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SALVATORE EMANUELE DRAGO

Curriculum e ricerca

DRAGO SALVATORE EMANUELE

SALVATORE EMANUELE DRAGO

 (CHIM/09)

Scienze e Tecnologie Biologiche Chimiche e Farmaceutiche

Contatti

salvatoreemanuele.drago@unipa.it

Curriculum non disponibile

Pubblicazioni

Data Titolo Tipologia Scheda
2024 Polyamidoamine-Carbon Nanodot Conjugates with Bioreducible Building Blocks: Smart Theranostic Platforms for Targeted siRNA Delivery Articolo in rivista Vai
2023 Sustained-Release Powders Based on Polymer Particles for Pulmonary Delivery of Beclomethasone Dipropionate in the Treatment of Lung Inflammation Articolo in rivista Vai
2023 TAT decorated siRNA polyplexes for inhalation delivery in anti-asthma therapy Articolo in rivista Vai
2022 Inhalable polymeric microparticles as pharmaceutical porous powder for drug administration Articolo in rivista Vai
2022 Galactosylated Polymer/Gold Nanorods Nanocomposites for Sustained and Pulsed Chemo-Photothermal Treatments of Hepatocarcinoma Articolo in rivista Vai
2022 Development of a novel rapamycin loaded nano- into micro-formulation for treatment of lung inflammation Articolo in rivista Vai
2021 Targeted delivery of siRNAs against hepatocellular carcinoma-related genes by a galactosylated polyaspartamide copolymer Articolo in rivista Vai
2021 Development of polymer-based nanoparticles for zileuton delivery to the lung: PMeOx and PMeOzi surface chemistry reduces interactions with mucins Articolo in rivista Vai
2021 Hyaluronic acid dressing of Hydrophobic Carbon Nanodots: a Self-assembling Strategy of Hybrid Nanocomposites with Theranostic Potential Articolo in rivista Vai
2020 Carbon Nanodots as Functional Excipient to Develop Highly Stable and Smart PLGA Nanoparticles Useful in Cancer Theranostics Articolo in rivista Vai
2020 Design of New Polyaspartamide Copolymers for siRNA Delivery in Antiasthmatic Therapy Articolo in rivista Vai
2020 Production of polymeric micro- and nanostructures with tunable properties as pharmaceutical delivery systems Articolo in rivista Vai
2019 Near-Infrared, Light-Triggered, On-Demand Antiinflammatories and Antibiotics Release by Graphene Oxide/Elecrospun PCL Patch for Wound Healing Articolo in rivista Vai