Investigator

Ester Planas-Rigol

Senior Researcher (Organ on a Chip and Bioprinting) · Leitat Technological Center, Diagnostic Devices Group/ Advanced Engineering Department/ Digital Industry Area

EPEster Planas-Rigol
Papers(1)
Cervical Cancer Evade…
Collaborators(10)
Irene PecharrománIsabel CuartasJoan SeoaneLaura SoléLluís EspinosaÁngel GarcíaRaffaella IurlaroSilvia CabreraAlexandra AriasAlmudena Neva-Alejo
Institutions(4)
Vall Dhebron Institut…Hospital Del MarVall d'Hebron Institu…Hospital de la Santa …

Papers

Cervical Cancer Evades the Host Immune System through the Inhibition of Type I Interferon and CXCL9 by LIF

Abstract Purpose: Cervical cancer is a viral-associated tumor caused by the infection with the human papilloma virus. Cervical cancer is an immunogenic cancer that expresses viral antigens. Despite being immunogenic, cervical cancer does not fully respond to immune checkpoint inhibitors (ICI). LIF is a crucial cytokine in embryo implantation, involved in maternal tolerance that acts as an immunomodulatory factor in cancer. LIF is expressed in cervical cancer and high levels of LIF is associated with poor prognosis in cervical cancer. Experimental Design: We evaluated the impact of LIF on the immune response to ICI using primary plasmocytoid dendritic cells (pDC) and macrophage cultures, syngeneic animals and patient-derived models that recapitulate the human tumor microenvironment. Results: We found that the viral proteins E6 and E7 induce the expression of LIF via the NFκB pathway. The secreted LIF can then repress type I interferon expressed in pDCs and CXCL9 expressed in tumor-associated macrophages. Blockade of LIF promotes the induction of type I interferon and CXCL9 inducing the tumor infiltration of CD8 T cells. This results in the sensitization of the tumor to ICI. Importantly, we observed that patients with cervical cancer expressing high levels of LIF tend to be resistant to ICI. Conclusions: Our data show that the HPV virus induces the expression of LIF to provide a selective advantage to the tumor cell by generating local immunosuppression via the repression of type I interferon and CXCL9. Combinatory treatment with blocking antibodies against LIF and ICI could be effective against cervical cancer expressing high levels of LIF.

27Works
1Papers
14Collaborators

Positions

2024–

Senior Researcher (Organ on a Chip and Bioprinting)

Leitat Technological Center · Diagnostic Devices Group/ Advanced Engineering Department/ Digital Industry Area

2017–

Postdoctoral position (Sara Borrell)

Vall d´Hebron Institut d´Oncologia · Gene Expression and Cancer Group

2021–

Head of Laboratory. Senior Scientist

Omniscope

2016–

Postdoctoral Researcher

Hospital Clinic of Barcelona · Vasculitis Unit. Systemic Autoimmune Disease Department

2010–

Phd Student (FPI)

Hospital Clinic of Barcelona · Vasculitis Unit. Systemic Autoimmune Disease Department

2012–

PhD (EEBB FPI)

National Institute of Health · Laboratory of Cellular Oncology, Center for Cancer Research

2008–

Research Assistant II

QIMR Berghofer Medical Research Institute · Oncogenomic Department

2007–

Research Assistant

Consorci Sanitari de Terrassa · Molecular Genetics Unit

Country

ES

Links & IDs
0000-0001-5948-2241

Scopus: 54997952900