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Adaptive Resistance
- Thematic(s)
- Immuno-oncology, Precision Medicine, Tumor microenvironment
- Attachment unit
- U981 - Molecular Predictors and New Targets in Oncology
- Manager(s)
- Caroline Robert
- Institutional connection
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Gustave Roussy, Inserm, Paris-Saclay University
Summary
Objectives and Challenges
The team led by Caroline Robert is conducting research organized around three objectives: the implementation of a database currently comprising more than 2,000 patients with melanoma; the continuation of the Melavatar program within the tumor bank associated with this database; and thethe identification of early markers of treatment efficacy and/or toxicity in order to develop an algorithm applicable in clinical practice; and the preclinical development of new therapies to combat treatment resistance by targeting the adaptability of cancer cells and cells in the tumor microenvironment.
Research Areas/Major Projects
The main research projects focus on the links between the RNA translation process and lymphocyte maturation/exhaustion, the characterization of the relationship between persistent cells and the immune system, the identification of biomarkers before and early during treatment to predict therapeutic efficacy, and the investigation of tumor persistence in the central nervous system.
Within the team, the group led by Anne Chauchereau studies the mechanisms regulating translation as an adaptive mechanism of resistance to prostate cancer treatments and focuses on the functions of endoplasmic reticulum proteins (FKBP7) and translational regulators (ABCFs). The PDX models and organoids established in the unit are used to determine the therapeutic relevance of the identified targets.
Major Findings and Scientific, Clinical, and Societal Impacts
The team’s work has led to the discovery of an immune evasion mechanism in persistent cells via the secretion of the MIF factor, which can be targeted therapeutically, the demonstration of the major role of translation regulation via the eIF4F factor in lymphocyte maturation and exhaustion, the demonstration of a synergistic effect between PD-1 blockade and eIF4A inhibitors in human and murine preclinical models; and the identification of an algorithm to predict the efficacy of immunotherapies for patients with metastatic melanoma.
Team members
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ROBERT Caroline - Team Leader
University Professors and Hospital Practitioners, Gustave Roussy, Paris-Saclay University
Sandrine AGOUSSI
Research Technician or Equivalent, Gustave Roussy
ALBORNOZ-LOAIZA, Anilo
Ph.D. Student, Paris-Saclay University
Naïma Benannoune
Research assistants and technical staff, administrative assistants and staff, Gustave Roussy
BLANDEL Stéphane
Ph.D. student, Paris-Saclay University
Anne Chauchereau
Research Fellows and Equivalents, Inserm
FERNANDES, Marie
Postdoctoral Fellow, Gustave Roussy
HOUCH Nadira
Research Engineer or equivalent, Gustave Roussy
Monireh Kazemimanesh
Postdoctoral Fellow, Gustave Roussy
K-MURALI Sharane
Research Engineer or equivalent, Gustave Roussy
MÉANT Antoine
Postdoctoral Researcher, Gustave Roussy
MOHAMMADNEZHADDARYANI Samad
Postdoctoral Fellow, Gustave Roussy
Fares OUSALEM
Postdoctoral Fellow, Gustave Roussy
SEDDIK Cherif
Ph.D. student, Other
SOUMOY Laura
Postdoctoral researcher, Gustave Roussy
Marina Vignes
Hospital Physician, Gustave Roussy
Key publications
Other scientific productions
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Patent: Improved Treatments of Cancer Resistant to Taxoids. Anne Chauchereau and Nicolas J-P Martin US2017321282A1 • November 9, 2017
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Patent: Methods for predicting or monitoring whether a patient affected by a cancer is responsive to a treatment with a molecule of the taxoid family. Anne CHAUCHEREAU, Frédéric COMMO, and Nader AL NAKOUZI. US2013130928A1 • May 23, 2013
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Patent: Inhibitor oligonucleotides and their use for specific repression of a gene. Chauchereau A et al. US2008287385A1 (B2) • November 20, 2008
Contacts
- Phone
- Assistant: 01.42.11.64.97