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4D force detection of cell adhesion and contractility
Chala, N., Zhang, X., Zambelli, T., Zhang, Z., Schneider, T., Panozzo, D., … Ferrari, A. (2023). 4D force detection of cell adhesion and contractility. Nano Letters, 23(7), 2467-2475. https://doi.org/10.1021/acs.nanolett.2c03733
Transdermal wires for improved integration in vivo
Kourouklis, A. P., Kaemmel, J., Wu, X., Baños, M., Chanfon, A., de Brot, S., … Mazza, E. (2023). Transdermal wires for improved integration in vivo. Biomaterials Advances, 153, 213568 (14 pp.). https://doi.org/10.1016/j.bioadv.2023.213568
Accelerated epithelial layer healing induced by tactile anisotropy in surface topography
Pramotton, F. M., Cousin, L., Roy, T., Giampietro, C., Cecchini, M., Masciullo, C., … Poulikakos, D. (2023). Accelerated epithelial layer healing induced by tactile anisotropy in surface topography. Science Advances, 9(14), eadd1581 (16 pp.). https://doi.org/10.1126/sciadv.add1581
Anisotropic topographies restore endothelial monolayer integrity and promote the proliferation of senescent endothelial cells
Exarchos, V., Neuber, S., Meyborg, H., Giampietro, C., Chala, N., Moimas, S., … Nazari-Shafti, T. Z. (2022). Anisotropic topographies restore endothelial monolayer integrity and promote the proliferation of senescent endothelial cells. Frontiers in Cardiovascular Medicine, 9, 953582 (17 pp.). https://doi.org/10.3389/fcvm.2022.953582
Nanoengineering for mechanobiology "N4M-20"
Ferrari, A., Vassalli, M., & Caponi, S. (2022). Nanoengineering for mechanobiology "N4M-20". European Biophysics Journal, 51(2), 97-98. https://doi.org/10.1007/s00249-022-01596-y
Building an interdisciplinary program of cardiovascular research at the Swiss Federal Institute of Technology– the ETHeart story
Kourouklis, A. P., Wu, X., Geyer, R. C., Exarchos, V., Nazari, T., Kaemmel, J., … Cesarovic, N. (2022). Building an interdisciplinary program of cardiovascular research at the Swiss Federal Institute of Technology– the ETHeart story. iScience, 25(10), 105157 (8 pp.). https://doi.org/10.1016/j.isci.2022.105157
Bistability of dielectrically anisotropic nematic crystals and the adaptation of endothelial collectives to stress fields
Stefopoulos, G., Lendenmann, T., Schutzius, T. M., Giampietro, C., Roy, T., Chala, N., … Ferrari, A. (2022). Bistability of dielectrically anisotropic nematic crystals and the adaptation of endothelial collectives to stress fields. Advanced Science, 9(16), 2102148 (13 pp.). https://doi.org/10.1002/advs.202102148
Mechanical fingerprint of senescence in endothelial cells
Chala, N., Moimas, S., Giampietro, C., Zhang, X., Zambelli, T., Exarchos, V., … Ferrari, A. (2021). Mechanical fingerprint of senescence in endothelial cells. Nano Letters, 21(12), 4911-4920. https://doi.org/10.1021/acs.nanolett.1c00064
A novel hybrid membrane VAD as first step toward hemocompatible blood propulsion
Ferrari, A., Giampietro, C., Bachmann, B., Bernardi, L., Bezuidenhhout, D., Ermanni, P., … Mazza, E. (2021). A novel hybrid membrane VAD as first step toward hemocompatible blood propulsion. Annals of Biomedical Engineering, 49, 716-731. https://doi.org/10.1007/s10439-020-02590-1
Systems of conductive skin for power transfer in clinical applications
Kourouklis, A. P., Kaemmel, J., Wu, X., Potapov, E., Cesarovic, N., Ferrari, A., … Mazza, E. (2021). Systems of conductive skin for power transfer in clinical applications. European Biophysics Journal, 51(2), 171-184. https://doi.org/10.1007/s00249-021-01568-8
Evaluation of chemo- and photo-toxicity of a live fluorescent dye for cell analysis
Reyes Lua, A. M., Tonnicchia, S., Giampietro, C., Mazza, E., & Ferrari, A. (2021). Evaluation of chemo- and photo-toxicity of a live fluorescent dye for cell analysis. Photochemistry and Photobiology, 97(2), 448-452. https://doi.org/10.1111/php.13362
A free-form patterning method enabling endothelialization under dynamic flow
Wu, X., Moimas, S., Hopf, R., Giampietro, C., Kourouklis, A., Falk, V., … Ferrari, A. (2021). A free-form patterning method enabling endothelialization under dynamic flow. Biomaterials, 273, 120816 (17 pp.). https://doi.org/10.1016/j.biomaterials.2021.120816
The role of tricellulin in epithelial jamming and unjamming via segmentation of tricellular junctions
Lohmann, S., Giampietro, C., Pramotton, F. M., Al-Nuaimi, D., Poli, A., Maiuri, P., … Ferrari, A. (2020). The role of tricellulin in epithelial jamming and unjamming via segmentation of tricellular junctions. Advanced Science, 7, 2001213 (13 pp.). https://doi.org/10.1002/advs.202001213
Lipoconstruct surface topography grating size influences vascularization onset in the dorsal skinfold chamber model
McLuckie, M., Robotti, F., Sanchez-Macedo, N., Enderlin, D., Frese, L., Cheng, P. F., … Lindenblatt, N. (2020). Lipoconstruct surface topography grating size influences vascularization onset in the dorsal skinfold chamber model. Acta Biomaterialia, 106, 136-144. https://doi.org/10.1016/j.actbio.2020.01.050
Role of the nuclear membrane protein emerin in front-rear polarity of the nucleus
Nastały, P., Purushothaman, D., Marchesi, S., Poli, A., Lendenmann, T., Kidiyoor, G. R., … Maiuri, P. (2020). Role of the nuclear membrane protein emerin in front-rear polarity of the nucleus. Nature Communications, 11(1), 2122 (12 pp.). https://doi.org/10.1038/s41467-020-15910-9
Microengineered biosynthesized cellulose as anti-fibrotic <em>in vivo</em> protection for cardiac implantable electronic devices
Robotti, F., Sterner, I., Bottan, S., Monné Rodríguez, J. M., Pellegrini, G., Schmidt, T., … Starck, C. (2020). Microengineered biosynthesized cellulose as anti-fibrotic in vivo protection for cardiac implantable electronic devices. Biomaterials, 229, 119583 (12 pp.). https://doi.org/10.1016/j.biomaterials.2019.119583
Antibacterial, cytocompatible, sustainably sourced: cellulose membranes with bifunctional peptides for advanced wound dressings
Weishaupt, R., Zünd, J. N., Heuberger, L., Zuber, F., Faccio, G., Robotti, F., … Guex, A. G. (2020). Antibacterial, cytocompatible, sustainably sourced: cellulose membranes with bifunctional peptides for advanced wound dressings. Advanced Healthcare Materials, 9(7), 1901850 (13 pp.). https://doi.org/10.1002/adhm.201901850
Force and collective epithelial activities
Ferrari, A., & Giampiertro, C. (2019). Force and collective epithelial activities. In C. A. M. La Porta & S. Zapperi (Eds.), Advances in experimental medicine and biology: Vol. 1146. Cell migrations: causes and functions (pp. 31-44). https://doi.org/10.1007/978-3-030-17593-1_3
Cellogram: on-the-fly traction force microscopy
Lendenmann, T., Schneider, T., Dumas, J., Tarini, M., Giampietro, C., Bajpai, A., … Panozzo, D. (2019). Cellogram: on-the-fly traction force microscopy. Nano Letters, 19(10), 6742-6750. https://doi.org/10.1021/acs.nanolett.9b01505
Optimized topological and topographical expansion of epithelia
Pramotton, F. M., Robotti, F., Giampietro, C., Lendenmann, T., Poulikakos, D., & Ferrari, A. (2019). Optimized topological and topographical expansion of epithelia. ACS Biomaterials Science & Engineering, 5(8), 3922-3934. https://doi.org/10.1021/acsbiomaterials.8b01346