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A.A. Valencia
- A.A.Valencia@tudelft.nl
- 23.KG 03.120
V.A. (Vera) Popovich
- +31 15 27 89568
- V.Popovich@tudelft.nl
- 34.H-1-260
C.H.W. Swarttouw-Hofmeijer
- +31 15 27 83625
- C.H.W.Swarttouw-Hofmeijer@tudelft.nl
- 08.BG.Oost.110
A.C. de Ridder
- +31 15 27 81076
- Alexander.deRidder@tudelft.nl
- 08.01WEST130
M.C. Poelman
Establishing programmable liposome fusion to enable synthetic cell growth (BEP/MEP)
Short description: To accomplish sustained growth and division, synthetic cells must expand their membrane surface. Providing extra lipids…
/en/faculty-of-applied-sciences/about-faculty/departments/bionanoscience/research/research-labs/koenderink-lab/student-projects/establishing-programmable-liposome-fusion-to-enable-synthetic-cell-growth-bep-mep
Building a living cell from scratch using microfluidics (MEP)
Short description: To shed light on the fundamental blueprint of a cell and get a better understanding of the governing principles of…
/en/faculty-of-applied-sciences/about-faculty/departments/bionanoscience/research/research-labs/koenderink-lab/student-projects/building-a-living-cell-from-scratch-using-microfluidics-mep
Model intercellular bridge with septin and other proteins (MEP)
Short description: In the intercellular bridge, proteins are important for the recruited and organized in the intercellular bridge. In our…
/en/faculty-of-applied-sciences/about-faculty/departments/bionanoscience/research/research-labs/koenderink-lab/student-projects/model-intercellular-bridge-with-septin-and-other-proteins-mep