This inventor holds 1 USPTO granted patent. Top assignee: Cellfor Inc.. Active years: 2001.
Company Filing History:
Years Active: 2001
Title: The Innovative Contributions of Benjamin C. S. Sutton
Introduction
Benjamin C. S. Sutton is a notable inventor based in Vancouver, Canada. He has made significant contributions to the field of biotechnology, particularly in the development of methods for somatic embryo maturation. His innovative approach has the potential to enhance agricultural practices and improve plant breeding techniques.
Latest Patents
Sutton holds a patent for a method titled "Maturation of Somatic Embryos." This invention focuses on developing and maturing somatic embryos in a controlled growth environment. The method involves manipulating the water availability of the growth environment using physical means of control. This innovative approach optimizes the development and maturation of somatic embryos by adjusting the water potential of the embryogenic tissue. Notably, Sutton's method avoids chemical means, such as the introduction of PEG, to stimulate embryo maturation. Instead, it utilizes physical methods, such as separating somatic embryos from the growth medium with a porous support or incorporating a gelling agent like gellan gum in larger quantities.
Career Highlights
Sutton's career is marked by his dedication to advancing biotechnological methods. His work at Cellfor Inc. has allowed him to explore innovative solutions in plant development. With a focus on somatic embryos, Sutton's research contributes to the broader field of agricultural biotechnology.
Collaborations
Sutton has collaborated with esteemed colleagues, including Thomas F. Stodola and David R. Cyr. These partnerships have fostered a collaborative environment that enhances the research and development of innovative biotechnological solutions.
Conclusion
Benjamin C. S. Sutton's contributions to the field of biotechnology, particularly through his patent on somatic embryo maturation, demonstrate his commitment to innovation. His work has the potential to significantly impact agricultural practices and improve plant breeding techniques.
