Postdoctoral Position in Pediatric Cancer (F/M)

PSL Université Paris

Orsay

Sur place

EUR 36 000 - 40 000

Plein temps

Il y a 3 jours
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Avantages offerts par ce poste

Collective catering
Transport reimbursement
Supplementary health insurance

Résumé du poste

The Institut Curie in Orsay invites applications for a Postdoctoral Position in Pediatric Cancer (F/M) focusing on medulloblastoma, including generation of immunocompetent mouse models and in vivo studies. Work under the Signaling and Cancer Progression team to elucidate treatment resistance and test new strategies.

The successful candidate will utilize GEMMs and patient-derived models, perform advanced analyses (lineage tracing, scRNA-seq) and collaborate across disciplines.

Qualifications

  • PhD with strong experience in mouse models (GEMM) and primary cell culture.
  • Experience in in vivo mouse experiments and molecular biology techniques.
  • Ability to write and communicate in English.

Responsabilités

  • Generate and characterize immunocompetent mouse models of G3 MB.
  • Perform orthotopic transplantation into the cerebellum and in vivo studies.
  • Conduct multimodal analyses including lineage tracing and scRNA-seq.

Connaissances

Mouse models
Primary cell culture
Molecular biology
English proficiency

Formation

PhD in relevant field

Description du poste

Postdoctoral Position in Pediatric Cancer (F/M) (F/H)

Institut Curie is a major player in the research and fight against cancer. It consists of a Hospital group and a Research Center of more than 1000 employees with a strong international representativeness.


The objective of the Research Center is to develop basic research and to use the knowledge produced to improve the diagnosis, prognosis, and therapeutics of cancers as part of the continuum between basic research and innovation serving the patient.


Missions

Laboratory


The “Signaling and Cancer Progression” team, led by Celio Pouponnot, investigates signaling pathways and their impact on transcription factors in cancer, using biochemical and functional experimental approaches both in vitro and in vivo.


Our research focuses on pediatric brain tumors, particularly medulloblastoma (Garancher et al., Cancer Cell, 2018; Morabito et al., EMBO Molecular Medicine, 2019; Mirabal-Ortega et al., Nature Communications, accepted). Our team has developed and uses genetically engineered mouse models and patient-derived xenografts to study pediatric brain cancers, particularly medulloblastoma (MB).


Our current research aims to elucidate the mechanisms underlying treatment resistance, particularly resistance to radiotherapy, and to identify actionable molecular vulnerabilities in pediatric brain cancers.


Medulloblastoma (MB) is the most common malignant brain tumor in children. Among the four molecularly defined groups, Group 3 (G3) is associated with a poor prognosis. Despite recent advances, our understanding of G3 remains limited, notably due to the lack of models that allow the study of tumor initiation and interactions with the immune system.


The project aims to generate and characterize immunocompetent mouse models of G3 MB, including genetically engineered mouse models and models based on the in vitro transformation of cerebellar progenitors, followed by orthotopic transplantation into the cerebellum. These models will enable the study of the different steps of tumor transformation and alterations in developmental programs. Multimodal analyses, including lineage tracing, bulk and single-cell transcriptomic analyses (scRNA-seq), will be performed to validate and characterize these models.


These models will enable us to investigate how oncogenes initiate tumorigenesis, disrupt normal development, and shape the immune microenvironment, as well as to test new therapeutic strategies.


Constraints: work outside regular working hours/days (in vivo experiments)


Training and Skills required



  • Training: PhD with strong experience in mouse model (GEMM (Genetically Engineered Mouse Models: CRE-ERT2 lines…) and primary cell culture.

  • Scientific skills: Mouse colony management, mouse genetic, in vivo mouse experiment, primary cell culture, molecular biology (subcloning, RNA/DNA preparation, WB…)

  • Language skills: ability to write and communicate in English


Desirable Knowledge, skills and abilities:



  • cell culture with primary neural progenitors (dissection, purification and culture of primary neural progenitors)

  • Tumor immunity (immune infiltrate characterization by FACS)

  • Competence in basic NGS data analyses and statistical methods is a strong merit but not required.

  • Scientific rigor

  • Excellent analytical and synthetic capabilities

  • Well organised, ability to work independently

  • a high team spirit

  • Dynamic personality with passion for innovation and problem-solving

  • A will to work in a multidisciplinary environment

  • Ability to communicate


All our opportunities are open to people with disabilities


Contract information


Type of contract: Fixed-term contract.


Starting date: from 1/12/2026 to 1/02/2027


Duration: 3 years


Working time: full time


Remuneration: from 36219.16€ to 39808.96€/year according to the current grids of the Institut Curie and to the experience of the candidate


Benefits: Collective catering, reimbursement of transportation fees up to 70%, supplementary health insurance


Location of the position: Orsay Site of Institut CURIE


Faithful to the legacy of its founder, the Institut Curie is deeply committed to promoting equal opportunities, diversity, and inclusion. Convinced that diversity of backgrounds and experiences contributes to collective performance, we strive to provide everyone with a respectful and equitable working environment and encourage all candidates to apply for our job opportunities.


Contact

45quzkzzjf5k@emploi.beetween.com

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