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Pro-tumor Tfh2 cells induce detrimental IgG4 production and PGE(2)-dependent IgE inhibition in pancreatic cancer

BACKGROUND: Pancreatic ductal adenocarcinoma (PDAC) has a dismal prognosis and it is characterized by predominant pro-tumor Th2-type inflammation. T follicular helper (Tfh) cells are relevant immunoregulators in cancer, and often correlate with better survival. How the Th2-skewed microenvironment in...

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Autores principales: De Monte, Lucia, Clemente, Francesca, Ruggiero, Eliana, Pini, Raffaella, Ceraolo, Maria Grazia, Schiavo Lena, Marco, Balestrieri, Chiara, Lazarevic, Dejan, Belfiori, Giulio, Crippa, Stefano, Balzano, Gianpaolo, Falconi, Massimo, Doglioni, Claudio, Bonini, Chiara, Reni, Michele, Protti, Maria Pia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10542011/
https://www.ncbi.nlm.nih.gov/pubmed/37776595
http://dx.doi.org/10.1016/j.ebiom.2023.104819
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author De Monte, Lucia
Clemente, Francesca
Ruggiero, Eliana
Pini, Raffaella
Ceraolo, Maria Grazia
Schiavo Lena, Marco
Balestrieri, Chiara
Lazarevic, Dejan
Belfiori, Giulio
Crippa, Stefano
Balzano, Gianpaolo
Falconi, Massimo
Doglioni, Claudio
Bonini, Chiara
Reni, Michele
Protti, Maria Pia
author_facet De Monte, Lucia
Clemente, Francesca
Ruggiero, Eliana
Pini, Raffaella
Ceraolo, Maria Grazia
Schiavo Lena, Marco
Balestrieri, Chiara
Lazarevic, Dejan
Belfiori, Giulio
Crippa, Stefano
Balzano, Gianpaolo
Falconi, Massimo
Doglioni, Claudio
Bonini, Chiara
Reni, Michele
Protti, Maria Pia
author_sort De Monte, Lucia
collection PubMed
description BACKGROUND: Pancreatic ductal adenocarcinoma (PDAC) has a dismal prognosis and it is characterized by predominant pro-tumor Th2-type inflammation. T follicular helper (Tfh) cells are relevant immunoregulators in cancer, and often correlate with better survival. How the Th2-skewed microenvironment in PDAC modulates the differentiation of Tfh cells and their immunoregulatory function is unknown. METHODS: We carried out high-dimensional flow cytometry and T-cell receptor- and RNA-sequencing, as well as bioinformatics, immunohistochemistry and in vitro mechanistic studies. FINDINGS: We identified Tfh1-, Tfh2-, and Tfh17-like cell clusters in the blood, tumors and tumor-draining lymph-nodes (TDLNs) of chemo-naïve PDAC patients and showed that high percentages of Tfh2 cells within the tumor tissue and TDLNs correlated with reduced patient survival. Moreover, only Tfh2 cells were highly activated and were reduced in frequency in patients who responded to neoadjuvant chemotherapy. RNA-sequencing analysis of immunoglobulin expression showed that tumor and TDLN samples expressed all immunoglobulin (IGH) isotypes apart from IGHE. Consistent with these findings, Tfh2 cells differentiated in vitro by tumor microenvironment-conditioned dendritic cells promoted the production of anti-inflammatory IgG4 antibodies by co-cultured B cells, dependent on IL-13. Moreover, unexpectedly, Tfh2 cells inhibited the secretion of pro-inflammatory IgE, dependent on prostaglandin E(2). INTERPRETATION: Our results indicate that in PDAC, highly activated pro-tumor Tfh2 favor anti-inflammatory IgG4 production, while inhibit pro-inflammatory IgE. Thus, targeting the circuits that drive Tfh2 cells, in combination with chemotherapy, may re-establish beneficial anti-tumor Tfh–B cell interactions and facilitate more effective treatment. FUNDING: Research grants from the 10.13039/501100005010Italian Association for Cancer Research (AIRC) IG-19119 to MPP and the AIRC Special Program in Metastatic disease: the key unmet need in oncology, 5 per Mille no. 22737 to CB, MF, CD, MR and MPP; the ERA-NET EuroNanoMed III (a collaborative european grant financed by the Italian Ministry of Health, Italy) project PANIPAC (JTC2018/041) to MPP; the Fondazione Valsecchi to SC.
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spelling pubmed-105420112023-10-02 Pro-tumor Tfh2 cells induce detrimental IgG4 production and PGE(2)-dependent IgE inhibition in pancreatic cancer De Monte, Lucia Clemente, Francesca Ruggiero, Eliana Pini, Raffaella Ceraolo, Maria Grazia Schiavo Lena, Marco Balestrieri, Chiara Lazarevic, Dejan Belfiori, Giulio Crippa, Stefano Balzano, Gianpaolo Falconi, Massimo Doglioni, Claudio Bonini, Chiara Reni, Michele Protti, Maria Pia eBioMedicine Articles BACKGROUND: Pancreatic ductal adenocarcinoma (PDAC) has a dismal prognosis and it is characterized by predominant pro-tumor Th2-type inflammation. T follicular helper (Tfh) cells are relevant immunoregulators in cancer, and often correlate with better survival. How the Th2-skewed microenvironment in PDAC modulates the differentiation of Tfh cells and their immunoregulatory function is unknown. METHODS: We carried out high-dimensional flow cytometry and T-cell receptor- and RNA-sequencing, as well as bioinformatics, immunohistochemistry and in vitro mechanistic studies. FINDINGS: We identified Tfh1-, Tfh2-, and Tfh17-like cell clusters in the blood, tumors and tumor-draining lymph-nodes (TDLNs) of chemo-naïve PDAC patients and showed that high percentages of Tfh2 cells within the tumor tissue and TDLNs correlated with reduced patient survival. Moreover, only Tfh2 cells were highly activated and were reduced in frequency in patients who responded to neoadjuvant chemotherapy. RNA-sequencing analysis of immunoglobulin expression showed that tumor and TDLN samples expressed all immunoglobulin (IGH) isotypes apart from IGHE. Consistent with these findings, Tfh2 cells differentiated in vitro by tumor microenvironment-conditioned dendritic cells promoted the production of anti-inflammatory IgG4 antibodies by co-cultured B cells, dependent on IL-13. Moreover, unexpectedly, Tfh2 cells inhibited the secretion of pro-inflammatory IgE, dependent on prostaglandin E(2). INTERPRETATION: Our results indicate that in PDAC, highly activated pro-tumor Tfh2 favor anti-inflammatory IgG4 production, while inhibit pro-inflammatory IgE. Thus, targeting the circuits that drive Tfh2 cells, in combination with chemotherapy, may re-establish beneficial anti-tumor Tfh–B cell interactions and facilitate more effective treatment. FUNDING: Research grants from the 10.13039/501100005010Italian Association for Cancer Research (AIRC) IG-19119 to MPP and the AIRC Special Program in Metastatic disease: the key unmet need in oncology, 5 per Mille no. 22737 to CB, MF, CD, MR and MPP; the ERA-NET EuroNanoMed III (a collaborative european grant financed by the Italian Ministry of Health, Italy) project PANIPAC (JTC2018/041) to MPP; the Fondazione Valsecchi to SC. Elsevier 2023-09-28 /pmc/articles/PMC10542011/ /pubmed/37776595 http://dx.doi.org/10.1016/j.ebiom.2023.104819 Text en © 2023 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Articles
De Monte, Lucia
Clemente, Francesca
Ruggiero, Eliana
Pini, Raffaella
Ceraolo, Maria Grazia
Schiavo Lena, Marco
Balestrieri, Chiara
Lazarevic, Dejan
Belfiori, Giulio
Crippa, Stefano
Balzano, Gianpaolo
Falconi, Massimo
Doglioni, Claudio
Bonini, Chiara
Reni, Michele
Protti, Maria Pia
Pro-tumor Tfh2 cells induce detrimental IgG4 production and PGE(2)-dependent IgE inhibition in pancreatic cancer
title Pro-tumor Tfh2 cells induce detrimental IgG4 production and PGE(2)-dependent IgE inhibition in pancreatic cancer
title_full Pro-tumor Tfh2 cells induce detrimental IgG4 production and PGE(2)-dependent IgE inhibition in pancreatic cancer
title_fullStr Pro-tumor Tfh2 cells induce detrimental IgG4 production and PGE(2)-dependent IgE inhibition in pancreatic cancer
title_full_unstemmed Pro-tumor Tfh2 cells induce detrimental IgG4 production and PGE(2)-dependent IgE inhibition in pancreatic cancer
title_short Pro-tumor Tfh2 cells induce detrimental IgG4 production and PGE(2)-dependent IgE inhibition in pancreatic cancer
title_sort pro-tumor tfh2 cells induce detrimental igg4 production and pge(2)-dependent ige inhibition in pancreatic cancer
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10542011/
https://www.ncbi.nlm.nih.gov/pubmed/37776595
http://dx.doi.org/10.1016/j.ebiom.2023.104819
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