547611A5023781229 @default.
- W2056547611 hasAuthorship W2056547611A5035322997 @default.
- W2056547611 hasAuthorship W2056547611A5035825723 @default.
- W2056547611 hasAuthorship W2056547611A5038221114 @default.
- W2056547611 hasAuthorship W2056547611A5053035943 @default.
- W2056547611 hasAuthorship W2056547611A5062278907 @default.
- W2056547611 hasAuthorship W2056547611A5064470065 @default.
- W2056547611 hasConcept C120882062 @default.
- W2056547611 hasConcept C125287762 @default.
- W2056547611 hasConcept C12554922 @default.
- W2056547611 hasConcept C126322002 @default.
- W2056547611 hasConcept C127413603 @default.
- W2056547611 hasConcept C13245373 @default.
- W2056547611 hasConcept C150903083 @default.
- W2056547611 hasConcept C155672457 @default.
- W2056547611 hasConcept C159985019 @default.
- W2056547611 hasConcept C171250308 @default.
- W2056547611 hasConcept C178790620 @default.
- W2056547611 hasConcept C185592680 @default.
- W2056547611 hasConcept C192562407 @default.
- W2056547611 hasConcept C193176779 @default.
- W2056547611 hasConcept C202751555 @default.
- W2056547611 hasConcept C207001950 @default.
- W2056547611 hasConcept C26291073 @default.
- W2056547611 hasConcept C2776366702 @default.
- W2056547611 hasConcept C2779732960 @default.
- W2056547611 hasConcept C2779820397 @default.
- W2056547611 hasConcept C2780020223 @default.
- W2056547611 hasConcept C3019368612 @default.
- W2056547611 hasConcept C41625074 @default.
- W2056547611 hasConcept C42475967 @default.
- W2056547611 hasConcept C55493867 @default.
- W2056547611 hasConcept C60903277 @default.
- W2056547611 hasConcept C71924100 @default.
- W2056547611 hasConcept C80107235 @default.
- W2056547611 hasConcept C86803240 @default.
- W2056547611 hasConceptScore W2056547611C120882062 @default.
- W2056547611 hasConceptScore W2056547611C125287762 @default.
- W2056547611 hasConceptScore W2056547611C12554922 @default.