Location History:
- Hachioji-shi, Tokyo JP (1999 - 2003)
- Hachioji, JP (2006)
- Tokyo, JP (1998 - 2008)
- Bessho, Hachioji-shi, Tokyo JP (2010)
Company Filing History:
Years Active: 1998-2010
Title: Sei-ichi Tanuma: Innovator in Biochemical Engineering
Introduction
Sei-ichi Tanuma is a prominent inventor based in Tokyo, Japan. He has made significant contributions to the field of biochemical engineering, particularly in the design of physiologically active peptides and novel enzymes. With a total of seven patents to his name, Tanuma's work has the potential to impact various therapeutic applications.
Latest Patents
One of Tanuma's latest patents is a method for designing physiologically active peptides. This invention provides an efficient way to design peptides that can bind to target proteins. The method involves computerized processing to extract preferable amino acid sequences by calculating intermolecular energy. Another notable patent is for a novel acid DNase, which is an endonuclease capable of cleaving DNA under acidic conditions. This enzyme retains its activity in a range of pH levels and is not inhibited by G-actin. The invention also includes a DNA encoding the enzyme and a pharmaceutical composition that could serve as a therapeutic agent for cystic fibrosis.
Career Highlights
Throughout his career, Sei-ichi Tanuma has worked with various companies, contributing his expertise in biochemical innovations. His work has led to advancements in therapeutic agents that could replace traditional treatments, showcasing his commitment to improving healthcare solutions.
Collaborations
Tanuma has collaborated with notable individuals in his field, including Daisuke Shiokawa and Atsushi Yoshimori. These collaborations have further enriched his research and development efforts.
Conclusion
Sei-ichi Tanuma's innovative work in designing physiologically active peptides and novel enzymes highlights his significant contributions to biochemical engineering. His patents reflect a dedication to advancing therapeutic solutions, making him a key figure in his field.