Henderson, NV, United States of America

Deborah K Bulmer


Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 10(Granted Patents)


Company Filing History:


Years Active: 2001

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1 patent (USPTO):Explore Patents

Title: The Innovative Contributions of Deborah K. Bulmer

Introduction

Deborah K. Bulmer, an accomplished inventor based in Henderson, NV, has made significant strides in the field of biotechnology. Her work, particularly in the development of genetically engineered bacteria, represents a notable advancement in the production of selected aromatic compounds. This innovative approach highlights the potential of microbial engineering in various applications.

Latest Patents

Deborah holds a patent for her groundbreaking work titled "Development of genetically engineered bacteria for production of selected aromatic compounds." This patent encompasses the cloning and expression of genes within the common aromatic pathway, allowing for the production of specific compounds from chorismate, an anabolic intermediate. The details include the use of plasmids to carry selected genes essential for the conversion process.

Career Highlights

Currently, Deborah is associated with Bechtel BWXT Idaho, LLC, where she leverages her expertise to advance research and development initiatives. Her contributions are not only impactful in the laboratory but also significant in understanding how genetically modified organisms can be developed for various industrial applications.

Collaborations

Throughout her career, Deborah has collaborated with distinguished colleagues, including Thomas E. Ward and Carolyn S. Watkins. These collaborative efforts have fostered an environment of innovation, allowing them to explore new possibilities in genetic engineering and its applicability in biotechnology.

Conclusion

In summary, Deborah K. Bulmer stands as a key figure in the realm of biotechnology, with her patent and collaborative work marking her contributions to the scientific community. Her innovative spirit and dedication to research continue to inspire advancements in the production of important chemical compounds through genetic engineering.

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