Salta al contenuto principale
Ricerc@Sapienza
Toggle navigation
Home
Login
Home
Persone
patrizianadia.hanieh@uniroma1.it
Patrizia Nadia Hanieh
Assegnista di ricerca
Struttura:
DIPARTIMENTO DI CHIMICA E TECNOLOGIE DEL FARMACO
E-mail:
patrizianadia.hanieh@uniroma1.it
Pagina istituzionale corsi di laurea
Curriculum Sapienza
Pubblicazioni
Titolo
Pubblicato in
Anno
Drug delivery in overcoming the blood-brain barrier: role of nasal mucosal grafting
DRUG DESIGN, DEVELOPMENT AND THERAPY
2017
Neem oil nanoemulsions: characterisation and antioxidant activity
JOURNAL OF ENZYME INHIBITION AND MEDICINAL CHEMISTRY
2017
Some recent advances on liposomal and niosomal vesicular carriers
JOURNAL OF DRUG DELIVERY SCIENCE AND TECHNOLOGY
2016
CHITOSAN-COATED NON-IONIC SURFACTANT VESICLES: PREPARATION AND CHARACTERIZATION
2016
Bubblesomes: new tool in theranostics
2016
Mixed Chol/SPAN-Tween20 systems: the effect of chitosan on the thermodynamic properties
Nanomedicine Viterbo 2016
2016
New drug delivery systems: nanoemulsions and their potential applications
Nanomedicine Viterbo 2016
2016
Preparation and characterization of vesicular nanocarriers: different approaches to brain delivery
Nanomedicine Viterbo 2016
2016
Development of Novel Nanocarriers for Buccal Delivery
2016
LIPOSOMAL APPROACH TO PHARMACEUTICS
Mito A journey through liposomes and polysaccharides
2016
Ammonium glycyrrhizinate-loaded niosomes as potential nanotherapeutics for inflammation: a comparative study
Abstractbook
2015
pHLIP-coated niosomes as novel delivery systems for cancer therapy
2015
Nose to brain delivery: new trends in amphiphilic based "soft" nanocarriers”
CURRENT PHARMACEUTICAL DESIGN
2015
DLS Characterization of Non-Ionic Surfactant Vesicles for Potential Nose to Brain Application
NANOSCIENCE AND NANOMETROLOGY
2015
Vesicular nanocarriers: a versatile approach to nanomedicine
2015
« prima
< precedente
1
2
Progetti di Ricerca
Almond oil O/W nanoemulsions for ocular drug delivery: formulation, physico-chemical characterization and preliminary in vitro/in vivo studies
Brain delivery of a natural active compound: the NanoBubble approach
© Università degli Studi di Roma "La Sapienza" - Piazzale Aldo Moro 5, 00185 Roma