Navigation and service

BioSoft Colloquium:

Matter to Life: Bottom-Up Assembly of Synthetic Cells

Joachim Spatz

Max Planck Institute for Medical Research, Heidelberg, Germany

02 Dec 2021 11:00
Remote access

Join us at:


The evolution of cellular compartments for spatially and temporally controlled assembly of biological processes was an essential step in developing life by evolution. Synthetic approaches to cellular-like compartments are still lacking well-controlled functionalities, as would be needed for more complex synthetic cells. With the ultimate aim to construct life-like materials such as a living cell, matter-to-life strives to reconstitute cellular phenomena in vitro – disentangled from the complex environment of a cell.

Theoretical Physics Copyright: Joachim Spatz

In recent years, working towards this ambitious goal gave new insights into the mechanisms governing life. With the fast-growing library of functional modules assembled for synthetic cells, their classification and integration become increasingly important.

We will discuss strategies to reverse-engineer and recombine functional parts for synthetic eukaryotes, mimicking the characteristics of nature’s own prototype. Particularly, we will focus on large outer compartments, complex endomembrane systems with organelles and versatile cytoskeletons as hallmarks of eukaryotic life.

Moreover, we identify microfluidics and DNA nanotechnology as two highly promising technologies which can achieve the integration of these functional modules into sophisticated multifunctional synthetic cells.


Dr. Dmitry Fedosov
Phone: +49 2461 61-2972
Fax: +49 2461 61-3180