» Publication Years » 2018
Hardy J. G., Bertin A., Torres‐Rendon J. G., Leal‐Egaña A., Humenik M., Bauer, F., Walther A., Cölfen H., Schlaad H. & Scheibel T.
Facile photochemical modification of silk protein-based biomaterials
Macromol. Biosci., 2018, 28:,1800216
Roshanbinfar K., Vogt L., Greber B., Diecke S., Boccaccini A. R., Scheibel T. & Engel F. B.
Electroconductive biohybrid hydrogel for enhanced maturation and beating properties of engineered cardiac tissues
Adv. Funct. Mater., 2018, 28, 1803951
Wang J. & Scheibel T.
Coacervation of the recombinant Mytilus galloprovincialis foot protein-3b
Biomacromolecules 2018, 19, 3612–3619
Humenik M., Mohrand M. & Scheibel T.
Self-assembly of spider silk-fusion proteins comprising enzymatic and fluorescence activity.
Bioconjugate Chem., 2018, 29: 898 – 904.
Wang J. & Scheibel T.
Recombinant production of mussel byssus inspired proteins
Biotechnol. J., 2018, 13, 1800146
Hofmann E., Krüger K., Haynl C., Scheibel T., Trebbin M. & Förster S.
Microfluidic nozzle device for ultrafine fiber solution blow spinning with precise diameter control
LabChip, 2018, 18,2225-2234
Golser A. V., Röber M., Börner H. G. & Scheibel T.
Engineered collagen: A redox switchable framework for tunable assembly and fabrication of biocompatible surfaces
ACS Biomater. Sci. Eng., 2018, 4: 2106 – 2114
Lucke M., Mottas I., Herbst T., Hotz C., Römer L., Schierling M., Slotta U., Spinetti T., Scheibel T., Winter G. T., Bourquin C. & Engert J.
Engineered spider silk hybrid particles as delivery system for peptide vaccines
Biomaterials, 2018, 172, 105-115
Kumari S., Bargel H., Anby M. U., Lafargue D. & Scheibel T.
Recombinant spider silk hydrogels for sustained release of biologicals
ACS Biomater., 2018, 4, 1750 – 1759
Golser A. V. & Scheibel T.
Routes towards novel collagen-like biomaterials
Fibers, 2018, 6: 21
Lintz E. S., Neinhuis C. & Scheibel T.
Altering silk film surface properties through Lotus-like mechanisms
Macromol. Mater. Eng., 2018, 303: 1700637
Aigner T. B., DeSimone E. & Scheibel T.
Biomedical applications of recombinant silk-based materials
Adv. Mater., 2018, 30: 1704636
Salehi S. & Scheibel T.
Biomimetic spider silk fibres: from vision to reality
The Biochemist, 2018, 40: 4 – 7
Mickoleit F., Borkner C. B., Toro-Nahuelpan M., Herold, H. M., Maier D. S., Plitzko J. M., Schüler D. & Scheibel T.
In-vivo coating of bacterial magnetic nanoparticles by magnetosome expression of spider silk-inspired peptides
Biomacromolecules, 2019, 19: 962 – 972
Haug M., Reischl B., Prölß G., Pollmann C., Buckert T., Keidel C., Schürmann S., Hock M., Rupitsch S., Heckel M., Pöschel T., Scheibel T., Haynl C., Kiriaev L., Head S. L., Friedrich O.
The MyoRobot: A novel automated biomechatronics system to assess voltage/Ca2+ biosensors and ctive/passive biomechanics in muscle and biomaterials
Biosens. Bioelectron., 2018, 102: 589 – 599
Humenik M., Lang G. & Scheibel T.
Silk nanofibril self-assembly versus electrospinning
WIREs Nanomed. Nanobiotechnol., 2018, 10: e1509
Bargel, H. & Scheibel, T.
Inspirationen für mechanisch stabile Materialien aus der Natur – Von Gräsern über Spinnenseide bis zu Kieselalge
MNU Journal, 2018, 1: 37 – 44
Wicklein V. J., Singer B. B., Scheibel T. & Salehi S.
Nanoengineered biomaterials for corneal regeneration
In: Nanoengineered Biomaterials for Regenerative Medicine. Micro- and Nano Technologies, Elsevier, Ch. 17: 379-415