Research Associate, Fermentation

Debut BiotechSan Diego, CA
$21 - $26Hybrid

About The Position

Debut Biotechnology is seeking a Research Associate to aid in microbial fermentation processes for small molecule production. This individual should be versed in fermentation science and have a basic understanding of microbial physiology, secondary metabolism, and biosynthetic pathways. The ideal candidate would be an energetic, adaptive, creative, and highly self-motivated individual who enjoys undertaking complex challenges both individually and as part of a team. The successful candidate will interact closely with molecular biologists, chemists, and engineers and will be directly responsible for bench-scale bioreactor operation and small molecule product analysis. Excellent interpersonal and communications skills are essential due to the highly collaborative nature of the position.

Requirements

  • BS in biotechnology, microbiology, or fermentation with a minimum of 2 years of microbiology lab experience
  • Attention to detail and meticulous record keeping
  • Intermediate/advanced Excel skills
  • Ability to work well in a fast-paced environment and balance multiple projects

Nice To Haves

  • Experience with small molecule fermentation via genetically engineered organisms is a plus
  • Experience applying molecular biology techniques is a plus
  • Experience using statistical software to analyze large datasets is a plus
  • Experience understanding and running advanced experimental designs is a plus
  • Experience interpreting fermentation’s product and byproduct results is a plus

Responsibilities

  • Design and execution of fermentation experiments across multiple volumes
  • Optimization of fermentation operations by controlling numerous parameters
  • Maintenance of bench-scale bioreactors
  • Preparation of media, buffers, and chemical solutions
  • Product sampling and chemical/microbiological analysis
  • Bioreactor and laboratory material cleaning and sterilization
  • Data processing and statistical analysis to maximize understanding of strain performance
  • High throughput experiment optimization across multiple reaction volumes
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