Search results for "Microbicides for sexually transmitted diseases"

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Linear biocompatible glyco-polyamidoamines as dual action mode virus infection inhibitors with potential as broad-spectrum microbicides for sexually …

2016

AbstractThe initial steps of viral infections are mediated by interactions between viral proteins and cellular receptors. Blocking the latter with high-affinity ligands may inhibit infection. DC-SIGN, a C-type lectin receptor expressed by immature dendritic cells and macrophages, mediates human immunodeficiency virus (HIV) infection by recognizing mannose clusters on the HIV-1 gp120 envelope glycoprotein. Mannosylated glycodendrimers act as HIV entry inhibitors thanks to their ability to block this receptor. Previously, an amphoteric, but prevailingly cationic polyamidoamine named AGMA1 proved effective as infection inhibitor for several heparan sulfate proteoglycan-dependent viruses, such …

0301 basic medicineHerpesvirus 2 HumanSexually Transmitted DiseasesMannoseBiocompatible MaterialsHIV Infections010402 general chemistrymedicine.disease_causeAntiviral Agents01 natural sciencesantivirals polymers glyco-conjugates click-chemistry HIV HPVArticleVirus03 medical and health scienceschemistry.chemical_compoundPolyaminesmedicineHumansReceptorchemistry.chemical_classificationHuman papillomavirus 16MultidisciplinarybiologyLectinHeparan sulfateVirology0104 chemical sciencesMolecular WeightMicrobicides for sexually transmitted diseases030104 developmental biologyHerpes simplex viruschemistryHIV-1biology.proteinBiological AssayGlycoproteinMannoseHeLa CellsScientific Reports
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Polyethylenimine is a strong inhibitor of human papillomavirus and cytomegalovirus infection.

2012

ABSTRACT Polyethylenimines are cationic polymers with potential as delivery vectors in gene therapy and with proven antimicrobial activity. However, the antiviral activity of polyethylenimines has not been addressed in detail thus far. We have studied the inhibitory effects of a linear 25-kDa polyethylenimine on infections with human papillomaviruses and human cytomegaloviruses. Preincubation of cells with polyethylenimine blocked primary attachment of both viruses to cells, resulting in a significant reduction of infection. In addition, the dissemination of human cytomegalovirus in culture cells was efficiently reduced by recurrent administration of polyethylenimine. Polyethylenimine conce…

Human cytomegalovirusKeratinocytesGenetic enhancementCongenital cytomegalovirus infectionCytomegalovirusVirus AttachmentBiologyAntiviral Agentschemistry.chemical_compoundCationsChlorocebus aethiopsmedicineCytotoxic T cellAnimalsHumansPolyethyleneiminePharmacology (medical)Human papillomavirusPapillomaviridaePharmacologyPolyethyleniminePapillomavirus InfectionsFibroblastsAntimicrobialmedicine.diseaseVirologyMicrobicides for sexually transmitted diseasesInfectious DiseasesHEK293 CellschemistryMicroscopy FluorescenceOrgan SpecificityCOS CellsCytomegalovirus InfectionsHeLa CellsAntimicrobial agents and chemotherapy
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