Search results for "Circulation time"

showing 5 items of 5 documents

Gold nanoparticle interactions with endothelial cells cultured under physiological conditions

2017

PEGylated gold nanoparticles (AuNPs) have an extended circulation time after intravenous injection in vivo and exhibit favorable properties for biosensing, diagnostic imaging, and cancer treatment. No impact of PEGylated AuNPs on the barrier forming properties of endothelial cells (ECs) has been reported, but recent studies demonstrated that unexpected effects on erythrocytes are observed. Almost all studies to date have been with static-cultured ECs. Herein, ECs maintained under physiological cyclic stretch and flow conditions and used to generate a blood-brain barrier model were exposed to 20 nm PEGylated AuNPs. An evaluation of toxic effects, cell stress, the release profile of pro-infla…

SwineBiomedical EngineeringNanoparticleNanotechnology02 engineering and technology010402 general chemistryBlood–brain barrier01 natural sciencesPolyethylene GlycolsIn vivoHuman Umbilical Vein Endothelial CellsMedicineAnimalsHumansGeneral Materials ScienceParticle SizeCells Culturedbusiness.industryEndothelial Cells021001 nanoscience & nanotechnologyQPR10104 chemical sciencesCancer treatmentCell stressmedicine.anatomical_structureColloidal goldBlood-Brain BarrierBiophysicsNanoparticlesCirculation timeGold0210 nano-technologybusinessBlood stream
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Time Courses of Erythrocytic Oxygenation in Capillaries of the Lung: Lower and Upper Bounds on Red Cell Transit Times

1987

With the aid of a 2-dimensional computer simulation (Groebe and Thews, 1986), time courses of erythrocytic oxygen uptake in the lung were calculated.

medicine.medical_specialtyLungRed CellChemistryTransit timeAnatomyOxygenationrespiratory systemOxygen uptakemedicine.anatomical_structureInternal medicinemedicineCardiologyShunt fractionBlood Circulation Time
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Rapid Access to Polyfunctional Lipids with Complex Architecture via Oxyanionic Ring-Opening Polymerization

2011

Polymer-coated liposomes, particularly poly(ethylene glycol) (PEG)-substituted liposomes, have emerged as long-circulating carrier systems for drug delivery and diagnostic purposes. A rapid synthesis of three different types of multifunctional lipids with structurally diverse hydrophilic, polyether-based architectures via one- or two-pot approaches is described. Architectural variation is achieved by the combination of different oxyanionic polymerization strategies and various glycidyl ether building units. Branched polyglycerol lipids have been prepared via cholesterol- or 1,2-bis-n-alkyl glyceryl ether-initiated, oxyanionic ring-opening polymerization (ROP) of protected glycidyl ethers an…

Hyperbranched PolyglycerolsPolymers and PlasticsEffectively ProlongRing-opening polymerizationMicelleCirculation TimeInorganic Chemistrychemistry.chemical_compoundAmphiphilePolymer chemistryMaterials ChemistryCopolymerOrganic chemistryPoly(Ethylene Glycol) CopolymersSolid TumorsCationic-PolymerizationDrug-Delivery SystemsOxide) OligomersEthylene oxideOrganic ChemistryCationic polymerizationEnd-groupchemistryPolymerizationBlock-CopolymersIn-Vivo
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Zebrafish Embryos Allow Prediction of Nanoparticle Circulation Times in Mice and Facilitate Quantification of Nanoparticle–Cell Interactions

2020

The zebrafish embryo is a vertebrate well suited for visualizing nanoparticles at high resolution in live animals. Its optical transparency and genetic versatility allow noninvasive, real-time observations of vascular flow of nanoparticles and their interactions with cells throughout the body. As a consequence, this system enables the acquisition of quantitative data that are difficult to obtain in rodents. Until now, a few studies using the zebrafish model have only described semiquantitative results on key nanoparticle parameters. Here, a MACRO dedicated to automated quantitative methods is described for analyzing important parameters of nanoparticle behavior, such as circulation time and…

NANOCARRIERSEmbryo Nonmammalianmiceanimal structurescirculation timeCellNanoparticleLIPOSOMES02 engineering and technology010402 general chemistry01 natural sciencesSEQUENCEBiomaterialsMiceDELIVERYmedicineMedicine and Health SciencesAnimalsGeneral Materials ScienceZebrafishZebrafishbiologyChemistryMacrophagesEndothelial CellsOptical transparencyPLGAGeneral ChemistryTARGETING MACROPHAGES021001 nanoscience & nanotechnologybiology.organism_classificationzebrafishCANCER0104 chemical sciencesCell biologymacrophagesChemistrymedicine.anatomical_structureCell cultureembryonic structuresZebrafish embryoNanoparticlesCirculation timenanoparticlesNanocarriers0210 nano-technologyANTIBIOTICSBiotechnology
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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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