This inventor holds 1 USPTO granted patent. Top assignee: Agy Therapeutics, Inc.. Active years: 2003.
Company Filing History:
Years Active: 2003
Title: Innovator Saili Yi and His Contributions to Microglial Cell Research
Introduction
Saili Yi is a notable inventor based in San Francisco, CA, who has made significant contributions to the field of neuroscience. His work primarily focuses on the purification of microglial cells, which play a crucial role in brain health and disease. With a patent to his name, Yi is recognized for his innovative approach to enhancing the study of these important cells.
Latest Patents
Saili Yi holds a patent titled "Purifying microglial cells by binding cell Fc receptor to immunoglobulin G Fc domain." This patent describes a method for obtaining a cell population enriched in microglial cells. The process involves contacting a composition containing microglial cells with immunoglobulin immobilized on a matrix, such as a polystyrene matrix. This method allows for the binding of microglial cells to the immunoglobulin, followed by the removal of non-adherent cells. The result is a cell population that contains at least 95% microglial cells. The immunoglobulin used may be F domain-containing immunoglobulin G, which binds to the F receptors of the microglial cells. This innovative technique can utilize purified F fragments from immunoglobulin G as an alternative to the full immunoglobulin G. The microglial cells can be sourced from brain tissue, whether from normal animals or those with neurological disorders.
Career Highlights
Saili Yi is currently employed at Agy Therapeutics, Inc., where he continues to advance his research in the field of microglial cells. His work is pivotal in understanding the role of these cells in neurological health and disease, contributing to potential therapeutic approaches.
Collaborations
One of his notable collaborators is Huaiyu Mi, with whom he has likely shared insights and expertise in their research endeavors.
Conclusion
Saili Yi's innovative work in purifying microglial cells represents a significant advancement in neuroscience research. His contributions have the potential to enhance our understanding of brain health and pave the way for new therapeutic strategies.