Poly(amidoamine)-alginate hydrogels: directing the behavior of mesenchymal stem cells with charged hydrogel surfaces
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作者:
Schulz, Andre
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Fraunhofer Inst Biomed Engn, Joseph von Fraunhofer Weg 1, D-66280 Sulzbach, GermanyFraunhofer Inst Biomed Engn, Joseph von Fraunhofer Weg 1, D-66280 Sulzbach, Germany
Schulz, Andre
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Katsen-Globa, Alisa
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Fraunhofer Inst Biomed Engn, Joseph von Fraunhofer Weg 1, D-66280 Sulzbach, GermanyFraunhofer Inst Biomed Engn, Joseph von Fraunhofer Weg 1, D-66280 Sulzbach, Germany
Katsen-Globa, Alisa
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Huber, Esther J.
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Fraunhofer Inst Biomed Engn, Joseph von Fraunhofer Weg 1, D-66280 Sulzbach, GermanyFraunhofer Inst Biomed Engn, Joseph von Fraunhofer Weg 1, D-66280 Sulzbach, Germany
Huber, Esther J.
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Mueller, Sabine C.
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Fraunhofer Inst Biomed Engn, Joseph von Fraunhofer Weg 1, D-66280 Sulzbach, GermanyFraunhofer Inst Biomed Engn, Joseph von Fraunhofer Weg 1, D-66280 Sulzbach, Germany
Mueller, Sabine C.
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Kreiner, Asger
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Fraunhofer Inst Biomed Engn, Joseph von Fraunhofer Weg 1, D-66280 Sulzbach, GermanyFraunhofer Inst Biomed Engn, Joseph von Fraunhofer Weg 1, D-66280 Sulzbach, Germany
Kreiner, Asger
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Puetz, Norbert
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Saarland Univ, Fac Med, Kirrberger Str 100, D-66421 Homburg, GermanyFraunhofer Inst Biomed Engn, Joseph von Fraunhofer Weg 1, D-66280 Sulzbach, Germany
Puetz, Norbert
[2
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Gepp, Michael M.
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Fraunhofer Inst Biomed Engn, Joseph von Fraunhofer Weg 1, D-66280 Sulzbach, GermanyFraunhofer Inst Biomed Engn, Joseph von Fraunhofer Weg 1, D-66280 Sulzbach, Germany
Gepp, Michael M.
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Fischer, Benjamin
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Fraunhofer Inst Biomed Engn, Joseph von Fraunhofer Weg 1, D-66280 Sulzbach, GermanyFraunhofer Inst Biomed Engn, Joseph von Fraunhofer Weg 1, D-66280 Sulzbach, Germany
Fischer, Benjamin
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Stracke, Frank
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Fraunhofer Inst Biomed Engn, Joseph von Fraunhofer Weg 1, D-66280 Sulzbach, GermanyFraunhofer Inst Biomed Engn, Joseph von Fraunhofer Weg 1, D-66280 Sulzbach, Germany
Stracke, Frank
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von Briesen, Hagen
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Fraunhofer Inst Biomed Engn, Joseph von Fraunhofer Weg 1, D-66280 Sulzbach, GermanyFraunhofer Inst Biomed Engn, Joseph von Fraunhofer Weg 1, D-66280 Sulzbach, Germany
von Briesen, Hagen
[1
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Neubauer, Julia C.
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Fraunhofer Inst Biomed Engn, Joseph von Fraunhofer Weg 1, D-66280 Sulzbach, GermanyFraunhofer Inst Biomed Engn, Joseph von Fraunhofer Weg 1, D-66280 Sulzbach, Germany
Neubauer, Julia C.
[1
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Zimmermann, Heiko
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Fraunhofer Inst Biomed Engn, Joseph von Fraunhofer Weg 1, D-66280 Sulzbach, Germany
Saarland Univ, Chair Mol & Cellular Biotechnol, D-66123 Saarbrucken, Germany
Univ Catolica Norte, Fac Marine Sci, Coquimbo, ChileFraunhofer Inst Biomed Engn, Joseph von Fraunhofer Weg 1, D-66280 Sulzbach, Germany
Zimmermann, Heiko
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机构:
[1] Fraunhofer Inst Biomed Engn, Joseph von Fraunhofer Weg 1, D-66280 Sulzbach, Germany
The surface charge of a biomaterial represents a promising tool to direct cellular behavior, which is crucial for therapeutic approaches in regenerative medicine. To expand the understanding of how the material surface charge affects protein adsorption and mesenchymal stem cell behavior, differently charged surfaces with zeta potentials spanning from -25 mV to +15 mV were fabricated by the conjugation of poly(amidoamine) to alginate-based hydrogels. We showed that the increase of the biomaterials surface charge resulted in enhanced quantities of biologically available, surface-attached proteins. Since different surface charges were equalized after protein adsorption, mesenchymal stem cells interacted rather with diverse protein compositions instead of different surface features. Besides an enhanced cell attachment to increasingly positively charged surfaces, the cell spreading area and the expression of adhesion-related genes integrin alpha 5 and tensin 1 were found to be increased after adhesion. Moreover, first results indicate a potential impact of the surface charge on mesenchymal stem cell differentiation towards bone and fat cells. The improved understanding of surface charge-related cell behavior has significant impact on the design of biomedical devices and artificial organs. [GRAPHICS] .