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599 results on '"Ciardelli, Gianluca"'

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551. Small molecules targeting endocytic uptake and recycling pathways.

552. Design of Injectable Bioartificial Hydrogels by Green Chemistry for Mini-Invasive Applications in the Biomedical or Aesthetic Medicine Fields.

553. PDAC-on-chip for in vitro modeling of stromal and pancreatic cancer cell crosstalk.

554. Use of Polyesters in Fused Deposition Modeling for Biomedical Applications.

555. Development of an Innovative Soft Piezoresistive Biomaterial Based on the Interconnection of Elastomeric PDMS Networks and Electrically-Conductive PEDOT:PSS Sponges.

556. Custom-Made Poly(urethane) Coatings Improve the Mechanical Properties of Bioactive Glass Scaffolds Designed for Bone Tissue Engineering.

558. In situ Forming Hyperbranched PEG-Thiolated Hyaluronic Acid Hydrogels With Honey-Mimetic Antibacterial Properties.

559. Mussel-inspired antimicrobial coating on PTFE barrier membranes for guided tissue regeneration.

560. Dual stimuli-responsive polyurethane-based hydrogels as smart drug delivery carriers for the advanced treatment of chronic skin wounds.

561. Biocompatible Electrospun Polycaprolactone-Polyaniline Scaffold Treated with Atmospheric Plasma to Improve Hydrophilicity.

562. In-vitro Characterization of a Hernia Mesh Featuring a Nanostructured Coating.

563. Intratumoral injection of hydrogel-embedded nanoparticles enhances retention in glioblastoma.

564. Supramolecular hydrogels based on custom-made poly(ether urethane)s and cyclodextrins as potential drug delivery vehicles: design and characterization.

565. Hybrid Injectable Sol-Gel Systems Based on Thermo-Sensitive Polyurethane Hydrogels Carrying pH-Sensitive Mesoporous Silica Nanoparticles for the Controlled and Triggered Release of Therapeutic Agents.

566. Reviewing recently developed technologies to direct cell activity through the control of pore size: From the macro- to the nanoscale.

567. Response of Human Macrophages to Clinically Applied Wound Dressings Loaded With Silver.

568. Nanomedicine for Imaging and Therapy of Pancreatic Adenocarcinoma.

569. Validation of in vitro assays in three-dimensional human dermal constructs.

570. Quartz Crystal Microbalance With Dissipation Monitoring: A Powerful Method to Predict the in vivo Behavior of Bioengineered Surfaces.

571. Combined Influence of Gelatin Fibre Topography and Growth Factors on Cultured Dorsal Root Ganglia Neurons.

572. Biomimetic engineering of the cardiac tissue through processing, functionalization, and biological characterization of polyester urethanes.

573. Non-covalently crosslinked chitosan nanofibrous mats prepared by electrospinning as substrates for soft tissue regeneration.

574. Gelatin/nanoceria nanocomposite fibers as antioxidant scaffolds for neuronal regeneration.

575. Impact of Collagen/Heparin Multilayers for Regulating Bone Cellular Functions.

576. Localised controlled release of simvastatin from porous chitosan-gelatin scaffolds engrafted with simvastatin loaded PLGA-microparticles for bone tissue engineering application.

577. PolyDOPA Mussel-Inspired Coating as a Means for Hydroxyapatite Entrapment on Polytetrafluoroethylene Surface for Application in Periodontal Diseases.

578. Influence of Parathyroid Hormone-Loaded PLGA Nanoparticles in Porous Scaffolds for Bone Regeneration.

579. The Effect of Electrospun Gelatin Fibers Alignment on Schwann Cell and Axon Behavior and Organization in the Perspective of Artificial Nerve Design.

580. A mechanical characterization of polymer scaffolds and films at the macroscale and nanoscale.

581. Bioinspired porous membranes containing polymer nanoparticles for wound healing.

582. Biomimetic myocardial patches fabricated with poly(ɛ-caprolactone) and polyethylene glycol-based polyurethanes.

583. Polyurethane-based scaffolds for myocardial tissue engineering.

584. Image-based three-dimensional analysis to characterize the texture of porous scaffolds.

585. Silk fibroin/gelatin blend films crosslinked with enzymes for biomedical applications.

586. Biomimetic materials and scaffolds for myocardial tissue regeneration.

587. Biodegradable paclitaxel-loaded microparticles prepared from novel block copolymers: influence of polymer composition on drug encapsulation and release.

588. Enhancement of fatty acid-based polyurethanes cytocompatibility by non-covalent anchoring of chondroitin sulfate.

589. Biomimetic soluble collagen purified from bones.

590. Bioactive glass/polymer composite scaffolds mimicking bone tissue.

591. Collagen for bone tissue regeneration.

592. Incorporation of PLGA nanoparticles into porous chitosan-gelatin scaffolds: influence on the physical properties and cell behavior.

593. Polymeric membranes for guided bone regeneration.

594. Poly(ester urethane) guides for peripheral nerve regeneration.

595. Biomimetic materials for medical application through enzymatic modification.

596. Chitosan/gelatin blends for biomedical applications.

597. Poly(3-hydroxybutyrate-co-3-hydroxyvalerate)/poly(epsilon-caprolactone) blends for tissue engineering applications in the form of hollow fibers.

598. Blends of poly-(epsilon-caprolactone) and polysaccharides in tissue engineering applications.

599. Photocatalytic degradation of actual textile industrial wastewater in aqueous suspensions of polycrystalline TiO2.

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