Research Associate: Ultrasound-Triggered Drug-Delivery Bubbles

Research Associate: Ultrasound-Triggered Drug-Delivery Bubbles

Full-Time 40500 - 49500 Β£ / year (est.) No working from home possible
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At a Glance

  • Tasks: Design and evaluate innovative microbubbles for ultrasound-triggered drug delivery.
  • Company: Join the prestigious Imperial College London, a leader in research and innovation.
  • Benefits: Gain valuable experience, collaborate with experts, and contribute to groundbreaking research.
  • Other info: Opportunity to publish findings and mentor junior researchers in a dynamic environment.
  • Why this job: Make a real difference in healthcare through cutting-edge technology and research.
  • Qualifications: Background in biomedical engineering or related fields; passion for research and collaboration.

The predicted salary is between 40500 - 49500 Β£ per year.

Imperial College London is seeking a Research Associate to contribute to a multidisciplinary program focused on mono-responsive microbubbles for acoustically-triggered drug delivery. The role involves designing, fabricating, and evaluating microbubbles and conjugating them with drug-loaded liposomes for ultrasound-triggered release.

You will work with experts in microfluidics, acoustics, and biomedical engineering, publish findings, and supervise junior researchers within a collaborative environment.

Research Associate: Ultrasound-Triggered Drug-Delivery Bubbles employer: RFCSR

Imperial College London is an exceptional employer, offering a vibrant and collaborative work culture that fosters innovation and interdisciplinary research. As a Research Associate, you will have access to cutting-edge facilities and the opportunity for professional growth through publishing your findings and mentoring junior researchers, all within a prestigious institution located in the heart of London.

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Contact Details:

RFCSR Recruitment Team

We think you need these skills to ace Research Associate: Ultrasound-Triggered Drug-Delivery Bubbles

Microbubble Design
Microfluidics
Biomedical Engineering
Drug Delivery Systems
Ultrasound Technology
Fabrication Techniques
Evaluation Methods