

Micro 1

Global

Contract-based

Date Posted

Offered salary
$40-60 per hour

Closing date
Closing soon
Qualification
Bachelor's
Hiring location
Global
Experience
1+ Years
Responsibilities
• Design and execute experiments using mammalian cell culture and transfection techniques
• Isolate and establish clonal cell lines and monitor cellular phenotypes
• Study the structure, organization, and function of cells and organelles
• Assess and document sources of experimental variability across different model systems
• Develop and optimize experimental protocols for reproducibility and scalability
• Collaborate closely with AI training teams to translate biological insights into high-quality datasets
• Communicate scientific findings clearly through well-structured written and verbal reports
Requirements
• Bachelor's degree or higher in Biology, Cell Biology, or a related scientific discipline
• Minimum 1 year of hands-on laboratory experience with mammalian cell culture
• Proficiency in transfection methods and clonal isolation techniques
• Expert understanding of experimental systems and variability across biological models
• Strong written and verbal communication skills with an emphasis on clarity and detail
• High level of organizational and critical thinking abilities
• Ability to work independently and remotely with a cross-functional team
Nice to Have
• Experience with CRISPR or similar gene editing platforms
• Previous involvement with projects for AI training or data labeling
• Advanced degree (MS or PhD) in a relevant field
How to Apply
Click "Apply" to be taken to the micro1 website. This is a remote contract role with flexible scheduling. Applying through our link supports WFH Bulletin as a referral partner, but you are welcome to apply directly if you prefer.
Take the next step
Micro 1
Cell Biologist
Overview
Join micro1's customer team as an expert Cell Biologist where your insights into experimental systems and cellular mechanisms will help power cutting edge AI training. You will leverage your expertise in mammalian cell culture, transfection methods and clonal isolation to drive meaningful breakthroughs in understanding experimental variability and biological systems.



