Search results for "Ionic polymerization"

showing 10 items of 481 documents

Expression, regulation and function of carrier proteins for cationic amino acids.

2001

Different carrier proteins exhibiting distinct transport properties participate in cationic amino acid transport. There are sodium-independent systems, such as b+, y+, y+L and b0,+, and a sodium-dependent system B0,+, most of which have now been identified at the molecular level. In most non-epithelial cells, members of the cationic amino acid transporter (CAT) family mediating system y+ activity seem to be the major entry pathway for cationic amino acids. CAT proteins underlie complex regulation at the transcriptional, post-transcriptional and activity levels. Recent evidence indicates that individual CAT isoforms are necessary for providing the substrate for nitric oxide synthesis, for ex…

chemistry.chemical_classificationGene isoformAmino Acid Transport System y+SodiumCationic polymerizationSubstrate (chemistry)BiologyNitric oxideAmino acidchemistry.chemical_compoundchemistryBiochemistryNephrologyCarrier proteinInternal MedicineAmino Acid Transport Systems BasicAnimalsHumansAmino acid transporterFunction (biology)Current opinion in nephrology and hypertension
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Cationic Amino Acid Transporters (CATs)

2002

When the transport properties of mCAT-1 were described in 1991, the y+ carrier and major transporter for cationic amino acids seemed to be discovered. Today, we know that there are at least three different CAT isoforms that mediate y+ activity and the family might be growing. In addition, transport systems for cationic amino acids other than y + have been described and proteins that induce the respective transport activities have been identified. Consequently, the transport of cationic amino acids appears to be a complex process involving many proteins— carriers and possibly also regulatory proteins—whose expression is cell-specific and dependent on a variety of external stimuli. The multit…

chemistry.chemical_classificationGene isoformCATSmedicine.anatomical_structureBiochemistryChemistryCellmedicineCationic polymerizationTransporterCationic Amino Acid TransportersFunction (biology)Amino acid
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2D Bimetallic Oxalate‐Based Ferromagnets with Inserted [Fe(4‐Br‐sal 2 ‐trien)] + and [Fe(3‐R‐sal 2 ‐trien)] + (R = Br, Cl and CH 3 O) Fe III Spin‐Cro…

2012

The syntheses, structures and magnetic properties of the compounds of formula [FeIII(4-Br-sal2-trien)][MnIICrIII(ox)3]0.67Cl0.33·CH3OH_solvate (1), [FeIII(3-Br-sal2-trien)][MnIICrIII(ox)3]·(CH3CN)2 (2), [FeIII(3-Cl-sal2-trien)][MnIICrIII(ox)3]·(CH3OH)2·(CH3CN)2 (3) and [FeIII(3-CH3O-sal2-trien)][MnIICrIII(ox)3]·(CH3OH)·(H2O)1.5·(CH2Cl2)0.5 (4) are reported. The four structures present a 2D honeycomb anionic layer formed by MnII and CrIII ions linked through oxalate ligands and a cationic layer of the FeIII complexes intercalated between the 2D oxalate network. The main differences compared with previous 2D oxalate-based structures are the presence of double layers of cations in compounds 1,…

chemistry.chemical_classificationInorganic chemistryCationic polymerization02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesLIESSTOxalate3. Good health0104 chemical sciencesCoordination complexInorganic Chemistrychemistry.chemical_compoundCrystallographyFerromagnetismchemistrySpin crossoverMolecule0210 nano-technologyBimetallic stripEuropean Journal of Inorganic Chemistry
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The first structurally characterized cationic lanthanide–alkyl complexesElectronic supplementary information (ESI) available: experimental and spectr…

2002

Reaction of rare earth metal–alkyl complexes [Ln(CH2SiMe3)3(THF)2] (Ln = Y, Lu) with B(C6X5)3 (X = H, F) in the presence of crown ethers gives crystallographically characterized ion pairs [Ln(CH2SiMe3)2(CE)(THF)n]+[B(CH2SiMe3)(C6X5)3]– (CE = [12]-crown-4, n = 1; CE = [15]-crown-5 and [18]-crown-6, n = 0).

chemistry.chemical_classificationLanthanideStereochemistryRare earthMetals and AlloysCationic polymerizationGeneral ChemistryIon pairsMedicinal chemistryCatalysisSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialschemistryMaterials ChemistryCeramics and CompositesAlkylChemical Communications
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NHC-Stabilized Gold(I) Complexes: Suitable Catalysts for 6-exo-dig Heterocyclization of 1-(o-Ethynylaryl)ureas

2010

3-Substituted 1-(o-ethynylaryl)ureas 1 selectively undergo either 6-exo-dig or 5-endo-dig cyclization (to give 4-methylene-3,4-quinazolin-2-ones 2 or indoles 3, respectively) depending on the choice of the metal, ligand, and reaction conditions. The best results (up to 96% yield) in the preparation of the hydroamination products 2 are achieved with the highly bulky NHC-stabilized cationic gold(I) complex [Au(IPr)](+). Conversely, ureas bearing an internal alkyne lead to the 5-endo-dig cyclization mode regardless of the gold(I) complex employed. Whereas the nature of the substituent at N-3 does not have any influence on the regiochemistry observed, it does, in some cases, affect the efficien…

chemistry.chemical_classificationLigandOrganic ChemistrySubstituentCationic polymerizationAlkyneRegioselectivityBiochemistryMedicinal chemistryCatalysisMetalchemistry.chemical_compoundchemistryvisual_artvisual_art.visual_art_mediumOrganic chemistryHydroaminationPhysical and Theoretical ChemistryOrganic Letters
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Degradable cationic nanohydrogel particles for stimuli-responsive release of siRNA.

2014

Well-defined nanogels have become quite attractive as safe and stable carriers for siRNA delivery. However, to avoid nanoparticle accumulation, they need to provide a stimuli-responsive degradation mechanism that can be activated at the payload's site of action. In this work, the synthetic concept for generating well-defined nanohydrogel particles is extended to incorporate disulfide cross-linkers into a cationic nanonetwork for redox-triggered release of oligonucleotide payload as well as nanoparticle degradation under reductive conditions of the cytoplasm. Therefore, a novel disulfide-modified spermine cross-linker is designed that both allows disassembly of the nanogel as well as removal…

chemistry.chemical_classificationMagnetic Resonance SpectroscopyPolymers and PlasticsChemistryOligonucleotideSpermidineOrganic ChemistryCationic polymerizationNanoparticleNanogelsFluorescence correlation spectroscopyHydrogelsPolymerPolyethylene GlycolsNanotoxicologyCationsAgarose gel electrophoresisMaterials ChemistryBiophysicsPolyethyleneimineDisulfidesRNA Small InterferingNanogelMacromolecular rapid communications
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Cover Picture: Pleiotropic Role of Recombinant Silaffin-Like Cationic Polypeptide P5S3: Peptide-Induced Silicic Acid Stabilization, Silica Formation …

2016

chemistry.chemical_classificationMaterials scienceCationic polymerizationPeptideGeneral Chemistrylaw.inventionchemistry.chemical_compoundchemistrylawBiomimetic synthesisRecombinant DNAOrganic chemistryCover (algebra)Silicic acidDissolutionChemistrySelect
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Living Anionic Polymerization in Continuous Flow: Facilitated Synthesis of High-Molecular Weight Poly(2-vinylpyridine) and Polystyrene

2014

We describe the living anionic polymerization of 2-vinylpyridine (2VP) and styrene (S) in continuous flow, comparing two micromixing devices with different mixing principles. The use of a continuous flow setup reduces the experimental effort for living anionic polymerizations significantly, compared to a conventional batch system. By adjusting the ratio of the flow rates of the monomer and initiator solutions a variety of different molecular weights can be rapidly synthesized within several minutes, using one setup. Additionally, a comparison of the influence of the two different mixing devices—an interdigital micromixer (SIMM-V2) leading to laminar mixing and a tangential four-way jet mixi…

chemistry.chemical_classificationMaterials scienceOrganic ChemistryMixing (process engineering)MicromixerLaminar flowPolymerStyrenechemistry.chemical_compoundMonomerchemistryChemical engineeringPolymer chemistryPolystyrenePhysical and Theoretical ChemistryLiving anionic polymerizationOrganic Process Research & Development
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Cyclodextrins in polymer synthesis: free radical polymerization of cyclodextrin complexes with oxazoline-functionalized vinyl monomers as guest molec…

2000

The synthesis of five new oxazoline functionalized vinyl monomers N-[4-(4′,5′-dihydrooxazol-2-yl)phenyl]acrylamide (3 a), N-[4-(4′,5′-dihydrooxazol-2-yl)phenyl]-2-methylacrylamide (3 b), N-{10-[4-(4′,5′-dihydrooxazol-2-yl)phenylcarbamoyl]decyl}-2-acrylamide (5 a), N-{10-[4-(4′,5′-dihydrooxazol-2-yl)phenylcarbamoyl]decyl}-2-methylacrylamide (5 b) and N-[4-(4′,5′-dihydrooxazol-2-yl)-phenyl]-4-vinylbenzamide (7) is described. With an equimolar amount of 2,6-dimethyl-β-cyclodextrin (DMCD) these monomers formed hydrophilic inclusion complexes 3 a,b-DMCD, 5 a,b-DMCD and 7-DMCD. These complexes were polymerized radically in an aqueous medium. Resulting polymers P-(3 a, b), P-(5 a, b) and P-(7) pre…

chemistry.chemical_classificationMaterials sciencePolymers and PlasticsCyclodextrinOrganic ChemistryRadical polymerizationCationic polymerizationOxazolineRing-opening polymerizationInclusion compoundchemistry.chemical_compoundMonomerchemistryPolymerizationPolymer chemistryMaterials ChemistryMacromolecular Rapid Communications
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Synthesis of well-defined polymeric activated esters

2008

Monomers bearing an activated ester group can be polymerized under various controlled polymerization techniques, such as ATRP, NMP, RAFT polymerization, or ROMP. Combining the functionalization of polymers via polymeric activated esters with these controlled polymerization techniques generate possibilities to realize highly functionalized polymer architectures. Within this highlight two different research areas of activated esters in polymer science will be discussed: (i) the preparation of defined reactive polymer architectures by controlled polymerization techniques and (ii) the preparation of defined reactive thin films. © 2008 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 46: 6…

chemistry.chemical_classificationMaterials sciencePolymers and PlasticsOrganic ChemistryRadical polymerizationtechnology industry and agricultureChain transfermacromolecular substancesPolymerChain-growth polymerizationchemistryPolymerizationPolymer chemistryMaterials ChemistryCopolymerReversible addition−fragmentation chain-transfer polymerizationIonic polymerizationJournal of Polymer Science Part A: Polymer Chemistry
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