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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


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Beyschau Andersen, C., Yagi, H., Manno, M., Martorana, V., Ban, T., Christiansen, G., Otzen, D., Goto, Y. & Rischel, C. (2009). Branching in amyloid fibril growth. Biophysical Journal, 96(4), 1529-36. https://doi.org/10.1016/j.bpj.2008.11.024
Simonsen, M., Mailund, T. & Pedersen, C. S. (2009). Building very large neighbour-joining trees. Poster session presented at 17th Annual International Conference on Intelligent Systems for Molecular Biology (ISMB) & 8th European Conference on Computational Biology (ECCB), Stockholm, Sweden.
Hartmann, H., Lakner, U., Andersen, M. Ø., Kjems, J., Howard, K. A. & Schloßhauer, B. (2009). Carrier Matrix for siRNA-Mediated Gene Knock Down to Promote Neuronal Regeneration. Tissue Engineering. Part A. Tissue Engineering, (3), 718.
Xie, J., Xue, Q. Z., Yan, K. Y., Chen, H. J., Xia, D. & Dong, M. D. (2009). Chemical Modification: an Effective Way of Avoiding the Collapse of SWNTs on Al Surface Revealed by Molecular Dynamics Simulations. Journal of Physical Chemistry Part C: Nanomaterials and Interfaces, 113(33).
Nielsen, K. H. (2009). Den sidste frie forsker. Aktuel Naturvidenskab, (3), 38-39.