Stevenage, United Kingdom

Nina Eissler

USPTO Granted Patents = 7 

Average Co-Inventor Count = 9.0

ph-index = 1

Forward Citations = 2(Granted Patents)


Company Filing History:


Years Active: 2022-2025

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7 patents (USPTO):Explore Patents

Title: The Innovative Contributions of Inventor Nina Eissler

Introduction

Nina Eissler, an esteemed inventor based in Stevenage, GB, has made significant strides in the field of biotechnology through her innovative work. With a portfolio that includes seven patents, Eissler is at the forefront of research and development in the medical field, particularly focusing on treatments for cancer.

Latest Patents

Among her latest contributions, Eissler has developed groundbreaking patents related to CD38 modulating antibody agents. These patents detail sequences of antibodies that bind to human CD38, offering promising avenues for pharmaceutical manufacturing and development. The full human monoclonal antibodies and antigen-binding fragments she has created are particularly noteworthy for their compatibility with medical methods and compositions designed for cancer treatment.

Career Highlights

Eissler’s remarkable career is underscored by her role at Black Belt Therapeutics Limited, where she leverages her expertise in antibody development. Her innovations have positioned her as a key player in the ongoing fight against cancer, contributing valuable insights and technologies that have the potential to revolutionize treatment protocols.

Collaborations

Collaboration has been a significant aspect of Eissler's work. She closely works with colleagues such as Anne Goubier and Josephine Salimu, contributing to a collaborative environment that fosters innovation and the exchange of ideas. This teamwork is essential for pushing the boundaries of what is possible in the realm of biotechnology.

Conclusion

Nina Eissler's contributions to the field of biotechnology exemplify the impact of innovative thinking and collaboration in medical science. With her continuing focus on developing effective treatments for cancer through her patented work, she remains a pivotal figure in the pursuit of advanced therapeutic solutions. As her career progresses, the scientific community eagerly anticipates her future innovations and contributions.

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