Doctoral Position in Advanced Bioelectronic & Electrical Conversion Research

Karlstad University

Zürich

Vor Ort

CHF 48.000 - 60.000

Vollzeit

Vor 2 Tagen
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Benefits dieser Stelle

Impactful research

Zusammenfassung

ETH Zurich's D-BSSE invites exceptional candidates to apply for a PhD position at the nexus of synthetic biology, nanotechnology and bioelectronics. The project aims to engineer programmable cells for wireless, real-time control of therapeutic protein expression and metabolic regulation, combining biology with electrical and materials engineering.

Successful applicants will work in Basel within a world-class research environment, collaborating with biologists and engineers to develop

Qualifikationen

  • PhD in physics, materials science, chemistry, or related field.
  • Experience in bioelectronics or software simulations, or willingness to acquire it.
  • Strong knowledge of electrochemistry and materials chemistry.
  • Demonstrated academic excellence and interest in industrial R&D or entrepreneurship.

Aufgaben

  • Develop bioelectronic interfaces enabling closed-loop programming of cellular behaviour.
  • Perform computational simulations and bioelectrode device fabrication.
  • Collaborate with molecular biologists and bioengineers.
  • Design novel bioelectronic implants and control software.

Kenntnisse

Physics background
Materials science
Chemistry knowledge
Bioelectronics experience
Software simulations

Jobbeschreibung

Doctoral Position in Advanced Bioelectronic & Electrical Conversion Research

ETH Zürich is well known for its excellent education, ground-breaking fundamental research and for implementing its results directly into practice.

Doctoral Position in Advanced Bioelectronic & Electrical Conversion Research

A World-Class Research Environment at the Nexus of Biology, Engineering, and Physical Sciences

The Biotechnology and Bioengineering group led by Prof. Dr. Martin Fussenegger at the Department of Biosystems Science and Engineering (D-BSSE) of ETH Zurich in Basel invites exceptional candidates to apply for a PhD position in pioneering projects at the intersection of synthetic biology, nanotechnology, and bioelectronics.

The D-BSSE is ETH Zurich's first truly interdisciplinary research department uniting theoretical and experimental biology with advanced bioengineering and fostering close collaborations with leaders in materials science, physics, and chemistry to drive transformative advances in systems biology, biotechnology, and synthetic biology. Situated in Basel, Switzerland, at the heart of the BioValley, a tri-national region that hosts 40% of the global life sciences industry and numerous major pharmaceutical companies, the D-BSSE offers a unique environment for high-impact translational research with unparalleled access to academic and industrial expertise.

Project background

Advancing the Frontiers of Bioelectronics and Synthetic Biology

Our group integrates state-of-the-art synthetic biology with advanced nanotechnology, and electrogenetic interfaces to engineer human cells for next generation bioelectronic medicine, designing programmable cells that respond to electrical, electromagnetic, acoustic and biochemical cues to achieve wireless, real-time control of therapeutic protein expression and metabolic regulation. Leveraging innovative platforms such as direct-current-actuated regulation, electromagnetic programming of wireless expression, and closed-loop systems, we aim to translate these technologies into clinically relevant, minimally invasive therapies for cancer, as well as metabolic, neurodegenerative, autoimmune, and infectious diseases.

  • PhD projects will combine catalyst engineering, computational simulation, bioelectrode device fabrication, and electrical engineering to develop bioelectronic interfaces enabling closed-loop programming of cellular behaviour and real-time monitoring of metabolic activity
  • There will also be opportunities to design novel bioelectronic implants and develop specialized control software
Profile
  • We are seeking highly motivated applicants with a background in physics, material science, or chemistry
  • Ideally with expertise in bioelectronics or software simulations, or a strong willingness to acquire it, alongside solid knowledge of electrochemistry and materials chemistry
  • Candidates should be eager to collaborate closely with molecular biologists and bioengineers and demonstrate a strong academic record with the ambition to pursue a career in industrial R&D, or entrepreneurship
We offer
  • Your job with impact: Become part of ETH Zurich, which not only supports your professional development, but also actively contributes to positive change in society

In line with our values , ETH Zurich encourages an inclusive culture. We promote equality of opportunity, value diversity and nurture a working and learning environment in which the rights and dignity of all our staff and students are respected. Visit our Equal Opportunities and Diversity website to find out how we ensure a fair and open environment that allows everyone to grow and flourish. Sustainability is a core value for us – we are consistently working towards a climate-neutral future .

Further information about the Department of Biosystems Science and Engineering can be found on our website or in our published work .Questions regarding the position should be directed to Professor Martin Fussenegger, martin.fussenegger@bsse.ethz.ch (no applications).

ETH Zurich is one of the world’s leading universities specialising inscience and technology. We are renowned for our excellent education,cutting-edge fundamental research and direct transfer of new knowledgeinto society. Over 30,000 people from more than 120 countries find ouruniversity to be a place that promotes independent thinking and anenvironment that inspires excellence. Located in the heart of Europe,yet forging connections all over the world, we work together todevelop solutions for the global challenges of today and tomorrow.

Job details

Title

Doctoral Position in Advanced Bioelectronic & Electrical Conversion Research

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