Publications by authors named "Tim P Gebauer"

Unlabelled: The limited capacity of cartilage to heal large lesions through endogenous mechanisms has led to extensive effort to develop materials to facilitate chondrogenesis. Although physical-chemical properties of biomaterials have been shown to impact in vitro chondrogenesis, whether these findings are translatable in vivo is subject of debate. Herein, architectured 3D hydrogel scaffolds (ArcGel) (produced by crosslinking gelatin with ethyl lysine diisocyanate (LDI)) were used as a model system to investigate the interplay between scaffold mechanical properties and degradation on matrix deposition by human articular chondrocytes (HAC) from healthy donors in vitro and in vivo.

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Hydrogels prepared from gelatin and lysine diisocyanate ethyl ester provide tailorable elastic properties and degradation behavior. Their interaction with human aortic endothelial cells (HAEC) as well as human macrophages (Mɸ) and granulocytes (Gɸ) were explored. The experiments revealed a good biocompatibility, appropriate cell adhesion, and cell infiltration.

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Article Synopsis
  • Understanding how proteins interact with biomaterials is key in surgery and regenerative medicine, as this affects how cells adhere to implants.
  • The study developed a protocol to create thin gelatin-based films for studying these protein interactions, utilizing advanced techniques like Quartz Crystal Microbalance and Secondary Ion Mass Spectrometry.
  • This research provides new methods for analyzing how human proteins attach to hydrogels, offering insights that could improve the design of biomaterials for medical applications.
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