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  • References:

    1. Li, H., et al., Bioengineered three-dimensional scaffolds to elucidate the effects of material biodegradability on cell behavior using POSS-PEG hybrid hydrogels, Polymer Degradation and Stability, 2019, 164:118-26.
    2. Day, J.R., et al., The impact of functional groups of poly(ethylene glycol) macromers on the physical properties of photo-polymerized hydrogels and the local inflammatory response in the host, Acta Biomaterialia, 2018, 67, P. 42-52.
    3. Stoichevska, V., et al., Engineering specific chemical modification sites into a collagen©\like protein from Streptococcus pyogenes, Journal of Biomedical Materials Research Part A., 2017.
    4. Heffernan, J.M., et al., Bioengineered Scaffolds for 3D Analysis of Glioblastoma Proliferation and Invasion, Annals of Biomedical Engineering,, 43:8, p. 1965-1977.
    5. Addington, C.P., et al., Enhancing neural stem cell response to SDF-1α gradients through hyaluronic acid-laminin hydrogels, Biomaterials, 2015, 72, p. 11-19.
    6. Ma, Y., et al., Artificial microniches for probing mesenchymal stem cell fate in 3D, Biomater. Sci., 2014, 2, 1661.
    7. Neubauer, M.P., Mechanics of Microparticles in the Context of Structure and Functionality, Universitat Bayreuth, 2014.

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