This inventor holds 1 USPTO granted patent. Top assignee: Rohm Gmbh. Active years: 1994.
Company Filing History:
Years Active: 1994
Title: Innovations of Wolfgang Kleese in Biologically Active Materials
Introduction
Wolfgang Kleese is an accomplished inventor based in Mainz, Germany, known for his innovative contributions to the field of biologically active materials. His research focuses on developing advanced methods that enhance the effectiveness of carrier systems for these materials.
Latest Patents
Kleese holds a significant patent titled "Method for making carrier systems for biologically active materials." This patent discloses a method for preparing carrier systems that can be covalently bonded to biologically active materials. The innovative approach involves utilizing a known solid support material coated with a polymer containing functional groups suitable for covalent bonding. The process includes coating the support with both film-forming and non-film-forming polymer dispersions, with at least one dispersion containing the necessary functional groups for bonding. This invention has potential applications in various sectors, including pharmaceuticals and biotechnology.
Career Highlights
Wolfgang Kleese is currently associated with Rohm GmbH, a company recognized for its advancements in specialty chemicals and materials. His work at Rohm has propelled innovations in the use of polymers for biological applications, making a meaningful impact in the industry.
Collaborations
Throughout his career, Kleese has collaborated with prominent colleagues such as Dieter Kraemer and Hans-Ulrich Petereit. These collaborations have fostered an environment of innovation, allowing for the exchange of ideas and expertise that has resulted in groundbreaking developments.
Conclusion
Wolfgang Kleese's contributions to the field of biologically active materials demonstrate his dedication to innovation and improvement in the manufacturing process of carrier systems. His patent reflects a deep understanding of polymer chemistry, which has the potential to transform the way biologically active materials are utilized in various applications.
