Search results for "HYALURONIDASE"

showing 9 items of 9 documents

Surgical Treatment of Extravasation Injuries

2005

The authors present their experience of treating anti-cancer drug extravasation by means of a composite surgical technique that consists of infiltration with physiological solution and hyaluronidase and subsequent manual aspiration of solutes alternated with profuse irrigation of the infiltrated area. In the immediate post-op we carry out a medical therapy that consists of calciparine and topic antibiotic and/or steroid creams. Since the year 2000 this technique has been used on 25 patients. We have had neither complications nor scars. Copyright 2005 Wiley-Liss, Inc Surgical treatment of extravasation injuries. Napoli P, Corradino B, Badalamenti G, Tripoli M, Vieni S, Furfaro MF, Cordova A,…

AdultMalemedicine.medical_specialtyantiblastictreatment KeyWords Plus:ANTITUMOR AGENTSextravasation injury; antiblastic; prevention; treatmentANTITUMOR AGENTS; APPROPRIATE MANAGEMENT; TISSUE EXTRAVASATION; HYALURONIDASE [Author Keywords]Drug ExtravasationTherapeutic irrigationScarsAntineoplastic AgentsTISSUE EXTRAVASATIONAPPROPRIATE MANAGEMENTCicatrixpreventionBiopsymedicineHumansCalciparineAuthor Keywords:extravasation injurySurgical treatmentTherapeutic IrrigationAgedRetrospective Studiesmedicine.diagnostic_testbusiness.industryBiopsy NeedleGeneral MedicineHYALURONIDASEMiddle Agedmedicine.diseaseHandExtravasationSurgeryAnti-Bacterial Agentsanticancer drugsTreatment OutcomeOncologyAnesthesiaSurgeryFemalemedicine.symptombusinessInfiltration (medical)Extravasation of Diagnostic and Therapeutic Materials
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Injectable in situ forming microgels of hyaluronic acid-g-polylactic acid for methylprednisolone release

2013

Abstract A hydrophobic derivative of hyaluronic acid (HA), obtained by grafting polylactic acid (PLA) to the polysaccharide, has been exploited to produce injectable in situ forming microgels. First of all, self assembling properties of HA-g-PLA copolymer have been evaluated by determining the critical aggregation concentration (CAC) value, then this copolymer has been dissolved in a mixture water/NMP 5:2 v/v with a concentration greater than CAC. When solutions at 1% or 2% w/v were injected into Dulbecco phosphate buffer solution (DPBS) pH 7.4, microgels promptly are formed. Their stability in DPBS pH 7.4 in the absence or in the presence of hyaluronidase and cell compatibility have been e…

Drugchemistry.chemical_classificationMaterials sciencePolymers and Plasticsmedia_common.quotation_subjectOrganic ChemistryGeneral Physics and Astronomymicrogels hyaluronic acid methylprednisolone drug delivery systemGraftingPolysaccharidechemistry.chemical_compoundPolylactic acidchemistryMethylprednisoloneHyaluronidaseSettore CHIM/09 - Farmaceutico Tecnologico ApplicativoPolymer chemistryHyaluronic acidMaterials ChemistrymedicineCopolymermedicine.drugmedia_commonNuclear chemistry
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Dual Enzyme-Responsive Capsules of Hyaluronic Acid-block-Poly(Lactic Acid) for Sensing Bacterial Enzymes.

2015

The synthesis of novel amphiphilic hyaluronic acid (HYA) and poly(lactic acid) (PLA) block copolymers is reported as the key element of a strategy to detect the presence of pathogenic bacterial enzymes. In addition to the formation of defined HYA-block-PLA assemblies, the encapsulation of fluorescent reporter dyes and the selective enzymatic degradation of the capsules by hyaluronidase and proteinase K are studied. The synthesis of the dual enzyme-responsive HYA-b-PLA is carried out by copper-catalyzed Huisgen 1,3-dipolar cycloaddition. The resulting copolymers are assembled in water to form vesicular structures, which are characterized by scanning electron microscopy, transmission electron…

Fluorescence-lifetime imaging microscopyStaphylococcus aureusMaterials sciencePolymers and PlasticsCell SurvivalPolymersDrug CompoundingPolyestersMolecular Sequence DataPrimary Cell CultureHyaluronoglucosaminidaseBiosensing TechniquesFluorescence spectroscopyNanocapsuleschemistry.chemical_compoundDynamic light scatteringBacterial ProteinsNanocapsulesHyaluronidaseAmphiphileMaterials ChemistrymedicineHumansLactic AcidHyaluronic AcidMicellesFluorescent DyesCycloaddition ReactionRhodaminesOrganic Chemistrytechnology industry and agricultureEndothelial CellsDermisLactic acidchemistryBiochemistryCarbohydrate SequencePseudomonas aeruginosaBiophysicsLiberationEndopeptidase Kmedicine.drugMacromolecular rapid communications
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Construction and evaluation of sponge scaffolds from hyaluronic acid derivatives for potential cartilage regeneration

2020

A two or one pot synthesis has been used for the reaction of hyaluronic acid (HA) with octadecylamine (C-18) and hydrazine (Hy). In both cases, the chemical derivatization involved primary hydroxyl groups of hyaluronic acid and not its carboxyl groups, whose presence is important for receptor interaction. In this way, Hy-HA-C-18 derivatives have been obtained with appropriate hydrophobic and hydrophilic character. Their ability to form homogeneous physical hydrogels has been evaluated as well as the possibility to obtain porous sponges through salt leaching technology. Sponges showing the highest porosity, potentially compatible with cell entrapment, have been characterized with regard to t…

Materials scienceBiomedical EngineeringSettore MED/08 - Anatomia PatologicaGlycosaminoglycanchemistry.chemical_compoundPhysiological conditionHyaluronidaseChemical derivatizationHyaluronic acidmedicineOrganic chemistryGeneral Materials ScienceHydrophobic and hydrophilicDerivatizationbiologyCartilageBovine chondrocyteGeneral ChemistryGeneral Medicinebiology.organism_classificationHyaluronic acid derivativeReceptor interactionSpongemedicine.anatomical_structurechemistryCartilage regenerationSettore CHIM/09 - Farmaceutico Tecnologico ApplicativoSelf-healing hydrogelsBiological propertieSwellingmedicine.symptommedicine.drugNuclear chemistryJournal of Materials Chemistry B
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CROSSLINKED HYALURONAN WITH A PROTEIN-LIKE POLYMER: NOVEL BIORESORBABLE FILMS FOR BIOMEDICAL APPLICATIONS

2007

In this work, novel hydrogel films based on hyaluronan (HA) chemically crosslinked with the alpha,beta-poly(N-2-hydroxyethyl) (2-aminoethylcarbamate)-D,L-aspartamide (PHEA-EDA) were produced by solution casting method. The goal was to exploit both the biological key role of HA in tissue repair and regeneration, and the versatility of a synthetic protein-like polymer as the PHEA-EDA, in order to obtain biomaterials with physicochemical and biological properties suitable for a clinical use. By varying the molar ratio between the PHEA-EDA amino groups and HA carboxyl groups, three different films were obtained and characterized. Particularly FTIR, swelling, hydrolysis, and enzymatic degradatio…

Materials scienceCell SurvivalBiomedical EngineeringTetrazolium SaltsBiomaterialsHydrolysischemistry.chemical_compoundTissue engineeringCoated Materials BiocompatibleHyaluronidaseNephelometry and TurbidimetryPolymer chemistryHyaluronic acidSpectroscopy Fourier Transform InfraredmedicineCell AdhesionPolyaminesHumansHyaluronic AcidAspartameSkinchemistry.chemical_classificationWound HealingHydrolysisMetals and AlloysProteinsCalorimetry IndirectHydrogelsPolymerTrypan BlueFibroblastsThiazolesCross-Linking ReagentschemistryChemical engineeringHYDROGELS HYALURONIC ACIDSettore CHIM/09 - Farmaceutico Tecnologico ApplicativoSelf-healing hydrogelsCeramics and CompositesTrypan blueSwellingmedicine.symptommedicine.drug
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In situ forming hydrogels of hyaluronic acid and inulin derivatives for cartilage regeneration.

2014

An in situ forming hydrogel obtained by crosslinking of amino functionalized hyaluronic acid derivatives with divinylsulfone functionalized inulin (INU-DV) has been here designed and characterized. In particular two hyaluronic acid derivatives bearing respectively a pendant ethylenediamino (EDA) portion (HA-EDA) and both EDA and octadecyl pendant groups (HA-EDA-C18) were crosslinked through an azo-Michael reaction with INU-DV. Gelation time and consumption of DV portions have been evaluated on hydrogel obtained using HA-EDA and HA-EDA-C18 derivatives with a concentration of 3% w/v and a ratio 80/20 w/w respect to the crosslinker INU-DV. The presence of pendant C18 chains improves mechanical…

Polymers and PlasticsPolymersInulinmacromolecular substancesHydrolysischemistry.chemical_compoundChondrocytesTissue engineeringHyaluronidaseHyaluronic acidPolymer chemistryMaterials ChemistrymedicineAnimalsRegenerationHyaluronic Acidchemistry.chemical_classificationTissue EngineeringChemistryOrganic Chemistrytechnology industry and agricultureInulinHydrogelsPolymerhydrogels hyaluronic acid inulinCartilageCross-Linking ReagentsSettore CHIM/09 - Farmaceutico Tecnologico ApplicativoSelf-healing hydrogelsMichael reactionMicroscopy Electron ScanningCattlemedicine.drugCarbohydrate polymers
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Die allergisch-hyperergische Entzündung von Haut und Gelenken unter dem Einflu\ von Hyaluronidase und Rutin

1954

Es wurde der Einflu\ von Hyaluronidase und Rutin auf die allergisch-hyperergische Entzundung der Haut und der Gelenke beim Kaninchen untersucht. Hyaluronidase allein ruft lediglich ein entzundliches odem hervor. Hyaluronidase am Ort der Antigenreinjektion appliziert fuhrt in der Haut zu einer AbschwAchung und im Gelenk zu einer VerstArkung der Entzundung. Intravenose Hyaluronidasegaben verstArken die Entzundung in der Haut, wAhrend die Arthritis keine wesentliche Beeinflussung erfAhrt. Rutin intravenos gegeben fuhrt zu einer deutlichen Herabminderung der Entzundungserscheinungen an Haut und Gelenken.

Rutinchemistry.chemical_compoundchemistrybusiness.industryHyaluronidaseMedicineInflammationGeneral Medicinemedicine.symptombusinessMolecular biologymedicine.drugZeitschrift für Die Gesamte Experimentelle Medizin
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Interpenetrated 3D porous scaffolds of silk fibroin with an amino and octadecyl functionalized hyaluronic acid

2015

An ethylenediamine (EDA) and octadecylamine (-C18) hyaluronic acid (HA) derivative, named HA-EDA-C18, has been used for the production of interpenetrated composite biomaterials with silk fibroin. The peculiar ionic strength sensibility of this HA derivative allows the production of porous matrices without the need for chemical crosslinking. Scaffolds have been produced through a salt leaching procedure by exploiting the properties of silk fibroin and HA-EDA-C18 to physically crosslink when forced through a syringe loaded with NaCl. The porosity of the sponges, comprised between 70-80%, was dependent on the amount of each polymer and NaCl size distribution. Moreover, through FT-IR analysis, …

chemistry.chemical_classificationGeneral Chemical EngineeringfungiComposite numbertechnology industry and agricultureFibroinEthylenediamineGeneral ChemistryPolymerequipment and supplieschemistry.chemical_compoundchemistryHyaluronidaseIonic strengthEnzymatic hydrolysisHyaluronic acidPolymer chemistrymedicinesponges scaffolds fibroin hyaluronic acidmedicine.drugRSC Advances
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Preparation and characterization of new hydrogels based on hyaluronic acid and α,β-polyaspartylhydrazide

2007

Abstract Hyaluronic acid (HA) has been crosslinked with α,β-polyaspartylhydrazide (PAHy). The crosslinking reaction has been performed in acidic medium in the presence of various amounts of N-ethyl-N′-(3-dimethylaminopropyl)-carbodiimide hydrochloride (EDC). All obtained samples have been characterized by FT-IR analysis and swelling measurements in double distilled water that have confirmed the occurrence of a chemical linkage between two polymers and the affinity towards aqueous medium of HA–PAHy networks, respectively. In vitro degradation assays have been performed in simulated physiological conditions as well as in the presence of hyaluronidase. Experimental data evidenced that HA–PAHy …

chemistry.chemical_classificationMaterials sciencePolymers and PlasticsHydrochlorideOrganic ChemistryGeneral Physics and AstronomyPolymerchemistry.chemical_compoundHydrolysischemistryDistilled waterHyaluronidaseHyaluronic acidSelf-healing hydrogelsPolymer chemistryMaterials ChemistrymedicineSwellingmedicine.symptomhyaluronic acid scaffoldsNuclear chemistrymedicine.drugEuropean Polymer Journal
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