Search results for "Antimalarial"

showing 10 items of 58 documents

Systemic lupus erythematosus and bullous pemphigoid with dramatic response to dapsone

2017

Patient: Female, 11 Final Diagnosis: Bullous pemphigoid in systemic lupus erythematosus Symptoms: Bullous lupus • photosensitive rash • synovitis Medication:— Clinical Procedure: Pharmacological treatment Specialty: Rheumatology Objective: Unusual clinical course Background: Bullous pemphigoid is an autoimmune blistering disease, with relapses, isolated or associated with other autoimmune diseases such as systemic lupus erythematosus (SLE). Joint manifestations rapidly respond to small or moderate doses of corticosteroids, whereas skin manifestations usually respond to antimalarial drugs. Case Report: We describe the clinical case of an 11-year-old girl with SLE. She showed bullous skin les…

Pemphigoidmedicine.medical_specialtyAntimalarials; Child; Dapsone; Female; Humans; Lupus Erythematosus Systemic; Pemphigoid BullousMild proteinuriaArthritisDapsoneAntimalarials030207 dermatology & venereal diseases03 medical and health sciences0302 clinical medicineSettore MED/38 - Pediatria Generale E SpecialisticaPrednisoneimmune system diseasesPemphigoid BullousmedicineHumansChildskin and connective tissue diseases030203 arthritis & rheumatologyLupus erythematosusintegumentary systembusiness.industryMedicine (all)Dapsone; Lupus erythematosus systemic; Pemphigoid bullous; Medicine (all)ArticlesGeneral Medicinemedicine.diseasePemphigoid bullouDermatologyeye diseasesLupus erythematosus systemicFemaleBullous pemphigoidsense organsbusinessDapsonemedicine.drugPediatric population
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Discovery of new antimalarial compounds by use of molecular connectivity techniques.

1999

Abstract Molecular connectivity has been applied to the search for new compounds with antimalarial activity. Linear discriminant analysis and connectivity functions were used to select several potentially suitable drugs which were tested for antimalarial properties by use of an in-vitro micro test which estimates parasite growth by measurement of incorporation of [3H]hypoxanthine. Hexetidine stands out among the compounds selected. Activity assays were performed with Plasmodium falciparum passou and 3CD7 strains, for which the IC50 values (doses resulting in 50% inhibition) were 320 and 400 ng mL−1 respectively. These results are comparable with those obtained for quinine chlorhydrate (IC50…

PharmacologyDrugQuininebiologyStereochemistrymedia_common.quotation_subjectPlasmodium falciparumPharmaceutical SciencePlasmodium falciparumBiological activityHexetidineChloroquine sulphatebiology.organism_classificationchemistry.chemical_compoundAntimalarialsBiochemistrychemistryDrug DesignmedicineAnimalsHumansIC50Hypoxanthinemedicine.drugmedia_commonThe Journal of pharmacy and pharmacology
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Prenylated Flavonoids from the Roots of Tephrosia rhodesica

2020

Five new compounds—rhodimer (1), rhodiflavan A (2), rhodiflavan B (3), rhodiflavan C (4), and rhodacarpin (5)—along with 16 known secondary metabolites, were isolated from the CH2Cl2–CH3OH (1:1) extract of the roots of Tephrosia rhodesica. They were identified by NMR spectroscopic, mass spectrometric, X-ray crystallographic, and ECD spectroscopic analyses. The crude extract and the isolated compounds 2–5, 9, 15, and 21 showed activity (100% at 10 μg and IC50 = 5–15 μM) against the chloroquine-sensitive (3D7) strain of Plasmodium falciparum. peerReviewed

Plasmodium falciparumPharmaceutical Sciencemolecular structurehernekasvitCrystallography X-Ray01 natural sciencesPlant RootsArticleAnalytical ChemistryAntimalarialsflavonoiditPrenylationDrug DiscoveryBiological sciencesBiologynuclear magnetic resonance spectroscopyPharmacologyFlavonoidsPrenylationantimikrobiset yhdisteetOrganisk kemiChromatographybiologyStrain (chemistry)Molecular Structure010405 organic chemistryTephrosiaChemistrySpectrum AnalysisPharmacology. TherapycarbonOrganic ChemistryPlasmodium falciparumbiology.organism_classificationcircular dichroism spectroscopyluonnonaineetMass spectrometric0104 chemical sciences010404 medicinal & biomolecular chemistryChemistryComplementary and alternative medicineTephrosiaMolecular MedicineSpectrum analysismetabolism
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Multi-output Model with Box-Jenkins Operators of Quadratic Indices for Prediction of Malaria and Cancer Inhibitors Targeting Ubiquitin- Proteasome Pa…

2016

The ubiquitin-proteasome pathway (UPP) is the primary degradation system of short-lived regulatory proteins. Cellular processes such as the cell cycle, signal transduction, gene expression, DNA repair and apoptosis are regulated by this UPP and dysfunctions in this system have important implications in the development of cancer, neurodegenerative, cardiac and other human pathologies. UPP seems also to be very important in the function of eukaryote cells of the human parasites like Plasmodium falciparum, the causal agent of the neglected disease Malaria. Hence, the UPP could be considered as an attractive target for the development of compounds with Anti-Malarial or Anti-cancer properties. R…

Proteasome Endopeptidase ComplexDNA repairDatabases PharmaceuticalAntineoplastic AgentsComputational biologyBioinformatics01 natural sciencesBiochemistryAntimalarialsUbiquitinNeoplasmsDrug DiscoveryHumansMolecular Targeted TherapyMolecular BiologybiologyDrug discoveryUbiquitinComputational BiologyCell BiologyGeneral MedicineCell cyclechEMBL0104 chemical sciencesMalaria010404 medicinal & biomolecular chemistryProteasomeProteolysisbiology.proteinSignal transductionFunction (biology)Current proteinpeptide science
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New active drugs against liver stages of Plasmodium predicted by molecular topology.

2008

ABSTRACT We conducted a quantitative structure-activity relationship (QSAR) study based on a database of 127 compounds previously tested against the liver stage of Plasmodium yoelii in order to develop a model capable of predicting the in vitro antimalarial activities of new compounds. Topological indices were used as structural descriptors, and their relation to antimalarial activity was determined by using linear discriminant analysis. A topological model consisting of two discriminant functions was created. The first function discriminated between active and inactive compounds, and the second identified the most active among the active compounds. The model was then applied sequentially t…

Quantitative structure–activity relationshipStereochemistryAntiparasiticmedicine.drug_classModels BiologicalAuto-immunity transplantation and immunotherapy [N4i 4]AntimalarialsMiceStructure-Activity RelationshipParasitic Sensitivity Testsparasitic diseasesmedicineAnimalsHumansStructure–activity relationshipPharmacology (medical)PharmacologybiologyPoverty-related infectious diseases [N4i 3]Plasmodium falciparumPlasmodium yoeliibiology.organism_classificationIn vitroInfectious Diseasesmedicine.anatomical_structureLiverBiochemistrySusceptibilityHepatocyteHepatocytesMicrobial pathogenesis and host defense [UMCN 4.1]Infection and autoimmunity [NCMLS 1]Plasmodium yoeliiFunction (biology)Immunity infection and tissue repair [NCMLS 1]
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Biowaiver monographs for immediate release solid oral dosage forms: quinidine sulfate.

2009

Literature data are reviewed relevant to the decision to allow a waiver of in vivo bioequivalence (BE) testing for the approval of new multisource and reformulated immediate release (IR) solid oral dosage forms containing quinidine sulfate. Quinidine sulfate's solubility and permeability, its therapeutic use and index, pharmacokinetics, excipient interactions and reported BE/bioavailability (BA) problems were taken into consideration. The available data are not fully conclusive, but do suggest that quinidine sulfate is highly soluble and moderately to highly permeable and would likely be assigned to BCS Class I (or at worst BCS III). In view of the inconclusiveness of the data and, more imp…

QuinidineDosage FormsChemistryBiopharmaceuticsPharmaceutical ScienceExcipientAdministration OralBiological AvailabilityPharmacologyBioequivalenceQuinidineDosage formPermeabilityBioavailabilityExcipientsAntimalarialsPharmacokineticsQuinidine SulfateSolubilityTherapeutic EquivalencymedicineHumansAnti-Arrhythmia AgentsDrug Approvalmedicine.drugJournal of pharmaceutical sciences
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Antimalarial activity of abietane ferruginol analogues possessing a phthalimide group.

2014

The abietane-type diterpenoid (+)-ferruginol, a bioactive compound isolated from New Zealand’s Miro tree (Podocarpus ferruginea), displays relevant pharmacological properties, including antimicrobial, cardioprotective, anti-oxidative, anti-plasmodial, leishmanicidal, anti-ulcerogenic, anti-inflammatory and anticancer. Herein, we demonstrate that ferruginol (1) and some phthalimide containing analogues 2–12 have potential antimalarial activity. The compounds were evaluated against malaria strains 3D7 and K1, and cytotoxicity was measured against a mammalian cell line panel. A promising lead, compound 3, showed potent activity with an EC50 = 86 nM (3D7 strain), 201 nM (K1 strain) and low cyto…

StereochemistryClinical BiochemistryPlasmodium falciparumPharmaceutical SciencePhthalimidesCHO CellsBiochemistryPhthalimidechemistry.chemical_compoundAntimalarialsCricetulusCricetinaeDrug DiscoveryAnimalsHumansCytotoxicityMolecular BiologyAbietaneChemistryPlant ExtractsOrganic ChemistryHep G2 CellsAntimicrobialTerpenoidBioactive compoundFerruginolAbietanesMolecular MedicineDiterpeneBioorganicmedicinal chemistry letters
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Synthesis and study of cytotoxic activity of 1,2,4-trioxane- and egonol-derived hybrid molecules against Plasmodium falciparum and multidrug-resistan…

2014

Abstract Malaria and cancer cause the death of millions of people every year. To combat these two diseases, it is important that new pharmaceutically active compounds have the ability to overcome multidrug resistance in cancer and Plasmodium falciparum strains. In search of effective anti-cancer and anti-malaria hybrids that possess improved properties compared to their parent compounds, a series of novel 1,2,4-trioxane-based hybrids incorporating egonol and/or ferrocene fragments were synthesized and tested in vitro against P. falciparum strains, CCRF–CEM cells and the multidrug-resistant P-glycoprotein-over-expressing CEM/ADR5000 cells. The most active compounds against P. falciparum stra…

StereochemistryMetallocenesPlasmodium falciparumAntineoplastic Agentschemistry.chemical_compoundAntimalarialsHeterocyclic CompoundsDrug DiscoverymedicineCytotoxic T cellHumansCell LineageFerrous CompoundsArtemisininMalaria FalciparumCytotoxicityIC50BenzofuransPharmacologyLeukemiabiologyOrganic ChemistryPlasmodium falciparumGeneral Medicinemedicine.diseasebiology.organism_classificationDrug Resistance MultipleMultiple drug resistanceLeukemiachemistryBiochemistry124-TrioxaneDrug Resistance Neoplasmmedicine.drugEuropean journal of medicinal chemistry
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Joziknipholones A and B: The First Dimeric Phenylanthraquinones, from the Roots ofBulbine frutescens

2007

From the roots of the African plant Bulbine frutescens (Asphodelaceae), two unprecedented novel dimeric phenylanthraquinones, named joziknipholones A and B, possessing axial and centrochirality, were isolated, together with six known compounds. Structural elucidation of the new metabolites was achieved by spectroscopic and chiroptical methods, by reductive cleavage of the central bond between the monomeric phenylanthraquinone and -anthrone portions with sodium dithionite, and by quantum chemical CD calculations. Based on the recently revised absolute axial configuration of the parent phenylanthraquinones, knipholone and knipholone anthrone, the new dimers were attributed to possess the P-co…

StereochemistryPlasmodium falciparumDrug ResistanceAnthraquinonesStereoisomerismPlant RootsAnthroneAnthraquinoneCatalysisSodium dithioniteAntimalarialsMicechemistry.chemical_compoundCell Line TumorLiliaceaeAnimalsAsphodelaceaeLeukemia L5178Plants MedicinalMolecular StructurebiologySpectrum AnalysisOrganic ChemistryDithioniteChloroquineStereoisomerismPlasmodium falciparumGeneral Chemistrybiology.organism_classificationAntineoplastic Agents PhytogenicRatschemistryQuantum TheoryBulbine frutescensChirality (chemistry)DimerizationAlgorithmsChemistry - A European Journal
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Rotenoids, Flavonoids, and Chalcones from the Root Bark of Millettia usaramensis.

2015

Five new compounds, 4-O-geranylisoliquiritigenin (1), 12-dihydrousararotenoid B (2), 12-dihydrousararotenoid C (3), 4'-O-geranyl-7-hydroxyflavanone (4), and 4'-O-geranyl-7-hydroxydihydroflavanol (5), along with 12 known natural products (6-17) were isolated from the CH2Cl2/MeOH (1:1) extract of the root bark of Millettia usaramensis ssp. usaramensis by chromatographic separation. The purified metabolites were identified by NMR spectroscopic and mass spectrometric analyses, whereas their absolute configurations were established on the basis of chiroptical data and in some cases also by X-ray crystallography. The crude extract was moderately active (IC50 = 11.63 μg/mL) against the ER-negative…

StereochemistryPlasmodium falciparumMolecular ConformationPharmaceutical Scienceroot barkCrystallography X-Ray01 natural sciencesMillettiaAnalytical ChemistryMillettia usaramensischemistry.chemical_compoundAntimalarialsChalconesDrug DiscoveryPlant BarkHumansta116IC50Nuclear Magnetic Resonance Biomolecularta317metabolitesPharmacologyFlavonoidsChromatographyNatural productbiologyMolecular Structure010405 organic chemistryChemistryPlant ExtractsOrganic ChemistryPlasmodium falciparumChloroquinebiology.organism_classification0104 chemical sciencesMillettia010404 medicinal & biomolecular chemistryChromatographic separationHEK293 CellsComplementary and alternative medicinevisual_artFlavanonesvisual_art.visual_art_mediumPlant BarkMolecular MedicineBarkrotenoidsJournal of natural products
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