Human IgM monoclonal antibodies block HIV-transmission to immune cells in cervico-vaginal tissues and across polarized epithelial cells in vitro
Abstract The importance of natural IgM antibodies in protection against infections is still emerging and these antibodies have a potential role in the maintenance of homeostasis through clearance of apoptotic bodies, complement-dependent mechanisms, inflammation and exclusion of misfolded proteins....
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2018-07-01
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Online Access: | https://doi.org/10.1038/s41598-018-28242-y |
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doaj-db3d020458384367b482041f7b42c9a32020-12-08T03:43:09ZengNature Publishing GroupScientific Reports2045-23222018-07-018111210.1038/s41598-018-28242-yHuman IgM monoclonal antibodies block HIV-transmission to immune cells in cervico-vaginal tissues and across polarized epithelial cells in vitroClaudia Devito0Rada Ellegård1Tina Falkeborn2Lennart Svensson3Mats Ohlin4Marie Larsson5Kristina Broliden6Jorma Hinkula7Department of Virology, Swedish Institute for Infectious Disease ControlLinköping University, Department of Clinical and Experimental Medicine, Division of Molecular VirologyLinköping University, Department of Clinical and Experimental Medicine, Division of Molecular VirologyLinköping University, Department of Clinical and Experimental Medicine, Division of Molecular VirologyDepartment of Immunotechnology, Lund UniversityLinköping University, Department of Clinical and Experimental Medicine, Division of Molecular VirologyDepartment of Medicine Solna, Unit of Infectious Diseases B2:00, Center for Molecular Medicine, Karolinska University Hospital, Karolinska InstitutetLinköping University, Department of Clinical and Experimental Medicine, Division of Molecular VirologyAbstract The importance of natural IgM antibodies in protection against infections is still emerging and these antibodies have a potential role in the maintenance of homeostasis through clearance of apoptotic bodies, complement-dependent mechanisms, inflammation and exclusion of misfolded proteins. Natural IgM act as a first line of defence against unknown hazardous factors and are present in most vertebrates. We investigated the functional capacity of anti-HIV-1 IgM monoclonal antibodies, from a combinatorial Fab library derived from healthy individuals, and evaluated their protective role in inhibiting HIV-1 in vitro when passing across the human mucosal epithelial barrier. Primary HIV-1 isolates were efficiently transmitted over the tight polarized epithelial cells when added to their apical surface. Efficient inhibition of HIV-1 transmission was achieved when anti-HIV-1 IgM monoclonal antibodies were added to the basolateral side of the cells. Two of these human IgM MoAbs had the ability to neutralize HIV and reduced infection of dendritic cells in primary cervico-vaginal tissue biopsies in vitro. This indicates a potential role of natural IgM antibodies in the reduction of HIV-1 transmission in mucosal tissues and improve our understanding of how natural IgM antibodies against a neutralizing epitope could interfere with viral transmission.https://doi.org/10.1038/s41598-018-28242-y |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Claudia Devito Rada Ellegård Tina Falkeborn Lennart Svensson Mats Ohlin Marie Larsson Kristina Broliden Jorma Hinkula |
spellingShingle |
Claudia Devito Rada Ellegård Tina Falkeborn Lennart Svensson Mats Ohlin Marie Larsson Kristina Broliden Jorma Hinkula Human IgM monoclonal antibodies block HIV-transmission to immune cells in cervico-vaginal tissues and across polarized epithelial cells in vitro Scientific Reports |
author_facet |
Claudia Devito Rada Ellegård Tina Falkeborn Lennart Svensson Mats Ohlin Marie Larsson Kristina Broliden Jorma Hinkula |
author_sort |
Claudia Devito |
title |
Human IgM monoclonal antibodies block HIV-transmission to immune cells in cervico-vaginal tissues and across polarized epithelial cells in vitro |
title_short |
Human IgM monoclonal antibodies block HIV-transmission to immune cells in cervico-vaginal tissues and across polarized epithelial cells in vitro |
title_full |
Human IgM monoclonal antibodies block HIV-transmission to immune cells in cervico-vaginal tissues and across polarized epithelial cells in vitro |
title_fullStr |
Human IgM monoclonal antibodies block HIV-transmission to immune cells in cervico-vaginal tissues and across polarized epithelial cells in vitro |
title_full_unstemmed |
Human IgM monoclonal antibodies block HIV-transmission to immune cells in cervico-vaginal tissues and across polarized epithelial cells in vitro |
title_sort |
human igm monoclonal antibodies block hiv-transmission to immune cells in cervico-vaginal tissues and across polarized epithelial cells in vitro |
publisher |
Nature Publishing Group |
series |
Scientific Reports |
issn |
2045-2322 |
publishDate |
2018-07-01 |
description |
Abstract The importance of natural IgM antibodies in protection against infections is still emerging and these antibodies have a potential role in the maintenance of homeostasis through clearance of apoptotic bodies, complement-dependent mechanisms, inflammation and exclusion of misfolded proteins. Natural IgM act as a first line of defence against unknown hazardous factors and are present in most vertebrates. We investigated the functional capacity of anti-HIV-1 IgM monoclonal antibodies, from a combinatorial Fab library derived from healthy individuals, and evaluated their protective role in inhibiting HIV-1 in vitro when passing across the human mucosal epithelial barrier. Primary HIV-1 isolates were efficiently transmitted over the tight polarized epithelial cells when added to their apical surface. Efficient inhibition of HIV-1 transmission was achieved when anti-HIV-1 IgM monoclonal antibodies were added to the basolateral side of the cells. Two of these human IgM MoAbs had the ability to neutralize HIV and reduced infection of dendritic cells in primary cervico-vaginal tissue biopsies in vitro. This indicates a potential role of natural IgM antibodies in the reduction of HIV-1 transmission in mucosal tissues and improve our understanding of how natural IgM antibodies against a neutralizing epitope could interfere with viral transmission. |
url |
https://doi.org/10.1038/s41598-018-28242-y |
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