This inventor holds 1 USPTO granted patent. Top assignee: North Carolina State University. Active years: 2024.
Company Filing History:
Years Active: 2024
Title: The Innovative Contributions of Daniel Chester
Introduction
Daniel Chester is an accomplished inventor based in Raleigh, NC (US). He has made significant strides in the field of biomedical engineering, particularly in the development of advanced materials for regenerative medicine. His work focuses on the innovative use of three-dimensional printing technologies to create bio-compatible materials.
Latest Patents
Daniel Chester holds a patent for "Three-dimensional printing of colloidal building blocks for wound healing materials." This patent describes bio-ink compositions that comprise bio-compatible microgels or nanogels. The bio-inks can include micro- or nanogels made from crosslinked poly(N-isopropylacrylamide) (poly-NIPam). Additionally, these bio-inks may contain viscosity control agents, such as poly(ethylene glycol) (PEG), and/or surface tension agents. The application of three-dimensional (3D) printing techniques, such as piezoelectric printing, allows for the creation of 3D printed materials that consist of microgel or nanogel assemblies. These innovative materials can serve as scaffolds for preparing biological tissues, which are essential in regenerative medicine.
Career Highlights
Daniel Chester is affiliated with North Carolina State University, where he contributes to research and development in the field of biomedical engineering. His work has garnered attention for its potential applications in improving wound healing and tissue regeneration.
Collaborations
Daniel has collaborated with notable colleagues, including Ashley Carson Brown and Michael Daniele. Their combined expertise enhances the research efforts at North Carolina State University and contributes to advancements in the field.
Conclusion
Daniel Chester's innovative work in three-dimensional printing and bio-compatible materials positions him as a key figure in the field of regenerative medicine. His contributions are paving the way for new solutions in wound healing and tissue engineering.
