Schlafer, S., Raarup, M. K., Meyer, R. L., Sutherland, D. S., Dige, I., Nyengaard, J. R. & Nyvad, B. (2011).
pH Landscapes in a Novel Five-Species Model of Early Dental Biofilm.
PLoS One,
6(9), e25299.
https://doi.org/10.1371/journal.pone.0025299
Schlafer, S., Raarup, M. K., Wejse, P. L.
, Nyvad, B., Stadler, B. M., Sutherland, D. S., Birkedal, H. & Meyer, R. L. (2012).
Osteopontin Reduces Biofilm Formation in a Multi-Species Model of Dental Biofilm.
PLoS One,
7(8), e41534.
https://doi.org/10.1371/journal.pone.0041534
Schlafer, S., Olsen, J., Skovgaard, J., Birkedal, H., Nyvad, B., Sutherland, D. S., Wejse, P.
& Meyer, R. L. (2013).
Calcium-Phosphate-Osteopontin Particles: A New Approach to Caries Control. Poster session presented at Eurobiofilms 2013, Ghent, Belgium.
Schlafer, S., Birkedal, H., Olsen, J., Skovgaard, J., Sutherland, D., Wejse, P. L.
, Nyvad, B. & Meyer, R. L. (2016).
Calcium-phosphate-osteopontin particles for caries control.
Biofouling,
32(4), 349-357.
https://doi.org/10.1080/08927014.2016.1141199
Schlafer, S., Raarup, M. K., Wejse, P. L.
, Nyvad, B., Städler, B. M.
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Osteopontin reduces biofilm formation in a multi-species model of dental biofilm. In
Biofilm Control and Antimicrobial Agents (pp. 113-126). Apple Academic Press.
Schmidt, T. M., Bochenkov, V., Espinoza, J., Smits, E., Muzafarov, A. M., Kononevich, Y. N.
& Sutherland, D. S. (2014).
Plasmonic fluorescence enhancement of DBMBF2 monomers and DBMBF2-Toluene Exciplexes using Al-hole arrays.
The Journal of Physical Chemistry Part C,
118(4), 2138-2145.
https://doi.org/10.1021/jp4110823
Shakeran, Z., Varshosaz, J., Keyhanfar, M.
, Mohammad-Beigi, H., Rahimi, K. & Sutherland, D. S. (2022).
Co-delivery of STAT3 siRNA and methotrexate in breast cancer cells.
Artificial Cells, Nanomedicine and Biotechnology,
50(1), 29-39.
https://doi.org/10.1080/21691401.2022.2030746
Shipovskov, S., Sutherland, D., Koroleva, O. V., Stephens, G.
& Ferapontova, E. (2008).
Characterisation of Laccases from Different Sources in the Systems of Reverse Micelles. Abstract from
7th Liquid Matter Conference, Lund, Sweden.
Shipovskov, S., Oliveira, C. L. P. D., Schauser, L., Besenbacher, F., Pedersen, J. S. & Sutherland, D. (2008).
Enhancement of the secondary structure of a flexible protein, osteopontin, by formation of microemulsions in organic solvent. Abstract from Danish Colloid and Interface Symposium 2008, Aarhus, Denmark.
Shipovskov, S., Oliveira, C. L. P. D., Schauser, L., Pedersen, J. S., Besenbacher, F. & Sutherland, D. (2009).
ENHANCEMENT OF THE SECONDARY STRUCTURE OF INHERENTLY DISORDERED PROTEIN, OSTEOPONTIN, BY FORMATION OF MICROEMULSIONS IN ORGANIC SOLVENT. Poster session presented at 7th Annual iNANO Meeting, Aarhus, Denmark.
Shipovskov, S., Oliveira, C. L. P. D., Schauser, L., Pedersen, J. S., Besenbacher, F. & Sutherland, D. (2009).
Enhancement of the secondary structure of inherently disorderedprotein, osteopontin, by formation of microemulsionsin organic solvent. Abstract from
Sixth Nordic Workshop on Scattering from Soft Matter , Aarhus, Denmark.
Shipovskov, S., Oliveira, C. L. P. D., Schauser, L., Pedersen, J. S., Besenbacher, F. & Sutherland, D. (2009).
Enhancement of the secondary structure of inherently disordered protein, osteopontin, by formation of microemulsions in organic solvent. Abstract from BIOTRANS-2009, Berne, Switzerland.
Shipovskov, S., Kragh, K.
, Laursen, B. S., Poulsen, C.
, Besenbacher, F. & Sutherland, D. (2009).
Liquid-Liquid Extraction of Mannanase into Hexane and Xylene. Abstract from BIOTRANS-2009, Berne, Switzerland.
Shipovskov, S., Kragh, K. M., Laursen, B. S., Poulsen, C. H.
, Besenbacher, F. & Sutherland, D. (2010).
Mannanase transfer into hexane and xylene by liquid-liquid extraction.
Applied Biochemistry and Biotechnology,
160(4), 1124-1129.
Shipovskov, S., Oliveira, C. L. P.
, Hoffmann, S. V., Schauser, L.
, Sutherland, D., Besenbacher, F. & Pedersen, J. S. (2012).
Water-in-Oil Micro-Emulsion Enhances the Secondary Structure of a Protein by Confinement.
ChemPhysChem,
13(13), 3179-3184.
https://doi.org/10.1002/cphc.201200295
Skovgaard, J., Bak, C. A., Snabe, T.
, Sutherland, D. S., Laursen, B. S., Kragh, K. M.
, Besenbacher, F., Poulsen, C. H.
& Shipovskov, S. (2010).
Implementation of cross-linked enzyme aggregates of proteases for marine paint applications.
Journal of Materials Chemistry,
20, 7626-7629.
https://doi.org/10.1039/c0jm01249a
Teodori, L., Shahrokhtash, A., Sørensen, E. A., Zhang, X., Malle, M. G., Sutherland, D. S. & Kjems, J. (2025).
Nanoscale Precise Stamping of Biomolecule Patterns Using DNA Origami.
ACS Nano,
19(42), 36931-36942.
https://doi.org/10.1021/acsnano.5c07651
Toftegaard, R., Arnbjerg, J., Daasbjerg, K., Ogilby, P. R., Dmitriev, A.
, Sutherland, D. & Poulsen, L. (2008).
Metal-Enhanced 1270 nm Singlet Oxygen Phosphorescence.
Angewandte Chemie International Edition,
47, 6025-6027.
Toftegaard, R., Arnbjerg, J., Cong, H., Agheli, H.
, Sutherland, D. S. & Ogilby, P. R. (2011).
Metal nanoparticle- enhanced radiative transitions: giving singlet oxygen emission a boost.
Pure and Applied Chemistry,
83, 885-898.
Tsang, E., Scarpellini, C., Dillen, A.
, Jeminejs, A., Sivertsen, M. V. T., Sutherland, D. S., Lammertyn, J.
& Gothelf, K. V. (2025).
DNA Origami-Guided Assembly of Gold Nanoparticles for Plasmonic Enhancement in Fiber Optic Surface Plasmon Resonance Sensing.
Small Methods,
9(12), Article e02111.
https://doi.org/10.1002/smtd.202502111
van der Westen, R.
, Rigau, L. H., Sutherland, D. S., Goldie, K., Alebericio, F., Postma, A.
& Stadler, B. (2012).
Myoblast Cell Interaction with Polydopamine Coated Liposomes.
Biointerphases,
7, 8.
https://doi.org/10.1007/s13758-011-0008-4
Wang, J., Jensen, U. B., Jensen, G. V., Shipovskov, S., Balakrishnan, V. S., Otzen, D., Pedersen, J. S., Besenbacher, F. & Sutherland, D. S. (2011).
Soft Interactions at Nanoparticles Alter Protein Function and Conformation in a Size Dependent Manner.
Nano Letters,
11(11), 4985-4991.
https://doi.org/10.1021/nl202940k
Zeuthen, C. M., Shahrokhtash, A., Fromell, K., Nilsson Ekdahl, K.
, Mohammad-Beigi, H. & Sutherland, D. S. (2020).
C1q recognizes antigen-bound IgG in a curvature-dependent manner.
Nano Research,
13(6), 1651-1658.
https://doi.org/10.1007/s12274-020-2788-7