Search results for " Drug"

showing 10 items of 3138 documents

Pathophysiology of anthracycline cardiotoxicity.

2016

Anthracyclines (ANTs) are powerful drugs that have reduced the mortality of cancer patients. However, their use is limited by the development of cardiotoxicity (CTX), which is dose dependent and may lead to left ventricular dysfunction and heart failure. Although various strategies have been suggested to reduce the negative effects of ANTs, CTX is still an important unresolved clinical issue. This may be due at least partly to the incomplete characterization of the molecular and cellular mechanisms of ANT-induced CTX. In addition, although various forms of cardiac damage have been demonstrated with the use of these drugs in experimental studies, it is not yet clear how these translate to th…

DrugAnthracyclinemedia_common.quotation_subjectLeftanthracyclines; cancer; cardiotoxicity; Cardiology and Cardiovascular MedicineDose dependenceAntineoplastic Agents030204 cardiovascular system & hematologyanthracyclineBioinformatics03 medical and health sciencesVentricular Dysfunction Left0302 clinical medicineAntibioticsNeoplasmsVentricular DysfunctionmedicinecancerHumansGenetic Predisposition to DiseaseAnthracyclinesmedia_commonHeart FailureCardiotoxicityAntibiotics AntineoplasticDose-Response Relationship Drugbusiness.industryanthracyclines cancer cardiotoxicityCancerHeartGeneral Medicinebiochemical phenomena metabolism and nutritionmedicine.diseaseAntineoplasticPathophysiologyCardiotoxicityCardiovascular Diseases030220 oncology & carcinogenesisHeart failureCardiology and Cardiovascular Medicinebusinessanthracyclines; cancer; cardiotoxicity; Anthracyclines; Antibiotics Antineoplastic; Cardiotoxicity; Heart Failure; Humans; Neoplasms; Ventricular Dysfunction LeftJournal of cardiovascular medicine (Hagerstown, Md.)
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In vitro activities of antimicrobial agents against Candida species

1999

Objective. Antimicrobial mouthrinses may represent a valid alternative to topical antifungal agents. However, the action of antimicrobials could be affected by the different ingredients incorporated into mouthrinse products. The purpose of the present study was to investigate the in vitro antifungal and fungicidal activities of antimicrobials alone. Study Design. A broth macrodilution method was used to determine the minimum inhibitory concentration of 4 antimicrobial agents against Candida species. Minimum fungicidal concentration was also determined. Results. All antimicrobials showed antifungal activity against all tested organisms, but cetylpyridinium chloride received significantly low…

DrugAntifungal Agentsmedia_common.quotation_subjectColony Count MicrobialMouthwashesCetylpyridiniumMicrobial Sensitivity TestsHexetidineBiologyCetylpyridinium chlorideStatistics NonparametricMicrobiologychemistry.chemical_compoundMinimum inhibitory concentrationAlkaloidsmedicineGeneral DentistryMycosisCandidamedia_commonBenzophenanthridinesAnalysis of VarianceDose-Response Relationship DrugTraditional medicineChlorhexidineHexetidineFungi imperfectiIsoquinolinesmedicine.diseasebiology.organism_classificationAntimicrobialFungicideOtorhinolaryngologychemistryAnti-Infective Agents LocalSurgeryOral SurgeryOral Surgery, Oral Medicine, Oral Pathology, Oral Radiology, and Endodontology
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5-Fluorouracil Buccal Tablets for Locoregional Chemotherapy of Oral Squamous Cell Carcinoma: Formulation, Drug Release and Histological Effects on Re…

2010

5-Fluorouracil (5-FU) is currently used for treatment of oral squamous cell carcinoma (OSCC). 5-FU is given by i.v. although the systemic administration is associated with severe toxic effects and no topical formulations of 5-FU for buccal drug delivery have been reported. In this study we would report the development of buccal tablets suitable for direct application of low-doses of 5-FU on cancer lesions. The topical administration could be effective on tumor area while systemic undesired side effects are avoided. Preliminarily, the limited tendency of 5-FU to cross the buccal tissue was established using reconstituted human oral epithelium (RHOE, in vitro) and porcine buccal mucosa (ex vi…

DrugAntimetabolites AntineoplasticPathologymedicine.medical_specialtySwineChemistry PharmaceuticalDrug Compounding5-Fluorouracilmedia_common.quotation_subjectPharmaceutical ScienceApoptosisSettore MED/08 - Anatomia PatologicaLocoregional drug deliveryOral Squamous Cell CarcinomaPermeabilityTissue Culture TechniquesDrug Delivery SystemsSettore MED/28 - Malattie OdontostomatologicheCarcinomaAnimalsHumansMedicinemedia_commonbusiness.industryMouth MucosaAdministration BuccalCancerBuccal administrationmedicine.diseaseReconstituted Human Oral Epitheliumstomatognathic diseasesSettore CHIM/09 - Farmaceutico Tecnologico ApplicativoFluorouracilDrug deliveryCarcinoma Squamous CellSystemic administrationMouth NeoplasmsFluorouracilPorcine buccal mucosaBuccal tabletsbusinessEx vivoTabletsmedicine.drugCurrent Drug Delivery
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Medium-Term Culture of Primary Oral Squamous Cell Carcinoma in a Three- Dimensional Model: Effects on Cell Survival Following Topical 5-Fluororacile …

2012

Since the activity of several conventional anticancer drugs is restricted by resistance mechanisms and dose-limiting side-effects, the design of formulations for local application on malignant lesions seems to be an efficient and promising drug delivery approach. In this study, the effect of locally applied 5-FU on cell death was evaluated both in a SCC4/HEK001 model and in a newly proposed 3D outgrowth model of oral squamous cell carcinoma (OSCC). Initially, the optimal drug dose was established by delivery of solutions containing different amounts of 5-FU. The solution containing 1% (w/v) of 5-FU resulted effective in inducing cell death with complete eradication of cell colonies. Buccal …

DrugAntimetabolites AntineoplasticProgrammed cell deathCell Survivalmedia_common.quotation_subjectCellCell Culture TechniquesApoptosisCell CommunicationMatrix (biology)PharmacologyExcipientsDrug Delivery SystemsMicroscopy Electron TransmissionCell Line TumorDrug DiscoverymedicineHumansmedia_commonPharmacologyTUNEL assayDose-Response Relationship Drugbusiness.industryCancerBuccal administrationmedicine.diseasemedicine.anatomical_structureAcrylatesDrug deliveryCarcinoma Squamous CellMethacrylatesMouth NeoplasmsFluorouracilbusinessTabletsCurrent Pharmaceutical Design
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Modified Montmorillonite as Drug Delivery Agent for Enhancing Antibiotic Therapy

2021

The appealing properties of surfactant-intercalated Montmorillonites (Organo-montmorillonite, OMt) were successfully investigated to propose an effective drug delivery system for metronidazole (MNE) antibiotic therapy. This represents a serious pharmaceutical concern due to the adverse drug reactions and the low targeting ability of MNE. The non-ionic surfactant Tween 20 was used to functionalize montmorillonite, thus accomplishing the two-fold objective of enhancing the stability of clay dispersion and better controlling drug uptake and release. The adsorption process was performed under different experimental conditions and investigated by constructing the adsorption isotherms through hig…

DrugBiocompatibilitymedia_common.quotation_subjectmontmorillonite; organoclay; metronidazole; surfactant; adsorption; release; drug delivery systemDrug delivery systemGeologyMineralogyGeotechnical Engineering and Engineering GeologyControlled releasechemistry.chemical_compoundMontmorilloniteAdsorptionchemistryPulmonary surfactantChemical engineeringMetronidazoleReleaseSurfactantDrug deliveryOrganoclayAdsorptionOrganoclayQE351-399.2Montmorillonitemedia_commonMinerals; Volume 11; Issue 12; Pages: 1315
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Cationic Supramolecular Vesicular Aggregates for Pulmonary Tissue Selective Delivery in Anticancer Therapy

2016

The biopharmaceutical properties of supramolecular vesicular aggregates (SVAs) were characterized with regard to their physicochemical features and compared with cationic liposomes (CLs). Neutral and cationic SVAs were synthesized using two different copolymers of poly(aspartyl hydrazide) by thin-layer evaporation and extrusion techniques. Both copolymers were self-assembled in pre-formulated liposomes and formed neutral and cationic SVAs. Gemcitabine hydrochloride (GEM) was used as an anticancer drug and loaded by a pH gradient remote loading procedure, which significantly increased drug loading inside the SVAs. The resulting average size of the SVAs was 100 nm. The anticancer activity of …

DrugBiodistributionMacromolecular Substancesmedia_common.quotation_subjectSupramolecular chemistryAntineoplastic Agents02 engineering and technology010402 general chemistryHydrazideDeoxycytidine01 natural sciencesBiochemistryGemcitabine Hydrochloridesupramolecular chemistryStructure-Activity Relationshipchemistry.chemical_compoundDrug Delivery SystemsCationsDrug DiscoveryTumor Cells CulturedAnimalsHumansTissue DistributionCationic liposomeRats WistarGeneral Pharmacology Toxicology and Pharmaceuticsvesicular aggregatesCell Proliferationmedia_commonPharmacologyLiposomeDose-Response Relationship DrugMolecular StructurenanoparticleOrganic ChemistryCationic polymerization021001 nanoscience & nanotechnologyGemcitabineRats0104 chemical scienceschemistryBiochemistryantitumor agentliposomeMolecular MedicineDrug Screening Assays Antitumor0210 nano-technologyChemMedChem
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Long-Circulating Hyaluronan-Based Nanohydrogels as Carriers of Hydrophobic Drugs

2018

[EN] Nanohydrogels based on natural polymers, such as polysaccharides, are gaining interest as vehicles for therapeutic agents, as they can modify the pharmacokinetics and pharmacodynamics of the carried drugs. In this work, hyaluronan-riboflavin nanohydrogels were tested in vivo in healthy rats highlighting their lack of toxicity, even at high doses, and their different biodistribution with respect to that of native hyaluronan. They were also exploited as carriers of a hydrophobic model drug, the anti-inflammatory piroxicam, that was physically embedded within the nanohydrogels by an autoclave treatment. The nanoformulation was tested by intravenous administration showing an improvement of…

DrugBiodistributionmedia_common.quotation_subjectRiboflavinPharmaceutical Sciencelcsh:RS1-441Pharmacokinetic02 engineering and technologyPharmacologyPiroxicam030226 pharmacology & pharmacyArticleNanohydrogelsLong circulatinglcsh:Pharmacy and materia medica03 medical and health sciencesPiroxicam0302 clinical medicineBiodistributionPharmacokineticsIn vivomedicineHyaluronanbiodistribution; hyaluronan; hydrophobic drugs; nanohydrogels; pharmacokinetic; piroxicam; riboflavinmedia_commonChemistry021001 nanoscience & nanotechnologyHydrophobic drugsToxicityCirculation time0210 nano-technologymedicine.drug
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Efficacy of budesonide-loaded mesoporous silica microparticles capped with a bulky azo derivative in rats with TNBS-induced colitis.

2019

Abstract A colon targeted drug delivery system for inflammatory bowel diseases (IBD), consisting in budesonide loaded mesoporous silica microparticles functionalized with a selective azo-molecular gate (M-Bud), has been evaluated for in vivo efficacy. Experimental colitis in male Wistar rats was induced by rectal instillation of 2,4,6-trinitrobenzenesulfonic acid (TNBS). M-Bud was orally administered to the rats as a suspension in water. Colon/body weight ratio, clinical activity score, and histological evaluation were used as inflammatory indices to measure the performance of the microparticles. The formulation was compared with a suspension prepared from the commercial drug Entocord®. Sta…

DrugBudesonideMalemedia_common.quotation_subjectPharmaceutical Science02 engineering and technologyPharmacology030226 pharmacology & pharmacy03 medical and health sciences0302 clinical medicineDrug Delivery SystemsIn vivomedicineAnimalsColitisBudesonideTnbs colitismedia_commonChemistryMesoporous silica021001 nanoscience & nanotechnologymedicine.diseaseColitisSilicon DioxideControlled releasedigestive system diseasesRatsTargeted drug deliveryTrinitrobenzenesulfonic Acid0210 nano-technologyAzo Compoundsmedicine.drugInternational journal of pharmaceutics
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A brief guide to performing pharmacological studies in vitro: Reflections from the EORTC-PAMM Course “Preclinical and Early-phase Clinical Pharmacolo…

2019

One aim of cell-based in vitro assays is to identify the best drug candidate to develop using the best tumor cell model. This is challenging in every anticancer drug discovery process. Briefly, we summarize the parameters to be taken into account when performing in vitro cell assays, in order to obtain reliable and reproducible results, which was fundamentally discussed by lecturers at the educational course on preclinical and early-phase clinical pharmacology studies, at the 40th Winter Meeting of the Pharmacology and Molecular Mechanisms Group of the European Organization for Research and Treatment of Cancer. Moreover, specific cellular sensitivity tests are described. In addition to mono…

DrugCancer ResearchClinical pharmacologybusiness.industrymedia_common.quotation_subjectIn vitro toxicologyTumor cellsGeneral MedicineComputational biologyAnticancer drugIn vitrolaw.invention03 medical and health sciences0302 clinical medicineOncologylawIn vivo030220 oncology & carcinogenesisMedicineEarly phasebusinessmedia_commonAnticancer Research
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2015

Drug resistance still impedes successful cancer chemotherapy. A major goal of early concepts in individualized therapy was to develop in vitro tests to predict tumors' drug responsiveness. We have developed an in vitro short-term test based on nucleic acid precursor incorporation to determine clinical drug resistance. This test detects inherent and acquired resistance in vitro and transplantable syngeneic and xenografted tumors in vivo. In several clinical trials, clinical resistance was predictable with more than 90% accuracy, while drug sensitivity was detected with less accuracy (~60%). Remarkably, clinical cross-resistance to numerous drugs (multidrug resistance, broad spectrum resistan…

DrugCancer Researchbusiness.industrymedia_common.quotation_subjectDrug resistanceBioinformaticsMultiple drug resistanceClinical trialOncologyIn vivomedicineDoxorubicinPersonalized medicinePredictive testingbusinessmedia_commonmedicine.drugFrontiers in Oncology
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