Greve, Denmark

Bettina Bryde Nielsen


Average Co-Inventor Count = 7.0

ph-index = 1

Forward Citations = 17(Granted Patents)


Company Filing History:


Years Active: 2010-2012

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3 patents (USPTO):

Title: Innovations of Bettina Bryde Nielsen

Introduction

Bettina Bryde Nielsen is a prominent inventor based in Greve, Denmark. She has made significant contributions to the field of biotechnology, particularly in the design of polypeptides. With a total of 3 patents to her name, her work focuses on creating multifunctional molecules that have applications in various therapeutic and diagnostic systems.

Latest Patents

One of her latest patents is centered around the design of trimeric polypeptides using structural elements derived from the tetranectin protein family. This invention aims to facilitate the rational de novo design and production of multifunctional molecules. These molecules can be utilized in protein library technology, including phage display technology, as well as in diagnostic and therapeutic systems such as human gene therapy and imaging. The trimeric polypeptides are constructed as monomer polypeptide constructs that include at least one tetranectin trimerising structural element (TTSE). This TTSE is covalently linked to at least one heterologous moiety and is capable of forming stable complexes with two other TTSEs. Alternatively, the polypeptides can be structured as oligomers comprised of multiple monomer constructs.

Career Highlights

Bettina has worked with notable companies in the biotechnology sector, including Anaphore, Inc. and Hoffmann-La Roche Inc. Her experience in these organizations has contributed to her expertise in the development of innovative biotechnological solutions.

Collaborations

Throughout her career, Bettina has collaborated with esteemed colleagues such as Michael Etzerodt and Thor Las Holtet. These partnerships have further enhanced her research and development efforts in the field.

Conclusion

Bettina Bryde Nielsen is a trailblazer in the biotechnology industry, with her innovative work on trimeric polypeptides paving the way for advancements in therapeutic and diagnostic applications. Her contributions continue to impact the scientific community positively.

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