Markus Eder
Papers
2
Total Citations
9
H-Index
2
About
Markus Eder is pioneering the construction of life-like synthetic compartments at the cellular scale. His research sits at the intersection of DNA nanotechnology, biophysics, and synthetic biology, focusing on how programmable molecules can self-assemble into complex, functional structures. Eder’s major contribution is the development of self-assembled, cell-scale containers made from DNA origami membranes. This work represents a significant leap forward, moving DNA nanotechnology from static nanoscale objects to dynamic, micron-sized compartments that mimic the fundamental principle of biological compartmentalization. By creating these synthetic membranes, Eder provides a powerful new platform for constructing artificial cells and studying confined biochemical reactions. Although his most-cited papers are recent (2024–2025), their combined citations already signal a growing impact in the field. This achievement is notable for bridging the gap between nanoscale DNA origami and the larger, more complex structures found in living systems, offering a programmable route to building synthetic cellular architectures from the bottom up.
Research Focus
Key Achievements
Top Papers
- 1Self-assembled cell-scale containers made from DNA origami membranes5 citations · 2024
- 2Self-assembled cell-scale containers made from DNA origami membranes4 citations · 2025