Search Results - "Claase, M. B."

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  1. 1

    Development and properties of polycaprolactone/hydroxyapatite composite biomaterials by Azevedo, M C, Reis, R L, Claase, M B, Grijpma, D W, Feijen, J

    “…Polycaprolactone/hydroxyapatite (PCL/HA) composites were prepared by two different procedures. The first one consists of a conventional blending of the polymer…”
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    Journal Article
  2. 2

    Gas plasma etching of PEO/PBT segmented block copolymer films by Olde Riekerink, M. B., Claase, M. B., Engbers, G. H. M., Grijpma, D. W., Feijen, J.

    “…A series of poly(ethylene oxide)/poly(butylene terephthalate) (PEO/PBT) segmented block copolymer films was treated with a radio‐frequency carbon dioxide (CO2)…”
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    Journal Article
  3. 3

    Design of segmented poly(ether ester) materials and structures for the tissue engineering of bone by Deschamps, Audrey A., Claase, Menno B., Sleijster, Warnerie J., de Bruijn, Joost D., Grijpma, Dirk W., Feijen, Jan

    Published in Journal of controlled release (17-01-2002)
    “…In this study, PEOT/PBT segmented copolymers of different compositions have been evaluated as possible scaffold materials for the tissue engineering of bone…”
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    Journal Article Conference Proceeding
  4. 4
  5. 5

    Porous PEOT/PBT scaffolds for bone tissue engineering: Preparation, characterization, and in vitro bone marrow cell culturing by Claase, Menno B., Grijpma, Dirk W., Mendes, Sandra C., de Bruijn, Joost D., Feijen, Jan

    “…The preparation, characterization, and in vitro bone marrow cell culturing on porous PEOT/PBT copolymer scaffolds are described. These scaffolds are meant for…”
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    Journal Article
  6. 6

    Enhanced Bone Marrow Stromal Cell Adhesion and Growth on Segmented Poly(ether ester)s Based on Poly(ethylene oxide) and Poly(butylene terephthalate) by Claase, Menno B, Olde Riekerink, Mark B, de Bruijn, Joost D, Grijpma, Dirk W, Engbers, Gerard H. M, Feijen, Jan

    Published in Biomacromolecules (01-01-2003)
    “…In previous studies in rats and goats, hydrophilic compositions of the PEOT/PBT block copolymer family have shown in vivo calcification and bone bonding. These…”
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    Journal Article
  7. 7

    Evaluation of two biodegradable polymeric systems as substrates for bone tissue engineering by Mendes, S C, Bezemer, J, Claase, M B, Grijpma, D W, Bellia, G, Degli-Innocenti, F, Reis, R L, de Groot, K, van Blitterswijk, C A, de Bruijn, J D

    Published in Tissue engineering (01-01-2003)
    “…The aim of this study was to evaluate two biodegradable polymeric systems as scaffolds for bone tissue engineering. Rat bone marrow cells were seeded and…”
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    Journal Article
  8. 8

    The different behaviors of skeletal muscle cells and chondrocytes on PEGT/PBT block copolymers are related to the surface properties of the substrate by Papadaki, Maria, Mahmood, Tahir, Gupta, Pavan, Claase, Menno B., Grijpma, Dirk W., Riesle, Jens, Van Blitterswijk, Clemens A., Langer, Robert

    Published in Journal of biomedical materials research (01-01-2001)
    “…The attachment, proliferation, morphology, and differentiation of two cell types—skeletal muscle cells and chondrocytes—were investigated on different…”
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    Journal Article
  9. 9

    Porphyrin Clips Derived from Diphenylglycoluril. Synthesis, Conformational Analysis, and Binding Properties by Elemans, Johannes A. A. W, Claase, Menno B, Aarts, Patrick P. M, Rowan, Alan E, Schenning, Albertus P. H. J, Nolte, Roeland J. M

    Published in Journal of organic chemistry (17-09-1999)
    “…With the aim to construct synthetic systems that function according to the principles of enzymes, molecular clips based on diphenylglycoluril were covalently…”
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    Journal Article
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