Viscum album neutralizes tumor-induced immunosuppression in a human in vitro cell model.
Tumor cells have the capacity to secrete immunosuppressive substances in order to diminish dendritic cell (DC) activity and thereby escape from immune responses. The impact of mistletoe (Viscum album) extracts (VAE), which are frequently used as an additive anti-cancer therapy to stimulate the immun...
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doaj-5d54ff34a1f445a7a812a2a82fb433772020-11-25T01:14:10ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-01127e018155310.1371/journal.pone.0181553Viscum album neutralizes tumor-induced immunosuppression in a human in vitro cell model.Carmen SteinbornAmy Marisa KlemdAnn-Sophie Sanchez-CampilloSophie RiegerMarieke ScheffenBarbara SauerManuel Garcia-KäuferKonrad UrechMarie FolloAnnekathrin ÜckerGunver Sophia KienleRoman HuberCarsten GründemannTumor cells have the capacity to secrete immunosuppressive substances in order to diminish dendritic cell (DC) activity and thereby escape from immune responses. The impact of mistletoe (Viscum album) extracts (VAE), which are frequently used as an additive anti-cancer therapy to stimulate the immune response, is still unknown. Using a human cellular system, the impact of two different VAE (VAEA + VAEI) on the maturation of human dendritic cells and on T cell function has been investigated using flow cytometry, automated fluorescence microscopy and cytokine bead array assays. Furthermore, we examined whether VAEI was able to counteract tumor-induced immunosuppression within this cellular system using a renal cancer cell model. The role of mistletoe lectin (ML) was analyzed using ML-specific antibodies and ML-depleted VAEI. VAEI and VAEA augmented the maturation of dendritic cells. VAEI abrogated tumor-induced immunosuppression of dendritic cells and both processes were partially mediated by ML since ML-depleted VAEI and ML-specific antibodies almost neutralized the rehabilitative effects of VAEI on DC maturation. Using these settings, co-culture experiments with purified CD4+ T cells had no influence on T cell proliferation and activation but did have an impact on IFN-γ secretion. The study provides a potential mode-of-action of VAE as an additive cancer therapy based on immunomodulatory effects. However, the impact on the in vivo situation has to be evaluated in further studies.http://europepmc.org/articles/PMC5515458?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Carmen Steinborn Amy Marisa Klemd Ann-Sophie Sanchez-Campillo Sophie Rieger Marieke Scheffen Barbara Sauer Manuel Garcia-Käufer Konrad Urech Marie Follo Annekathrin Ücker Gunver Sophia Kienle Roman Huber Carsten Gründemann |
spellingShingle |
Carmen Steinborn Amy Marisa Klemd Ann-Sophie Sanchez-Campillo Sophie Rieger Marieke Scheffen Barbara Sauer Manuel Garcia-Käufer Konrad Urech Marie Follo Annekathrin Ücker Gunver Sophia Kienle Roman Huber Carsten Gründemann Viscum album neutralizes tumor-induced immunosuppression in a human in vitro cell model. PLoS ONE |
author_facet |
Carmen Steinborn Amy Marisa Klemd Ann-Sophie Sanchez-Campillo Sophie Rieger Marieke Scheffen Barbara Sauer Manuel Garcia-Käufer Konrad Urech Marie Follo Annekathrin Ücker Gunver Sophia Kienle Roman Huber Carsten Gründemann |
author_sort |
Carmen Steinborn |
title |
Viscum album neutralizes tumor-induced immunosuppression in a human in vitro cell model. |
title_short |
Viscum album neutralizes tumor-induced immunosuppression in a human in vitro cell model. |
title_full |
Viscum album neutralizes tumor-induced immunosuppression in a human in vitro cell model. |
title_fullStr |
Viscum album neutralizes tumor-induced immunosuppression in a human in vitro cell model. |
title_full_unstemmed |
Viscum album neutralizes tumor-induced immunosuppression in a human in vitro cell model. |
title_sort |
viscum album neutralizes tumor-induced immunosuppression in a human in vitro cell model. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2017-01-01 |
description |
Tumor cells have the capacity to secrete immunosuppressive substances in order to diminish dendritic cell (DC) activity and thereby escape from immune responses. The impact of mistletoe (Viscum album) extracts (VAE), which are frequently used as an additive anti-cancer therapy to stimulate the immune response, is still unknown. Using a human cellular system, the impact of two different VAE (VAEA + VAEI) on the maturation of human dendritic cells and on T cell function has been investigated using flow cytometry, automated fluorescence microscopy and cytokine bead array assays. Furthermore, we examined whether VAEI was able to counteract tumor-induced immunosuppression within this cellular system using a renal cancer cell model. The role of mistletoe lectin (ML) was analyzed using ML-specific antibodies and ML-depleted VAEI. VAEI and VAEA augmented the maturation of dendritic cells. VAEI abrogated tumor-induced immunosuppression of dendritic cells and both processes were partially mediated by ML since ML-depleted VAEI and ML-specific antibodies almost neutralized the rehabilitative effects of VAEI on DC maturation. Using these settings, co-culture experiments with purified CD4+ T cells had no influence on T cell proliferation and activation but did have an impact on IFN-γ secretion. The study provides a potential mode-of-action of VAE as an additive cancer therapy based on immunomodulatory effects. However, the impact on the in vivo situation has to be evaluated in further studies. |
url |
http://europepmc.org/articles/PMC5515458?pdf=render |
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