Search results for "aminophosphonates"

showing 8 items of 8 documents

Supported liquid membrane extraction of aromatic aminophosphonates

2001

Abstract A fast and efficient supported liquid membrane (SLM) extraction system for the series of substituted aromatic aminophosphonates was elaborated. The mass transfer of solute was examined in terms of operator (pH and ionic strength of water phase, composition of membrane phase and the concentration of analyte) dependent parameters. Additionally, the influence of the aminophosphonates structure on the extraction efficiency was examined. From the results it can be concluded that the most effective conditions of membrane process are 10% (w/w) carrier concentration (Aliquat 336) in the liquid membrane, high pH of donor phase (pH=11) and moderate salt concentration (0.4 M NaCl) in the acce…

ChromatographyaminophosphonatesChemistryExtraction (chemistry)Inorganic chemistryAliquat 336BiochemistryAcceptorAnalytical ChemistryMembrane technologychemistry.chemical_compoundMembraneIonic strengthPhase (matter)Mass transferextractionEnvironmental Chemistrysupported liquid membraneSpectroscopyAnalytica Chimica Acta
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Substituted phosphonic analogues of phenylglycine as inhibitors of phenylalanine ammonia lyase from potatoes.

2018

A series of phosphonic acid analogues of phenylglycine variously substituted in phenyl ring have been synthesized and evaluated for their inhibitory activity towards potato l-phenylalanine ammonia lyase. Most of the compounds appeared to act as moderate (micromolar) inhibitors of the enzyme. Analysis of their binding performed using molecular modeling have shown that they might be bound either in active site of the enzyme or in the non-physiologic site. The latter one is located in adjoining deep site nearby the to the entrance channel for substrate into active site.

Models MolecularaminophosphonatesMolecular modelStereochemistryPhosphorous AcidsGlycinePhenylalanine ammonia-lyase010402 general chemistryRing (chemistry)01 natural sciencesBiochemistryAmmoniachemistry.chemical_compoundStructure-Activity RelationshipPAL inhibitorsEnzyme InhibitorsPhenylalanine Ammonia-LyaseSolanum tuberosumchemistry.chemical_classificationbiologymolecular modeling010405 organic chemistryActive siteSubstrate (chemistry)General MedicineLyase0104 chemical sciencesEnzymechemistrybiology.proteinBiochimie
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α-Aminophosphonates, Phosphinates, and Phosphine Oxides as Extraction and Precipitation Agents for Rare Earth Metals, Thorium, and Uranium : A Review

2022

α-Aminophosphonates, -phosphinates, and -phosphine oxides are a group of organophosphorus compounds that were investigated as extraction agents for rare earth (RE) metals and actinoids for the first time in the 1960s. However, more systematic investigations of their extraction properties towards REs and actinoids were not started until the 2010s. Indeed, recent studies have shown that these α-amino-functionalized compounds can outperform the commercial organophosphorus extraction agents in RE separations. They have also proven to be very efficient extraction and precipitation agents for recovering Th and U from RE concentrates. These actinoids coexist with REs in some of the commercially im…

actinoidssaostusseparationα-aminophosphinatesrare earth elementsprecipitationharvinaiset maametallitrecoveryuuttoerotusmenetelmätα-aminophosphine oxidesextractionfosforiα-aminophosphonates
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Enantiodifferentiation of N-benzyloxycarbonylaminophosphonic and phosphinic acids and their esters using cyclodextrins by means of capillary electrop…

2005

Capillary electrophoresis was successfully applied for separation of the enantiomers of N-benzyloxycarbonyl-alpha-aminophosphonic and alpha-aminophosphinic acids as well as their ethyl and phenyl monoesters with the use of a range of commercially available cyclodextrins (alpha, beta and hydroxypropyl-gamma-cyclodextrins) as chiral selectors. The dependence of effectiveness of separation on type and concentration of these chiral selectors as well as on pH of background electrolyte was examined in some detail.

aminophosphinatesaminophosphonatesOrganophosphonatescapillary electrophoresisElectrolyteBiochemistryAnalytical ChemistryInclusion compoundchemistry.chemical_compoundCapillary electrophoresisOrganic chemistrychemistry.chemical_classificationChromatographycyclodextrinsMolecular StructureCyclodextrinChemistryOrganic ChemistryenantiodiscriminationElectrophoresis CapillaryReproducibility of ResultsEstersStereoisomerismGeneral MedicineHydrogen-Ion ConcentrationPhosphinic AcidsPhosphinic AcidsPhase compositionEnantiomerJournal of Chromatography A
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Unusual activity pattern of leucine aminopeptidase inhibitors based on phosphorus containing derivatives of methionine and norleucine

2010

Ligands containing bulky aliphatic P1 residues exhibit a high affinity towards cytosolic leucine aminopeptidase, a bizinc protease of biomedical significance. According to this specificity, a series of phosphonic and phosphinic compounds have been put forward as novel putative inhibitors of the enzyme. These phosphonic and phosphinic compounds were derivatives of methionine and norleucine as both single amino acids and dipeptides. The designed inhibitors were synthesised and tested towards the peptidase isolated from porcine kidneys using an improved separation procedure affording superior homogeneity. Unexpectedly, organophosphorus derivatives of methionine and norleucine exhibited moderat…

aminophosphinatesaminophosphonatesSwineStereochemistrymedicine.medical_treatmentNorleucinenorleucineKidneyAminopeptidaseLeucyl Aminopeptidasechemistry.chemical_compoundinhibitorsDrug DiscoverymedicineAnimalsEnzyme Inhibitorscytosolic leucine aminopeptidasemethioninePharmacologychemistry.chemical_classificationProteaseMethionineMolecular StructurePhosphorusphosphorus containing dipeptidesGeneral MedicineAmino acidEnzyme ActivationCytosolEnzymechemistryBiochemistryLeucineJournal of Enzyme Inhibition and Medicinal Chemistry
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Synthesis of fluorescent (benzyloxycarbonylamino)(aryl)methylphosphonates

2014

The synthesis of a library of structurally variable aromatic esters of (benzyloxycarbonylamino)(aryl)methylphosphonic acids is described by means of the Oleksyszyn reaction. The library was enlarged by the application of a Suzuki–Miayra approach and by preparation of mixed esters.

aminophosphonatesArylOrganic ChemistryorganophosphorusFluorescenceFull Research Paperlcsh:QD241-441ChemistryZ-aminophosphonate esterschemistry.chemical_compoundlcsh:Organic chemistrychemistryOrganic chemistrylcsh:Qlcsh:ScienceOleksyszyn reactionBeilstein Journal of Organic Chemistry
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α-Aminoalkylphosphonates as a tool in experimental optimisation of P1 side chain shape of potential inhibitors in S1 pocket of leucine- and neutral a…

2005

Abstract The synthesis and biological activity studies of the series of structurally different α-aminoalkylphosphonates were performed in order to optimise the shape of the side chain of the potential inhibitors in S1 pocket of leucine aminopeptidase [E.C.3.4.11.1]. Analysis of a series of compounds with aromatic, aliphatic and alicyclic P1 side chains enabled to find out the structural features, optimal for that fragment of inhibitors of LAP. The most active among all investigated compounds were the phosphonic analogues of homo-tyrosine ( K i  = 120 nM) and homo-phenylalanine ( K i  = 140 nM), which even as racemic mixtures were better inhibitors in comparison with the best till now-phosph…

aminophosphonatesStereochemistryleucine aminopeptidaseOrganophosphonatesKidneyAminopeptidasesChemical synthesisAminopeptidaseLeucyl AminopeptidaseStructure-Activity RelationshipAlicyclic compoundLeucineDrug DiscoverySide chainAnimalsLeucyl aminopeptidasePharmacologychemistry.chemical_classificationBinding SitesMolecular StructureAminopeptidase NOrganic ChemistryBiological activityGeneral MedicineHydrogen-Ion Concentrationaminopeptidase NinhibitorEnzymechemistryLeucineEuropean Journal of Medicinal Chemistry
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Dipeptide analogues of fluorinated aminophosphonic acid sodium salts as moderate competitive inhibitors of cathepsin C

2023

In this paper, we present the solvolysis reaction of dipeptide analogues of fluorinated aminophosphonates with simultaneous quantitative deprotection of the amino group. To the best of our knowledge, this work is the first reported example of the application of fluorinated aminophosphonates in cathepsin C inhibition studies. The new molecules show moderate inhibition of the cathepsin C enzyme, which opens the door to consider them as potential therapeutic agents. Overall, our findings provide a new avenue for the development of fluorinated aminophosphonate-based inhibitors. This article is part of the thematic issue "Organophosphorus chemistry: from model to application".

aminophosphonatescathepsin CfluorinesolvolysisdipeptideBeilstein Journal of Organic Chemistry
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