Aarhus University Seal

Publications

Recent research news on Artificial Biology


Actin-Powered Motors Build Cytoskeletons in Artificial Cells

AUNAB members Assistant Prof. Miguel Ramos Docampo's and Prof. Brigitte Stadler's effort to engineered artificial cells to form cytoskeleton-like networks using nanomotor-driven actin polymerization is published in ACS Nano. These hybrid vesicles merge active matter with synthetic biology to achieve life-like movement and self-organization inspired by Listeria’s actin-based propulsion.

 

Read the article published in ACS Nano here.

Contact information:
Professor Brigitte Maria Städler
Aarhus University
Interdisciplinary Nanoscience Center (iNANO)
Email: bstadler@inano.au.dk

Assistant Professor Miguel Alexandre Ramos Docampo
Aarhus University
Interdisciplinary Nanoscience Center (iNANO)
Email: miramos@inano.au.dk

Recent publications by network


Sort by: Date | Author | Title

Mailund, T. & Pedersen, C. N. S. (2004). QuickJoin - Fast Neighbour-Joining Tree Reconstruction. Bioinformatics, 20(17), 3261-3262.
Besenbacher, S., Mailund, T., Westh-Nielsen, L. & Pedersen, C. S. (2004). RBT -- A tool for building refined Buneman trees. Bioinformatics, doi:10.1093/bti195, in press.
Besenbacher, S., Mailund, T., Westh-Nielsen, L. & Pedersen, C. N. S. (2004). RBT - A Tool for Building Refined Buneman Trees. Bioinformatics, 21(8), 1711-1712.
Andersen, E. S., Contera, S., Knudsen, B., Damgaard, C. K., Besenbacher, F. & Kjems, J. (2004). Role of the TAR hairpin in dimerization of HIV-1 RNA. Journal of Biological Chemistry, 279, 22243-22249.
Zahler, A. M., Damgaard, C. K., Kjems, J. & Caputi, M. (2004). SC35 and hnRNPs A/B binding to a juxtaposed ESE/ESS element regulates HIV-1 tat exon 2 splicing. Journal of Biological Chemistry, 279, 10077-10084.