Search results for "Carriers"

showing 10 items of 391 documents

E-beam crosslinked nanogels conjugated with monoclonal antibodies in targeting strategies

2017

Abstract Poly(N-vinyl pyrrolidone)-based-nanogels (NGs), produced by e-beam irradiation, are conjugated with monoclonal antibodies (mAb) for active targeting purposes. The uptake of immuno-functionalized nanogels is tested in an endothelial cell line, ECV304, using confocal and epifluorescence microscopy. Intracellular localization studies reveal a faster uptake of the immuno-nanogel conjugate with respect to the ‘bare’ nanogel. The specific internalization pathway of these immuno-nanogels is clarified by selective endocytosis inhibition experiments, flow cytometry and confocal microscopy. Active targeting ability is also verified by conjugating a monoclonal antibody which recognizes the αv…

0301 basic medicinemedicine.drug_classConfocalmedia_common.quotation_subjecthigh-energy irradiationClinical BiochemistryNG[object Object]02 engineering and technologyMonoclonal antibodyBiochemistryCell LineFlow cytometrylaw.invention03 medical and health sciencesConfocal microscopylawFluorescence microscopemedicineHumansInternalizationMolecular Biologymedia_commonradiation-engineeredDrug Carriersmedicine.diagnostic_testChemistrywound healing assay.antiβ3 integrin antibodyAntibodies MonoclonalPovidoneactive-targetingBiological Transport021001 nanoscience & nanotechnologyMolecular biologyNanostructures030104 developmental biologyTargeted drug deliverynanogelpoly(N-vinyl pyrrolidone)Biophysics0210 nano-technologyGelswound healing assayNanogelBiological Chemistry
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Expanding the Therapeutic Spectrum of Artemisinin: Activity Against Infectious Diseases Beyond Malaria and Novel Pharmaceutical Developments

2016

The interest of Western medicine in Traditional Chinese Medicine (TCM) as a source of drug leads/new drugs to treat diseases without available efficient therapies has been dramatically augmented in the last decades by the extensive work and the outstanding findings achieved within this kind of medicine. The practice of TCM over thousands of years has equipped scientists with substantial experience with hundreds of plants that led to the discovery of artemisinin (qinghaosu), which is extracted from the medicinal plant Artemisia annua L. (qinghao). The unexpected success of artemisinin in combating malaria has drawn strong attention from the scientific community towards TCM. Artemisinin was d…

0301 basic medicinemedicine.medical_treatmentArtemisia annuaDihydroartemisininArtemisia annuaAsteraceaePharmacology03 medical and health scienceschemistry.chemical_compoundArtemisinin-loaded nanocarriersparasitic diseasesmedicineTraditional Chinese MedicineArtemetherArtemisininlcsh:R5-920biologyChemistryArtemisinin Dimerbiology.organism_classificationAnti-pathogen activity030104 developmental biologyComplementary and alternative medicineDrug developmentArtesunateDrug deliveryArtemisinin derivativesAntimalarial drugslcsh:Medicine (General)Antiviral propertiesmedicine.drugWorld Journal of Traditional Chinese Medicine
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Could allergen-specific immunotherapy benefit from the use of nanocarriers?

2016

Allergen-specific immunotherapy: challenges The total number of people suffering from allergic diseases increased dramatically during recent decades. Allergic reactions of the immediate type (type I hypersensitivity reactions according to classification by Coombs and Gell) involve an overreaction of the immune system and the formation of IgE

0301 basic medicinemedicine.medical_treatmentBiomedical EngineeringMedicine (miscellaneous)BioengineeringDevelopmentImmunoglobulin E03 medical and health sciencesDrug Delivery Systems0302 clinical medicineImmune systemmedicineHumansGeneral Materials ScienceAntigen deliverybiologybusiness.industrySpecific immunotherapyImmunotherapyAllergensmedicine.diseaseNanomedicine030104 developmental biology030228 respiratory systemDesensitization ImmunologicImmunologybiology.proteinNanoparticlesNanocarriersbusinessType I hypersensitivityNanomedicine
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Recent advances in the use of nanoparticles for allergen-specific immunotherapy

2017

The number of patients suffering from allergic asthma and rhinoconjunctivitis has increased dramatically within the last decades. Allergen-specific immunotherapy (AIT) is the only available cause-oriented therapy so far. AIT reduces symptoms, but has also a disease-modifying effect. Disadvantages are a long-lasting procedure, and in a few cases potential systemic adverse reactions. Encapsulation of allergens or DNA vaccines into nanostructures may provide advantages compared to the conventional AIT with noncapsulated allergen extracts: The protein/DNA molecule can be protected from degradation, higher local concentrations and targeted delivery to the site of action appear possible, and most…

0301 basic medicinemedicine.medical_treatmentImmunologyBiocompatible Materials02 engineering and technologymedicine.disease_causeImmunoglobulin EDNA vaccination03 medical and health sciencesAllergenImmune systemHypersensitivitymedicineAnimalsHumansImmunology and AllergyDrug Carriersbiologybusiness.industryImmunotherapyAllergens021001 nanoscience & nanotechnologyNanomedicine030104 developmental biologyDesensitization ImmunologicLiposomesDrug deliveryImmunologybiology.proteinNanoparticlesNanomedicine0210 nano-technologybusinessDrug carrierAllergy
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Lipoproteins LDL versus HDL as nanocarriers to target either cancer cells or macrophages

2020

free open access article 31 p.; International audience; In this work, we have explored natural unmodified low- and high-density lipoproteins (LDL and HDL) as selective delivery vectors in colorectal cancer therapy. We show in vitro in cultured cells and in vivo (NanoSPECT/CT) in the CT-26 mice colorectal cancer model that LDLs are mainly taken up by cancer cells, while HDLs are preferentially taken up by macrophages. We loaded LDLs with cisplatin and HDLs with the heat shock protein-70 inhibitor AC1LINNC, turning them into a pair of “Trojan horses” delivering drugs selectively to their target cells as demonstrated in vitro in human colorectal cancer cells and macrophages, and in vivo. Coupl…

0301 basic medicinemedicine.medical_treatmentcisplatinlcsh:Medicineheat shock protein inhibitorCancer immunotherapy[CHIM.THER]Chemical Sciences/Medicinal ChemistrySpectrum Analysis RamanMiceDrug Delivery Systems0302 clinical medicineCancer immunotherapyChemistryRselective cell targetingGeneral Medicine3. Good healthLipoproteins LDLOncology030220 oncology & carcinogenesisMedicinecancer therapylipids (amino acids peptides and proteins)Colorectal NeoplasmsLipoproteins HDLResearch Articlemedicine.drug[CHIM.THER] Chemical Sciences/Medicinal ChemistryLipoproteinsTherapeuticsCell Line03 medical and health sciencesImmune systemIn vivoCell Line TumormedicinevectorizationAnimalsHumansCisplatinMacrophageslcsh:RCancermedicine.diseaseColorectal cancerIn vitro030104 developmental biologyCancer cellCancer researchNanocarriers[SDV.MHEP]Life Sciences [q-bio]/Human health and pathology
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Nanotechnology against COVID-19: Immunization, diagnostic and therapeutic studies.

2021

The emergence of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) in early 2020 soon led to the global pandemic of Coronavirus Disease 2019 (COVID-19). Since then, the clinical and scientific communities have been closely collaborating to develop effective strategies for controlling the ongoing pandemic. The game-changing fields of recent years, nanotechnology and nanomedicine have the potential to not only design new approaches, but also to improve existing methods for the fight against COVID-19. Nanomaterials can be used in the development of highly efficient, reusable personal protective equipment, and antiviral nano-coatings in public settings could prevent the spread of SAR…

2019-20 coronavirus outbreakCoronavirus disease 2019 (COVID-19)Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2)Pharmaceutical ScienceNanotechnology02 engineering and technologyReview Article03 medical and health sciencesPandemicDiagnosisMedicineHumansNanotechnologyPandemics030304 developmental biology0303 health sciencesbusiness.industrySARS-CoV-2COVID-19021001 nanoscience & nanotechnologyClinical trialNanovaccineImmunizationNanomedicineImmunizationNanocarriers0210 nano-technologybusinessJournal of controlled release : official journal of the Controlled Release Society
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Salmeterol Xinafoate (SX) loaded into mucoadhesive solid lipid microparticles for COPD treatment

2019

Chronic obstructive pulmonary disease (COPD) is one of the main health problems worldwide. It is characterised by chronic inflammation in the lungs that leads to progressive, chronic, largely irreversible airflow obstruction. The use of long-acting β agonists remain today the frontline treatment for COPD with the aim of minimizing side effects and enhancing therapeutic usefulness. To this purpose, in this paper, mucoadhesive solid lipid microparticles (SLMs) containing a long-acting β-2 agonist, Salmeterol Xinafoate (SX) were prepared, characterised (size, z-potential, aerodynamic diameter, turbidimetric evaluations, drug loading and entrapping efficiency) and tested in a model of bronchial…

3003AgonistDrugAlginatesCell Survivalmedicine.drug_classmedia_common.quotation_subjectSodium alginate polymerPharmaceutical ScienceChronic obstructive pulmonary disease (COPD)Inflammation02 engineering and technologyPharmacology030226 pharmacology & pharmacyCell LinePulmonary Disease Chronic Obstructive03 medical and health sciences0302 clinical medicinecAMPmedicineHumansAerodynamic diameterAdrenergic beta-2 Receptor AgonistsSalmeterol Xinafoatemedia_commonDrug CarriersCOPDInhalationChemistryTherapeutic effectAdhesiveness021001 nanoscience & nanotechnologymedicine.diseaseLipidsSALMETEROL XINAFOATEBronchodilator Agentsrespiratory tract diseasesSalmeterol Xinafoate (SX)MucusAerodynamic diametermedicine.symptom0210 nano-technologyInternational Journal of Pharmaceutics
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PHEA-PLA biocompatible nanoparticles by technique of solvent evaporation from multiple emulsions

2015

Nanocarriers of amphiphilic polymeric materials represent versatile delivery systems for poorly water soluble drugs. In this work the technique of solvent evaporation from multiple emulsions was applied to produce nanovectors based on new amphiphilic copolymer, the α,β-poly(N-2-hydroxyethyl)-DL-aspartamide-polylactic acid (PHEA-PLA), purposely synthesized to be used in the controlled release of active molecules poorly soluble in water. To this aim an amphiphilic derivative of PHEA, a hydrophilic polymer, was synthesized by derivatization of the polymeric backbone with hydrophobic grafts of polylactic acid (PLA). The achieved copolymer was thus used to produce nanoparticles loaded with α toc…

3003Biocompatible polymerPolymersChemistry PharmaceuticalDrug CompoundingPolyestersalpha-TocopherolPharmaceutical Sciencechemistry.chemical_compoundDrug Delivery SystemsNanoparticlePolylactic acidAmphiphileOrganic chemistryLactic AcidSolubilityDrug CarriersUltrasonic energyPHEA-PLAEmulsionAmphiphilic polymerControlled releaseSolventDrug LiberationSolubilitychemistryChemical engineeringDelayed-Action PreparationsDrug deliveryDrug deliverySolventsNanoparticlesEmulsionsNanocarriersPeptidesDrug carrierHydrophobic and Hydrophilic Interactions
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Buccal drug delivery: what's new and what does the future hold?

2014

The buccal mucosa is the stratified squamous epithelial tissue inside lining of the cheeks. It is a favorable site of drug absorption since the tissue is non-keratinized, relatively immobile and strongly supplied with blood by a dense capillary-vessel network; moreover, it is highly tolerant to allergens, resistant to potentially harmful agents and has a relatively low enzymatic activity. The tissue consents quick onset of effect, offers an easily accessible and generally well-accepted site for drug delivery, is a useful route of administration in patients in an unconscious state (e.g., when swallowing is impaired), and is suitable for retentive dosage forms of administration. Buccal mucosa…

3003Drugmedia_common.quotation_subjectChemistry PharmaceuticalPharmaceutical ScienceDentistryPharmacologyDosage formRoute of administrationDrug Delivery SystemsPharmacokineticsMucositisMedicineAnimalsHumansBuccal dosage formmedia_commonDosage FormsDrug Carriersbusiness.industryLocoregional/systemic treatmentMedicine (all)Mouth MucosaAdministration BuccalTransmucosal deliveryBuccal administrationmedicine.diseaseBioavailabilityPharmaceutical PreparationsSettore CHIM/09 - Farmaceutico Tecnologico ApplicativoDrug deliveryBuccal mucosaDiffusion of InnovationbusinessForecastingTherapeutic delivery
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COMBINATION OF ARGAN OIL AND PHOSPHOLIPIDS FOR THE DEVELOPMENT OF AN EFFECTIVE LIPOSOME-LIKE FORMULATION ABLE TO IMPROVE SKIN HYDRATION AND ALLANTOIN…

2016

Allantoin is traditionally employed in the treatment of skin ulcers and hypertrophic scars. In the present work, to improve its local deposition in the skin and deeper tissues, allantoin was incorporated in conventional liposomes and in new argan oil enriched liposomes. In both cases, obtained vesicles were unilamellar, as confirmed by cryo-TEM observation, but the addition of argan oil allowed a slight increase of the mean diameter (∼130nm versus ∼85nm). The formulations, especially those containing argan oil, favoured the allantoin accumulation in the skin, in particular in the dermis (∼8.7μg/cm(2)), and its permeation through the skin (∼33μg/cm(2)). The performances of vesicles as skin d…

3003Pig skinfood.ingredientSwineChemistry PharmaceuticalSkin AbsorptionPharmaceutical ScienceArgan oil02 engineering and technologyAdministration Cutaneous030207 dermatology & venereal diseases03 medical and health scienceschemistry.chemical_compoundDrug Delivery Systems0302 clinical medicineAllantoinfoodDermisElastic ModulusSkin rheologymedicineAnimalsPlant OilsAllantoinSofteningPhospholipidsSkinDrug CarriersLiposomeChromatographyintegumentary systemChemistryVesicleLiposomes; Argan oil; Phospholipids; Pig skin; Turbiscan lab; Skin rheology; Skin hydrationPermeation021001 nanoscience & nanotechnologyTurbiscan labmedicine.anatomical_structureSkin hydrationArgan oilLiposomesDermatologic Agents0210 nano-technologyDrug carrierargan oil; liposomes; phospholipids; pig skin; skin hydration; skin rheology; turbiscan lab; 3003
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