Your browser doesn't support javascript.
loading
Montrer: 20 | 50 | 100
Résultats 1 - 4 de 4
Filtrer
Plus de filtres










Base de données
Gamme d'année
1.
Drug Deliv Transl Res ; 10(3): 621-634, 2020 06.
Article de Anglais | MEDLINE | ID: mdl-32040775

RÉSUMÉ

Despite a very active research in the field of nanomedicine, only a few nano-based drug delivery systems have reached the market. The "death valley" between research and commercialization has been partially attributed to the limited characterization and reproducibility of the nanoformulations. Our group has previously reported the potential of a peptide-based nanovaccine candidate for the prevention of SIV infection in macaques. This vaccine candidate is composed of chitosan/dextran sulfate nanoparticles containing twelve SIV peptide antigens. The aim of this work was to rigorously characterize one of these nanoformulations containing a specific peptide, following a quality-by-design approach. The evaluation of the different quality attributes was performed by several complementary techniques, such as dynamic light scattering, nanoparticle tracking analysis, and electron microscopy for particle size characterization. The inter-batch reproducibility was validated by three independent laboratories. Finally, the long-term stability and scalability of the manufacturing technique were assessed. Overall, these data, together with the in vivo efficacy results obtained in macaques, underline the promise this new vaccine holds with regard to its translation to clinical trials. Graphical abstract.


Sujet(s)
Vaccins contre le SIDA/synthèse chimique , Antigènes viraux/composition chimique , Peptides/synthèse chimique , Virus de l'immunodéficience simienne/immunologie , Vaccins contre le SIDA/composition chimique , Animaux , Chitosane , Sulfate dextran , Préparation de médicament , Diffusion dynamique de la lumière , Lyophilisation , Microscopie électronique , Taille de particule , Peptides/composition chimique
2.
Int J Pharm ; 571: 118699, 2019 Nov 25.
Article de Anglais | MEDLINE | ID: mdl-31536764

RÉSUMÉ

The oral delivery of docetaxel (DTX) is challenging due to a low bioavailability, related to an important pre-systemic metabolism. With the aim of improving the bioavailability of this cytotoxic agent, nanoparticles from conjugates based on the copolymer of methyl vinyl ether and maleic anhydride (poly(anhydride)) and two different types of PEG, PEG2000 (PEG2) or methoxyPEG2000 (mPEG2), were evaluated. Nanoparticles, with a DTX loading close to 10%, were prepared by desolvation and stabilized with calcium, before purification and lyophilization. For the pharmacokinetic study, nanoparticles were orally administered to mice at a single dose of 30 mg/kg. The plasma levels of DTX were high, prolonged in time and, importantly, quantified within the therapeutic window. The relative oral bioavailability was calculated to be up to 56% when DTX was loaded in nanoparticles from poly(anhydride)-mPEG2000 conjugate (DTX-NP-mPEG2). Finally, a comparative toxicity study between equitoxic doses of free iv DTX and oral DTX-NP-mPEG2 was conducted in mice. Animals orally treated with DTX-loaded nanoparticles displayed less severe signs of hypersensitivity reactions, peripheral neurotoxicity, myelosuppression and hepatotoxicity than free iv docetaxel. In summary, poly(anhydride)-PEG conjugate nanoparticles appears to be adequate carries for the oral delivery of docetaxel.


Sujet(s)
Antinéoplasiques/administration et posologie , Docetaxel/administration et posologie , Vecteurs de médicaments/composition chimique , Nanoconjugués/composition chimique , Administration par voie intraveineuse , Administration par voie orale , Animaux , Antinéoplasiques/pharmacocinétique , Antinéoplasiques/toxicité , Biodisponibilité , Docetaxel/pharmacocinétique , Docetaxel/toxicité , Relation dose-effet des médicaments , Femelle , Maléates/composition chimique , Souris , Modèles animaux , Polyéthylène glycols/composition chimique , Polyvinyles/composition chimique , Tests de toxicité
3.
Eur J Pharm Sci ; 118: 165-175, 2018 Jun 15.
Article de Anglais | MEDLINE | ID: mdl-29597043

RÉSUMÉ

The aim of this work was to investigate the potential of pegylated poly(anhydride) nanoparticles to enhance the oral bioavailability of docetaxel (DTX). Nanoparticles were prepared after the incubation between the copolymer of methyl vinyl ether and maleic anhydride (Gantrez® AN), poly(ethylene glycol) (PEG2000 or PEG6000) and docetaxel (DTX). The oral administration of a single dose of pegylated nanoparticles to mice provided sustained and prolonged therapeutic plasma levels of docetaxel for up 48-72 h. In addition, the relative oral bioavailability of docetaxel was around 32%. The organ distribution studies revealed that docetaxel underwent a similar distribution when orally administered encapsulated in nanoparticles as when intravenously as Taxotere®. This observation, with the fact that the clearance of docetaxel when loaded into the oral pegylated nanoparticles was found to be similar to that of intravenous formulation, suggests that docetaxel would be released at the epithelium surface and then absorbed to the circulation.


Sujet(s)
Antinéoplasiques/administration et posologie , Vecteurs de médicaments/administration et posologie , Nanoparticules/administration et posologie , Polyanhydrides/administration et posologie , Polyéthylène glycols/administration et posologie , Taxoïdes/administration et posologie , Administration par voie orale , Animaux , Antinéoplasiques/sang , Antinéoplasiques/composition chimique , Antinéoplasiques/pharmacocinétique , Biodisponibilité , Préparations à action retardée/administration et posologie , Préparations à action retardée/composition chimique , Préparations à action retardée/pharmacocinétique , Docetaxel , Vecteurs de médicaments/composition chimique , Vecteurs de médicaments/pharmacocinétique , Libération de médicament , Femelle , Souris de lignée BALB C , Nanoparticules/composition chimique , Polyanhydrides/composition chimique , Polyanhydrides/pharmacocinétique , Polyéthylène glycols/composition chimique , Polyéthylène glycols/pharmacocinétique , Taxoïdes/sang , Taxoïdes/composition chimique , Taxoïdes/pharmacocinétique , Distribution tissulaire
4.
Ther Deliv ; 3(1): 43-57, 2012 Jan.
Article de Anglais | MEDLINE | ID: mdl-22833932

RÉSUMÉ

The oral route is preferred by patients for drug administration due to its convenience, resulting in improved compliance. Unfortunately, for a number of drugs (e.g., anticancer drugs), this route of administration remains a challenge. Oral chemotherapy may be an attractive option and especially appropriate for chronic treatment of cancer. However, this route of administration is particularly complicated for the administration of anticancer drugs ascribed to Class IV of the Biopharmaceutical Classification System. This group of compounds is characterized by low aqueous solubility and low intestinal permeability. This review focuses on the use of cyclodextrins alone or in combination with bioadhesive nanoparticles for oral delivery of drugs. The state-of-the-art technology and challenges in this area is also discussed.


Sujet(s)
Antinéoplasiques/administration et posologie , Cyclodextrines/administration et posologie , Tumeurs/traitement médicamenteux , Administration par voie orale , Humains , Nanoparticules , Polymères/administration et posologie , Solubilité
SÉLECTION CITATIONS
DÉTAIL DE RECHERCHE