Company Filing History:
Years Active: 2016
Title: The Innovations of Koji Naruse
Introduction
Koji Naruse is a notable inventor based in Sagamihara, Japan. He has made significant contributions to the field of biomedical engineering, particularly in the development of bone graft materials. His innovative work focuses on enhancing the osteogenic ability of bone grafts, which is crucial for successful bone regeneration.
Latest Patents
Koji Naruse holds a patent for a growth factor anchoring type bone graft material. This patent includes a method for producing the growth factor anchoring type bone graft material, a kit for producing it, and a method for forming bone. The invention provides a growth factor anchoring type bone graft material, wherein a bone graft substrate exposing at least a collagen fiber is bound to a collagen-binding-site-containing growth factor. This growth factor contains a growth factor receptor agonist peptide and a collagen-binding peptide. The production process involves mixing a bone graft substrate with the collagen-binding-site-containing growth factor, resulting in a material that exhibits superior osteogenic ability.
Career Highlights
Throughout his career, Koji Naruse has worked with esteemed institutions such as the Kitasato Institute and Kagawa University. His research and innovations have contributed to advancements in medical technology, particularly in the area of bone grafting.
Collaborations
Koji Naruse has collaborated with notable colleagues, including Kentaro Uchida and Masashi Takaso. These partnerships have fostered a collaborative environment that enhances the development of innovative solutions in the field of biomedical engineering.
Conclusion
Koji Naruse's contributions to the field of bone graft materials demonstrate his commitment to advancing medical technology. His innovative patent and collaborations highlight the importance of teamwork in achieving significant breakthroughs. His work continues to impact the field positively, paving the way for future advancements in bone regeneration.