Search results for "Targeted drug delivery"

showing 10 items of 56 documents

Macromolecular Prodrugs Based on Synthetic Polyaminoacids: Drug Delivery and Drug Targeting in Antitumor Therapy

2011

In the last twenty years a depth study on potential pharmaceutical applications of synthetic polymers at proteinlike structure as carrier for macromolecular prodrug production has been performed in academia and in industry. In particular α,β-poly(N-2-hydroxyethyl)-DL-aspartamide (PHEA), α,β-polyaspartylhydrazide (PAHy), poly(glutamic acid) (PGA), poly(aspartic acid) (PAA) and polylysine (PLL) have been extensively studied in this field. In the present review, the use of PHEA, PAHy, PGA as starting materials to prepare macromolecular prodrugs is reported and drug delivery and targeting aspects have been considered.

Macromolecular prodrugsStereochemistryMacromolecular SubstancesAntineoplastic AgentsGeneral MedicineGlutamic acidCombinatorial chemistryAntitumor therapyαβ-poly(N-2-hydroxyethyl)-DL-aspartamideαβ-polyaspartylhydrazide poly(glutamic acid) carrierchemistry.chemical_compoundanticancer drugsDrug Delivery SystemschemistryTargeted drug deliverySettore CHIM/09 - Farmaceutico Tecnologico ApplicativoPolylysineDrug DiscoveryAspartic acidDrug deliveryAnimalsHumansProdrugsAmino Acids
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Polymeric Nanocarriers for Magnetic Targeted Drug Delivery: Preparation, Characterization, and in Vitro and in Vivo Evaluation

2013

In this paper the preparation of magnetic nano- carriers (MNCs), containing superparamagnetic domains, is reported, useful as potential magnetically targeted drug delivery systems. The preparation of MNCs was performed by using the PHEA-IB-p(BMA) graft copolymer as coating material through the homogenization−solvent evaporation method. Magnetic and nonmagnetic nanocarriers containing flutamide (FLU-MNCs) were prepared. The prepared nanocarriers have been exhaustively characterized by dynamic light scattering (DLS), transmission electron microscopy (TEM), and magnetic measurements. Biological evaluation was performed by in vitro cytotoxicity and cell uptake tests and in vivo biodistribution …

MaleMaterials sciencePharmaceutical ScienceAntineoplastic AgentsNanotechnologyMagneticsDrug Delivery SystemsDynamic light scatteringIn vivoCell Line TumorDrug DiscoveryLNCaPAnimalsHumansDistribution (pharmacology)Tissue DistributionParticle SizeRats WistarMagnetite NanoparticlesDrug Carriersequipment and suppliesmagnetic nanocarrier magnetic targeting flutamide superparamagnetic nanoparticlesFlutamideIn vitroRatsTargeted drug deliverySettore CHIM/09 - Farmaceutico Tecnologico ApplicativoBiophysicsMolecular MedicineNanocarriersPeptideshuman activitiesSuperparamagnetismMolecular Pharmaceutics
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Comparison of Active and Passive Targeting of Docetaxel for Prostate Cancer Therapy by HPMA Copolymer–RGDfK Conjugates

2011

N-(2-Hydroxypropyl)methacrylamide (HPMA) copolymer-docetaxel-RGDfK conjugate was synthesized, characterized, and evaluated in vitro and in vivo in comparison with untargeted low and high molecular weight HPMA copolymer-docetaxel conjugates. The targeted conjugate was designed to have a hydrodynamic diameter below renal threshold to allow elimination post treatment. All conjugates demonstrated the ability to inhibit the growth of DU145 and PC3 human prostate cancer cells and the HUVEC at low nanomolar concentrations. The targeted conjugate showed active binding to α(v)β(3) integrins in both HUVEC and DU145 cells, whereas the untargeted conjugate demonstrated no evidence of specific binding. …

MalePolymersMice NudePharmaceutical ScienceAntineoplastic AgentsDocetaxelPharmacologyurologic and male genital diseasesArticleMicechemistry.chemical_compoundProstate cancerstomatognathic systemIn vivoCell Line TumorDrug DiscoveryCopolymermedicineAnimalsMethacrylamideCell ProliferationAcrylamidesChemistryProstatic Neoplasmsmedicine.diseaseIn vitroDocetaxelTargeted drug deliveryMolecular MedicineTaxoidsmedicine.drugConjugateMolecular Pharmaceutics
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Folic acid-functionalized graphene oxide nanosheets via plasma etching as a platform to combine NIR anticancer phototherapy and targeted drug deliver…

2020

PEGylated graphene oxide (GO) has shown potential as NIR converting agent to produce local heat useful in breast cancer therapy, since its suitable photothermal conversion, high stability in physiological fluids, biocompatibility and huge specific surface. GO is an appealing nanomaterial for potential clinical applications combining drug delivery and photothermal therapy in a single nano-device capable of specifically targeting breast cancer cells. However, native GO sheets have large dimensions (0.5-5 mu m) such that tumor accumulation after a systemic administration is usually precluded. Herein, we report a step-by-step synthesis of folic acid-functionalized PEGylated GO, henceforth named…

Materials scienceBiocompatibilityPlasma GasesCell SurvivalInfrared RaysBioengineeringNanotechnologyAntineoplastic Agents02 engineering and technology010402 general chemistrySettore CHIM/04 - Chimica Industriale01 natural sciencesNANOMEDICINECell LinePolyethylene GlycolsBiomaterialsBreast cancerBreast cancerFolic AcidCell MovementmedicineNANOPARTICLESABLATIONHumansDoxorubicinCANCER-CELLSAGENTSGraphene oxideDrug Carrierstechnology industry and agriculturePhotothermal therapyPhototherapy021001 nanoscience & nanotechnologymedicine.disease0104 chemical sciencesNanostructuresDrug LiberationTargeted drug deliverySettore CHIM/09 - Farmaceutico Tecnologico ApplicativoMechanics of MaterialsDoxorubicinCancer cellDrug deliveryDoxorubicin HydrochlorideGraphiteSettore CHIM/07 - Fondamenti Chimici Delle Tecnologie0210 nano-technologySYSTEMmedicine.drugMaterials scienceengineering. C, Materials for biological applications
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Ionizing radiation-engineered nanogels as insulin nanocarriers for the development of a new strategy for the treatment of Alzheimer's disease

2016

A growing body of evidence shows the protective role of insulin in Alzheimer's disease (AD). A nanogel system (NG) to deliver insulin to the brain, as a tool for the development of a new therapy for Alzheimer's Disease (AD), is designed and synthetized. A carboxyl-functionalized poly(N-vinyl pyrrolidone) nanogel system produced by ionizing radiation is chosen as substrate for the covalent attachment of insulin or fluorescent molecules relevant for its characterization. Biocompatibility and hemocompatibility of the naked carrier is demonstrated. The insulin conjugated to the NG (NG-In) is protected by protease degradation and able to bind to insulin receptor (IR), as demonstrated by immunofl…

Materials scienceIonizing radiation processingmedicine.medical_treatmentBiophysicsBioengineering02 engineering and technologyBlood–brain barrierNeuroprotectionBiomaterialsInsulin nanocarrier03 medical and health sciencesNanogel0302 clinical medicineDrug Delivery SystemsAlzheimer DiseaseCell Line TumorRadiation Ionizingmedicinenanogels; ionizing radiation processing; insulin nanocarriers; Alzheimer's Disease; targeted drug deliveryAnimalsHumansInsulinNanotechnologyProtein kinase BDrug CarriersTargeted drug deliverybiologyInsulinBrainPovidoneAlzheimer's disease021001 nanoscience & nanotechnologyReceptor InsulinCell biologyNanostructuresMice Inbred C57BLInsulin receptormedicine.anatomical_structureTargeted drug deliveryBiochemistryMechanics of MaterialsCeramics and Compositesbiology.proteinSettore CHIM/07 - Fondamenti Chimici Delle TecnologieNanocarriers0210 nano-technology030217 neurology & neurosurgeryNanogel
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DNA Block Copolymer Micelles – A Combinatorial Tool for Cancer Nanotechnology

2008

Selective drug targeting of a specific organ or tissue is a challenging task. This holds especially true for chemotherapeutic cancer treatment because most of the available anticancer agents cannot distinguish between cancerous and healthy cells, leading to systemic toxicity and undesirable side effects. One effective approach to address this problem is the application of polymeric nanoparticles equipped with targeting units for tumor-specific delivery. For instance dendrimers, highly branched macromolecules, can be equipped with targeting units as well as with anticancer drugs because of their large number of surface functionalities. Amphiphilic block copolymers, which self-assemble in dil…

Materials scienceMechanical EngineeringCombinatorial chemistryMicelleSolid-phase synthesisTargeted drug deliveryMechanics of MaterialsColloidal goldDendrimerAmphiphileDrug deliveryComputingMethodologies_DOCUMENTANDTEXTPROCESSINGCopolymerGeneral Materials ScienceGeneralLiterature_REFERENCE(e.g.dictionariesencyclopediasglossaries)Advanced Materials
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Targeted tumor imaging of anti-CD20-polymeric nanoparticles developed for the diagnosis of B-cell malignancies

2015

Sara Capolla,1 Chiara Garrovo,2 Sonia Zorzet,1 Andrea Lorenzon,3 Enrico Rampazzo,4 Ruben Spretz,5 Gabriele Pozzato,6 Luis Núñez,7 Claudio Tripodo,8 Paolo Macor,1,9 Stefania Biffi2 1Department of Life Sciences, University of Trieste, 2Institute for Maternal and Child Health – IRCCS “Burlo Garofolo”, Trieste, 3Animal Care Unit, Cluster in Biomedicine (CBM scrl), Trieste, Italy; 4Department of Chemistry “G. Ciamician”, University of Bologna, Bologna, Italy; 5LNK Chemsolutions LLC, Lincoln, NE, USA; 6Department of Medical, Surgery and Health Sciences, University of Trieste, Trieste, Italy; 7Bio-Target, Inc., University of C…

Medicine (General)Active targeting; Optical imaging; Tumor accumulation; Animals; Antigens CD20; Cell Line Tumor; Humans; Leukemia B-Cell; Mice; Molecular Imaging; Nanoparticles; Polymers; Drug Delivery Systems; Bioengineering; Biophysics; Biomaterials; Drug Discovery3003 Pharmaceutical Science; Organic ChemistryTumor accumulationPolymersPharmaceutical SciencePharmacologyOptical imagingMiceDrug Delivery SystemsNanoparticleInternational Journal of NanomedicineDrug DiscoveryPolymerOriginal ResearchActive targeting; Optical imaging; Tumor accumulation; Animals; Antigens CD20; Cell Line Tumor; Humans; Leukemia B-Cell; Mice; Molecular Imaging; Nanoparticles; Polymers; Drug Delivery Systems; Biophysics; Bioengineering; Biomaterials; Organic Chemistry; Drug Discovery3003 Pharmaceutical ScienceTumorLeukemiaActive targetingtumor accumulationGeneral MedicineMolecular ImagingDrug deliverySystemic administrationPreclinical imagingHumanactive targetingMaterials scienceBiophysicsBioengineeringCell LineBiomaterialsoptical imagingR5-920In vivoCell Line TumormedicineLeukemia B-CellDistribution (pharmacology)AnimalsHumansCD20AntigensAnimalDrug Discovery3003 Pharmaceutical ScienceOrganic ChemistryB-CellCancermedicine.diseaseAntigens CD20BiomaterialTargeted drug deliveryBiophysicNanoparticlesMolecular imagingDrug Delivery System
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New methods of delivery of amphotericin B.

1993

Fungal infections continue to be a major problem in the management of immunocompromised patients. Despite its formidable toxicity and treatment failures, amphotericin B is still the drug of choice for most of these infections. One strategy for reducing the toxicity of amphotericin B and thus permitting administration of higher doses is that of using less toxic formulations. Entrapping amphotericin B into liposomes or binding it to other substances reduces its toxicity to host cells, whereas the selective binding of amphotericin B to ergosterol preserves its toxicity to fungal cells. Adding fungus-specific antibodies to such liposomes may further increase the efficiency of drug targeting. Th…

Microbiology (medical)DrugTime Factorsmedia_common.quotation_subjectPharmacologyAspergillosisRoute of administrationImmunocompromised HostAmphotericin BAmphotericin BMedicineAnimalsAspergillosisHumansAdministration Intranasalmedia_commonAerosolsDosage Formsbusiness.industrymedicine.diseaseClinical trialInfectious DiseasesTargeted drug deliveryMycosesToxicityNasal administrationbusinessmedicine.drugClinical infectious diseases : an official publication of the Infectious Diseases Society of America
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Bio-nano: Theranostic at Cellular Level

2018

Functionalized nanoparticles are important platforms for targeted drug delivery and multimodal imaging. Materials scientists provide tailor-made tools for medical research, diagnosis and treatment. These tools are rationally designed to have defined functions. Still, the value of these tools can only be determined by the users in medical sciences that develop assays for applying these tools. Until now, little is known about the impact of multifunctional particles that display intrinsic chemical and physical asymmetry which poses new challenges for cells associated with the amphiphilicity, dipole moments and chemical diversity/patchiness of the functionalized nanoparticles. Why is it importa…

Multimodal imagingComputer scienceMultifunctional nanoparticlesNew materialsNanotechnology02 engineering and technologyCellular level010402 general chemistry021001 nanoscience & nanotechnologyMedical research01 natural sciences0104 chemical sciencesWeak bindingTargeted drug deliveryChemical diversity0210 nano-technology
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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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