Chapel Hill, NC, United States of America

Benjamin Marcus Buehrer

USPTO Granted Patents = 1 

Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2011

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1 patent (USPTO):Explore Patents

Title: The Innovative Contributions of Benjamin Marcus Buehrer in Fibrous Connective Tissue Repair

Introduction: Benjamin Marcus Buehrer, based in Chapel Hill, NC, is an accomplished inventor recognized for his significant contributions to the field of biomedical engineering. With one patented innovation, his work focuses on enhancing fibrous connective tissue healing, which is vital for medical implants and surgical procedures.

Latest Patents: Buehrer's sole patent, titled "Methods and Compositions for Delivery of Growth Factor to Fibrous Connective Tissue," addresses the need for effective delivery systems in tissue repair. This patent introduces a peptide composition designed to non-covalently localize a fibrous connective tissue-inducing growth factor to the surface of an implant. The innovative method involves binding affinities that facilitate the effective application of the growth factor GDF-7, promoting both repair and formation of fibrous connective tissue.

Career Highlights: Buehrer works at Affinergy Inc., a company dedicated to advancing biomaterials for medical applications. His career demonstrates a commitment to researching and developing solutions that improve outcomes in tissue engineering and regenerative medicine.

Collaborations: Throughout his career, Buehrer has collaborated with notable colleagues such as Paul Theodore Hamilton and Dalia Isolda Juzumiene. Their joint efforts in research and development foster an environment of innovation and creativity, driving forward the field of biomedical technology.

Conclusion: Benjamin Marcus Buehrer's dedication to advancing methods for improving fibrous connective tissue repair has established him as a notable inventor in the biomedical sector. His contributions, particularly through his patent, continue to inspire and influence future research in tissue engineering and medical innovation.

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