Company Filing History:
Years Active: 2024
Title: **Innovative Contributions of Jordan Leigh Doman in Nucleic Acid Editing**
Introduction
Jordan Leigh Doman, an accomplished inventor based in Cambridge, MA, has made significant strides in the field of genetic editing. With a focus on developing advanced tools for targeted nucleic acid editing, Doman's work has the potential to revolutionize the way genetic modifications are approached in research and medicine.
Latest Patents
Jordan Doman holds a patent for "Base editors and uses thereof," which outlines innovative strategies for editing nucleic acids. This patent details methods and reagents that allow for precise editing at specific sites within the genome, including the human genome. Key components of his patent involve fusion proteins, such as nucleic acid programmable DNA binding proteins, which enhance the efficiency and specificity of nucleic acid editing. The publication discusses the optimization of base editors for expression in mammalian cells, incorporating multiple nuclear localization sequences to ensure effective delivery within the cell nucleus.
Career Highlights
Doman has had a remarkable career, working with leading research institutions such as the Broad Institute and Harvard College. His experience in these prestigious organizations has allowed him to collaborate with some of the top minds in the field of genetic research and innovation.
Collaborations
Throughout his career, Doman has collaborated with notable scientists, including David R. Liu and Luke W. Koblan. These partnerships have played a crucial role in advancing the understanding and implementation of base editing technologies, fostering a collaborative environment that enhances innovation.
Conclusion
Jordan Leigh Doman's contributions to the field of nucleic acid editing reflect his dedication to advancing scientific understanding and practical applications in genetics. With his pioneering patent and collaborative efforts, Doman continues to influence the future of genetic engineering, promising transformative solutions in various biological and medical fields.