Optimizing Plantibodies for Trapping HIV and HSV in Cervicovaginal Mucus
Optimizing Plantibodies for Trapping HIV and HSV in Cervicovaginal Mucus
批准号:
8706777
负责人:
Samuel Lai
金额:
$18.13万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:
至
关键词:
Acquired Immunodeficiency SyndromeAdhesivesAffinityAnimalsAntibodiesBindingBiological AssayBloodCellsClinicalComplementComplement ActivationDiffuseDoseDrug FormulationsEpithelialEpitheliumEpitopesFailureFiberFilmFrequenciesGelGenital systemHIVHerpesvirus 1HumanImageImmuneImmune systemImmunoglobulin AImmunoglobulin GIn VitroInfectionInfection preventionInstructionLabelLymphMacacaMeasuresMethodsModelingMonoclonal AntibodiesMucinsMucous body substanceMusPatternPlantibodiesPlantsPredispositionPreventionRegimenResearch PersonnelSafetySecretory Immunoglobulin ASeminal PlasmaSeminal fluidSimplexvirusSurfaceTestingTimeToxic effectVaginaVaginal RingVaginal delivery procedureViralVirionVirusVirus DiseasesVirus-like particleWorkantibody-dependent cell cytotoxicitybasecervicovaginalcrosslinkdesignexperiencegenital herpesglycosylationimmune functionin vivomacrophagemicrobicideneutralizing monoclonal antibodiesnext generationparticlepathogenpolymeric IgApreventvaginal microbicidevaginal transmissionvector
中文摘要
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英文摘要
PROJECT SUMMARY (See Instructions):
For vaginal transmission, viruses must penetrate mucus secretions to reach target cells; we recently found that Herpes Simplex Virus (HSV) and HIV readily diffuses through human cervicovaginal mucus. Most antibodies (Ab) produced by the immune system are secreted into mucus (not blood or lymph), and topical IgG provides robust protection against vaginal viral challenges. In addition to well-known antibody functions (e.g., neutralization, complement activation, opsonization), an important yet little recognized effector function of IgG is to trap viruses in mucus. IgG bound to a virus surface may form multiple low-affinity adhesive crosslinks between the virus and the mucus gel. A sufficient number of these low-affinity crosslinks, possibly at sub-neutralizing IgG concentrations, may permanently trap the virus in the mucus gel. Our pilot observations indicate that remarkably low concentrations of specific IgGI can trap HSV-1 and virus-like particles that otherwise rapidly penetrate mucus gels. Trapping reduces the flux of virus that reaches target cells, and facilitates inactivation and clearance by additional protective mechanisms. Trapping viruses in mucus before they can reach target cells is likely essential to protect against viruses that, once established, cause incurable infections. It is likely that the most protective antibodies will be those that not only neutralize virions by blocking viral entry into target cells, but also are highly effective at trapping virions in mucus. This potential IgG trapping function in mucus has been largely unrecognized because most studies of IgG activity have not been performed in mucus geis. Hence, all monoclonal antibodies (MAbs) developed to date has been developed without considering this immune function in mucus. In this proposal, we seek to identify themost potent plant-produced anti-viral IgGs (PAbs) for trapping HSV and HIV in human cervicovaginal mucus as well as in mixtures of mucus and semen (Aim 1). We will also compare the distribution of PAbs delivered by vaginal ring vs. film to identify the delivery method that provides complete coverage of susceptible epithelial surface at the lowest PAb dose (Aim 2). Based on Aims 1 & 2, we will test for protection against vaginal HSV challenge in vivo, as well as evaluate the safety of the PAbs and delivery vehicle (Aim 3).
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依托单位:
海外基金