Search results for "DELIVERY"

showing 10 items of 1271 documents

Unraveling the interaction between doxorubicin and DNA origami nanostructures for customizable chemotherapeutic drug release

2020

Doxorubicin (DOX) is a commonly employed drug in cancer chemotherapy, and its high DNA-binding affinity can be harnessed in preparing programmable DOX-loaded DNA nanostructures that can be further tailored for targeted delivery and therapeutics. Although DOX has been widely studied, the existing literature of promising DOX-loaded DNA nanocarriers remains limited and incoherent. A number of reports have over-looked the fundamentals of the DOX-DNA interaction, let alone the peculiarities arising from the complexity of the system as a whole. Here, based on an in-depth spectroscopic analysis, we characterize and optimize the DOX loading into different 2D and 3D scaffolded DNA origami nanostruct…

NanostructureCancer chemotherapytechnology industry and agriculturemacromolecular substancescarbohydrates (lipids)chemistry.chemical_compoundchemistryDrug deliverypolycyclic compoundsmedicineBiophysicsDNA origamiDoxorubicinChemotherapeutic drugsNanocarriersDNAmedicine.drug
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Nanostructured medical sutures with antibacterial properties

2014

Bacterial repellence in suture materials is a desirable property that can potentially improve the healing process by preventing infection. We describe a method for generating nanostructures at the surface of commercial sutures of different composition, and their potential for preventing biofilm formation. We show how bacteria attachment is altered in the presence of nanosized topographies and identify optimum designs for preventing it without compromising biocompatibility and applicability in terms of nanostructure robustness or tissue friction. These studies open new possibilities for flexible and cost-effective realization of topography-based antibacterial coatings for absorbable biomedic…

NanostructureMaterials scienceBiocompatibilityPolymersSurface PropertiesCost-Benefit AnalysisBiophysicsBiocompatible MaterialsBioengineeringPlasma treatmentNanotechnologyBacterial AdhesionBiomaterialsBiofoulingMiceDrug Delivery SystemsEscherichia coliAnimalsSuturesAnti-Bacterial AgentsNanostructuresOxygenMechanics of MaterialsBiofilmsMicroscopy Electron ScanningCeramics and CompositesFemaleStress MechanicalChickensBiomedical engineeringBiomaterials
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Lipid nanocarriers containing esters prodrugs of Flurbiprofen. Preparation, physical-chemical characterization and biological studies.

2013

In this paper, the preparation, chemical-physical, technological and in vitro characterization of nanostructured lipid carriers (NLC) carrying R-flurbiprofen ester prodrugs, were analyzed for a potential pharmaceutical application. R-flurbiprofen was chosen as a model drug because it has been found to play an effective role in counteracting secretases involved in neurodegenerative diseases, although it does not cross the Blood Brain Barrier (BBB). In this study, two R-flurbiprofen ester prodrugs (ethyl and hexyl) were successfully synthesized and entrapped into non-pegylated and pegylated NLC. The obtained systems showed average diameters in the colloidal size range, negative zeta potential…

Nanostructured Lipid CarriersMaterials scienceMagnetic Resonance SpectroscopyR-Flurbiprofen Ester ProdrugCell SurvivalFlurbiprofenStatic ElectricityBiomedical EngineeringPharmaceutical ScienceMedicine (miscellaneous)BioengineeringEsteraseBrain TargetingCell Line TumormedicineZeta potentialHumansGeneral Materials ScienceProdrugsViability assayParticle SizeCytotoxicityCell ShapeDrug CarriersNanostructured Lipid CarrierChromatographyDose-Response Relationship DrugEstersProdrugR-Flurbiprofen Ester ProdrugsLipidsIn vitroNanostructuresCitotoxicity Assays.BiochemistryFlurbiprofenSettore CHIM/09 - Farmaceutico Tecnologico ApplicativoDrug deliveryCitotoxicity AssaysDrug Deliverymedicine.drug
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Nanohydrogel Formation within the Halloysite Lumen for Triggered and Sustained Release

2018

An easy strategy to obtain nanohydrogels within the halloysite nanotube (HNTs) lumen was investigated. Inorganic reverse micelles based on HNTs and hexadecyltrimethylammonium bromides were dispersed in chloroform, and the hydrophilic cavity was used as a nanoreactor to confine the gel formation based on alginate cross-linked by calcium ions. Spectroscopy and electron microscopy experiments proved the confinement of the polymer into the HNT lumen and the formation of calcium-mediated networks. Biological tests proved the biocompatibility of the hybrid hydrogel. The nanogel in HNTs was suitable for drug loading and sustained release with the opportunity of triggered burst release by chemical …

NanotubeMaterials scienceBiocompatibilityChlorine compound02 engineering and technologyNanoreactorHexadecyl trimethyl ammonium bromideengineering.materialHybrid hydrogel010402 general chemistry01 natural sciencesMicelleHalloysiteSustained release Drug deliveryAdsorptionKaoliniteHalloysite nanotube (HNTs)Chemical stimuliGeneral Materials ScienceControlled drug deliveryBiological testSettore CHIM/02 - Chimica Fisicachemistry.chemical_classificationTargeted drug deliveryCrosslinkingReverse micellePolymer021001 nanoscience & nanotechnology0104 chemical sciencesChemical engineeringchemistryYarn Biological applicationengineeringBiocompatibilityCalcium0210 nano-technologyMicelleNanogelACS Applied Materials & Interfaces
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Chemical modification of halloysite nanotubes for controlled loading and release.

2020

Clay minerals have been used for medical purposes from ancient times. Among them, the halloysite nanotube, an aluminosilicate of the kaolin group, is an emerging nanomaterial which possesses peculiar chemical characteristics. By means of suitable modifications, such as supramolecular functionalization or covalent modifications, it is possible to obtain novel nanomaterials with tunable properties for several applications. In this context the covalent grafting of suitable organic moieties on the external surface or in the halloysite lumen has been exploited to improve the loading and release of several biologically active molecules. The resulting hybrid nanomaterials have been applied as drug…

NanotubeMaterials scienceTunable properties Controlled drug deliveryHalloysite nanotubeBiomedical EngineeringSupramolecular chemistryNanotechnology02 engineering and technologyengineering.materialChemical characteristic010402 general chemistryYarn Biologically active molecule01 natural sciencesHalloysiteNanomaterialsAluminosilicateKaoliniteGeneral Materials ScienceFunctionalizationGene transferSettore CHIM/02 - Chimica FisicaTargeted drug deliveryCovalent modificationMoleculeGeneral ChemistryGeneral MedicineSettore CHIM/06 - Chimica Organica021001 nanoscience & nanotechnology0104 chemical sciencesNanostructured materialNanotubeSelf-healing hydrogelsengineeringTissue regenerationSurface modificationClay0210 nano-technologyDrug carrierHybrid nanomaterialChemical modificationCovalent graftingJournal of materials chemistry. B
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Printable Hydrogels Based on Alginate and Halloysite Nanotubes.

2022

The design of hydrogels for the controlled release of active species is an attractive challenge. In this work, we prepared hybrid hydrogels composed of halloysite nanotubes as the inorganic component, and alginate as the organic counterpart. The reported procedure allowed us to provide the resulting materials with a peculiar wire-like shape. Both optical and scanning electron microscopy were used to characterize the morphological properties of the hydrogel wires, whose diameters were ca. 0.19 and 0.47 mm, respectively. The possibility to be exploited as drug delivery systems was carried out by loading the nanoclay with salicylic acid and by studying the release profiles. Thermogravimetric e…

NanotubesAlginatesAlginateOrganic ChemistryHydrogelsGeneral MedicineCatalysisComputer Science ApplicationsInorganic ChemistryHydrogelHalloysite NanotubeClayPhysical and Theoretical ChemistryDrug DeliverySalicylic AcidMolecular BiologySpectroscopySettore CHIM/02 - Chimica FisicaInternational journal of molecular sciences
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Drug delivery devices based on mesoporous silicate.

2004

A mesoporous material based on aluminosilicate mixture was studied to investigate its ability to include drugs and then release them. Nonsteroidal anti-inflammatory agents such as diflunisal, naproxen, ibuprofen and its sodium salt have been used in this study. The preparation of the mesoporous material and its characterization by X-ray, N2 absorption-desorption isotherm, and thermogravimetry analysis have been described. Drug loading was performed by a soaking procedure. Drug-loaded matrices were characterized for entrapped drug amount, water absorption ability, and thermogravimetric behavior. Drug release studies also were performed at pH 1.1 and 6.8 mimicking gastrointestinal fluids. Exp…

NaproxenAbsorption of waterMaterials scienceNitrogenPharmaceutical ScienceDiflunisalIbuprofenmesoporous materialsDrug Delivery SystemsNaproxenDrug StabilityMaterials TestingmedicineOrganosilicon CompoundsChromatographyX-RaysWaterGeneral MedicineIbuprofenDiflunisalThermogravimetryChemical engineeringSolubilityDrug deliveryThermogravimetryAluminum SilicatesAdsorptionMesoporous materialPorositymedicine.drugMesoporous silicateAluminumDrug delivery
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Naringenin Nano-Delivery Systems and Their Therapeutic Applications

2021

Naringenin (NRG) is a polyphenolic phytochemical belonging to the class of flavanones and is widely distributed in citrus fruits and some other fruits such as bergamot, tomatoes, cocoa, and cherries. NRG presents several interesting pharmacological properties, such as anti-cancer, anti-oxidant, and anti-inflammatory activities. However, the therapeutic potential of NRG is hampered due to its hydrophobic nature, which leads to poor bioavailability. Here, we review a wide range of nanocarriers that have been used as delivery systems for NRG, including polymeric nanoparticles, micelles, liposomes, solid lipid nanoparticles (SLNs), nanostructured lipid carriers (NLCs), nanosuspensions, and nano…

Naringeninnatural productsnaringeninlcsh:RS1-441Pharmaceutical ScienceReview02 engineering and technologyPharmacologylcsh:Pharmacy and materia medica03 medical and health scienceschemistry.chemical_compound0302 clinical medicineNutraceuticalSolid lipid nanoparticleflavonoidnutraceuticalsLiposomeChemistryfood and beverages021001 nanoscience & nanotechnologynanomedicineBioavailabilityantioxidants030220 oncology & carcinogenesisdrug deliveryDrug deliveryNanomedicinenanoparticlesNanocarriersbioavailability0210 nano-technologyPharmaceutics
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Xenotransplantation of parathyroids in rats using barium-alginate and polyacrylic acid multilayer microcapsules

2001

The integrity and function of encapsulated parathyroid tissue following xenotransplantation is limited by oxygen and nutrition supply and capsule fibrosis. Since some of these factors depend on stability and biocompatibility of the coating material, multilayer microcapsules have been developed. Parathyroid tissue pieces and digested single cells from pigs were encapsulated in barium-alginate and in polyacrylic acid (PAA) multilayer capsules. After 7 days of culture the function of the encapsulated cells were assessed. Subsequently, in a part of the cultured microcapsules the viability was directly assessed whereas the other part was transplanted in dark animal [DA] rats for 30 days. After e…

NecrosisBiocompatibilityAlginatesCell SurvivalSwineBarium CompoundsTransplantation HeterologousAcrylic ResinsConnective tissueParathyroid hormoneToxicologyPathology and Forensic MedicineParathyroid Glandschemistry.chemical_compoundDrug Delivery SystemsCoated Materials BiocompatibleGlucuronic AcidIn vivoFibrosismedicineAnimalsCells CulturedChemistryHexuronic AcidsGraft SurvivalCapsuleCell BiologyGeneral MedicineAnatomymedicine.diseaseGlucuronic acidMolecular biologyRatsmedicine.anatomical_structureParathyroid Hormonemedicine.symptomExperimental and Toxicologic Pathology
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Galactosylated polymeric carriers for liver targeting of sorafenib

2014

In this paper, we describe the preparation of liver-targeted polymeric micelles potentially able to carry sorafenib to hepatocytes for treatment of hepatocarcinoma (HCC), exploiting the presence of carbohydrate receptors, ASGPR. These micelles were prepared starting from a galactosylated polylactide-polyaminoacid conjugate. This latter was obtained by chemical reaction of α,β-poly(N-2-hydroxyethyl) (2-aminoethylcarbamate)-d,l-aspartamide (PHEA-EDA) with polylactic acid (PLA), and subsequent reaction with lactose, leading to PHEA-EDA-PLA-GAL copolymer. Liver-targeted sorafenib-loaded micelles were obtained in aqueous media at low PHEA-EDA-PLA-GAL copolymer concentration value with nanometer …

NiacinamideSorafenibBiodistributionPolyestersBiological AvailabilityPharmaceutical ScienceAntineoplastic AgentsPharmacologyKidneyMicellechemistry.chemical_compoundPolylactic acidHepatic cell-targeted carriersmedicineZeta potentialAnimalsLungneoplasmsMicellesDrug CarriersActive targetingPhenylurea CompoundsHepatic cell-targeted carrierGalactoseActive targeting; Galactosylation; Hepatic cell-targeted carriers; Polymeric micellesSorafenibEthylenediaminesdigestive system diseasesMice Inbred C57BLLiverBiochemistrychemistrySettore CHIM/09 - Farmaceutico Tecnologico ApplicativoGalactosylationDrug deliveryPolymeric micellesFemalePeptidesDrug carrierSpleenmedicine.drugConjugateInternational Journal of Pharmaceutics
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