Dresden, Germany

Gerhilt Schmack


Average Co-Inventor Count = 7.0

ph-index = 1

Forward Citations = 15(Granted Patents)


Company Filing History:


Years Active: 2010

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1 patent (USPTO):Explore Patents

Title: Gerhilt Schmack: Innovator in Tissue Engineering

Introduction

Gerhilt Schmack is a prominent inventor based in Dresden, Germany. She has made significant contributions to the field of tissue engineering, particularly in the development of innovative scaffolds for medical applications. Her work focuses on creating biocompatible materials that can be used for producing implants or implant materials.

Latest Patents

Gerhilt Schmack holds a patent for a support material designed for tissue engineering. This patent describes a scaffold that is utilized for tissue culture and cell culture, specifically for producing bone, cartilage, or skin replacements. The scaffold is made from biocompatible materials and features a base material that is electrostatically flocked with fibers on at least one side. This unique arrangement allows the fibers to be positioned almost perpendicularly on the surface, providing a high fiber pull-out resistance. The scaffold serves as an elastic growth lattice, which is stable against compression, facilitating cell colonization in vitro and the ingrowth of cells in vivo. Implants or implant materials can be produced using this innovative scaffold.

Career Highlights

Gerhilt Schmack is affiliated with Technische Universität Dresden, where she continues her research and development in the field of tissue engineering. Her work has garnered attention for its potential applications in medicine and biotechnology.

Collaborations

Throughout her career, Gerhilt has collaborated with notable colleagues, including Peter Offermann and Hartmut Worch. These collaborations have further advanced her research and contributed to the development of her patented technologies.

Conclusion

Gerhilt Schmack is a trailblazer in the field of tissue engineering, with her innovative scaffold design paving the way for advancements in medical implants. Her contributions to biocompatible materials are significant and hold promise for future applications in healthcare.

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