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  • Silk-silk interactions between silkworm fibroin and recombinant spider silk fusion proteins enable construction of bioactive materials

    Nilebäck, L., Chouhan, D., Jansson, R., Widhe, M., Mandal, B., Hedhammar, M. (2017) ACS Applied Materials & Interfaces, 9 (37), pp 31634–31644 http://pubs.acs.org/doi/abs/10.1021/acsami.7b10874

    oktober 7, 2022
  • Efficient protein production inspired by how spiders make silk

    Kronqvist, N., Sarr, M., Lindqvist, A., Nordling, K., Otikovs, M., Venturi, L., Pioselli, B., Purhonen, P., Landreh, M., Biverstål, H., Toleikis, Z., Sjöberg, L., Robinson, C.V., Pelizzi, N., Jörnvall, H., Hebert, H., Jaudzems, K., Curstedt, T., Rising, A., Johansson, J. (2017) Nature communications 8:15504 https://www.nature.com/articles/ncomms15504

    oktober 7, 2022
  • Ultrastrong and Bioactive Nanostructured Bio-Based Composites

    Mittal, N., Jansson, R., Widhe, M., Benselfelt, T., Håkansson, K.M.O., Lundell, F., Hedhammar, M., Söderberg, L.D. (2017) ACS Nano, 11 (5), pp 5148–5159 http://pubs.acs.org/doi/abs/10.1021/acsnano.7b02305

    oktober 7, 2022
  • Spiber Technologies AB and Biolamina AB sign an exclusive sale and marketing deal for the unique BioSilk product

    We are happy to announce that our research collaboration with Biolamina AB has resulted in a unique BioSilk product. Our technology offers a biorelevant way to culture primary cells (incl. stem cells) in a 3D environment, to make complex tissue-models. The Biosilk products will be launched at the International Society of Stem Cell Research annual…

    oktober 5, 2022
  • My Hedhammar awarded by The Swedish Fund for Research Without Animal Experiments!

    My Hedhammar was awarded ”Nytänkaren 2018” title from The Swedish Fund for Research Without Animal Experiments. Her research explores a potential use of spider silk protein in formation of cell and tissue models that could become an alternative to experiments conducted on animals.   Read more about the award (Swedish)

    oktober 5, 2022
  • Self-assembly of recombinant silk as a strategy for chemical-free formation of bioactive coatings: a real-time study

    Nilebäck, L., Hedin, J., Widhe, M., Floderus, L., Krona, A., Bysell, H., Hedhammar, M. (2017) BioMacromolecules, 18(3), pp. 846-854 https://doi.org/10.1021/acs.biomac.6b01721

    september 12, 2022
  • A fibronectin mimetic motif improves integrin mediated cell biding to recombinant spider silk matrices

    Widhe, M., Shalaly, N.D., Hedhammar, M. (2016) Biomaterials, 74, pp. 256-266 https://doi.org/10.1016/j.biomaterials.2015.10.013

    september 12, 2022
  • Genetic fusion of single-chain variable fragments to partial spider silk improves target detection in micro- and nanoarrays

    Thatikonda, N., Delfani, P., Jansson, R., Petersson, L., Lindberg, D., Wingren, C., Hedhammar, M. (2016) Biotechnology Journal, 11 (3), pp. 437-448 https://doi.org/10.1002/biot.201500297

    september 12, 2022
  • Silk matrices promote formation of insulin-secreting islet-like clusters

    Shalaly, N.D., Ria, M., Johansson, U., Åvall, K., Berggren, P.-O., Hedhammar, M. (2016) Biomaterials, 90, pp. 50-61 https://doi.org/10.1016/j.biomaterials.2016.03.006

    september 12, 2022
  • Efficient passage of human pluripotent stem cells on spider silk matrices under xeno-free conditions

    Wu, S., Johansson, J., Hovatta, O., Rising, A. (2016) Cellular and Molecular Life Sciences, 73 (7), pp. 1479-1488 https://doi.org/10.1007/s00018-015-2053-5

    september 12, 2022
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