Research toxicologist - New approaches for toxicity testing (m/f/d), Sophia

Bayer Direct Services GmbH

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Research toxicologist - New approaches for toxicity testing (m/f/d), Sophia

CDI
Ingénierie, Technique, Sciences, Santé
Offre archivée le 03/06/2022
 

Bayer Direct Services GmbH

Bayer is a global enterprise with core competencies in the Life Science fields of health care and agriculture. Its products and services are designed to benefit people and improve their quality of life. At Bayer you have the opportunity to be part of a culture where we value the passion of our employees to innovate and give them the power to change.

Missions

In the context of the new toxicity testing paradigm based on more animal or human based cell responses and a comprehensive mechanistic understanding of cause-consequence relationships for adverse effects induced by (agro)chemicals, your role will be to develop, implement and apply new alternative methodologies (NAMs):

  • Design, develop, and implement new in vitro methodologies and high-content image-cell based assays for morphological profiling able to indicate potential in vivo adverse effects
  • Establish toxicology and business relevant mediumto highthroughput in vitro test systems able to mimic the in vivo situation in order to quantify the risk in human beings
  • Utilize advanced technologies to study biological and molecular processes: e.g., apply relevant biomarkers and use image analysis for quantification, perform biological assays to monitor cell behavior and function

Profile

  • Biologist or Scientist with a PhD degree related to tissue engineering, biotechnology, biology, toxicology, or related disciplines.
  • You have strong expertise in cellular models and morphological profiling (cell painting technologies). Proven hands-on experience with a variety cell based and molecular biology readouts technologies along with state-of-the-art imaging methods (immunostaining and confocal imaging, qPCR, flow cytometry, MSD, toxicogenomics etc.) will be looked at. Experience with experimental characterization and (ideally, mathematically) description of dose/concentration toxicity pathways would be a plus.

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Offre archivée le 03/06/2022

 
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