Isaac Hilton
Has open position
Associate Professor of Bioengineering
Research Interests
Explore related searches
Contact this professor
About
Isaac Hilton is an Assistant Professor at Rice University in the United States. His research focuses on synthetic biology, epigenetic engineering, and genome editing, with recent publications exploring topics such as synthetic transcriptional control, CRISPR systems, and chromatin structure dynamics. His innovative work aims to advance the field of cell-based therapeutics and provide insights into foreign body responses and neurodegeneration-linked gene expression.
Articles (12)
Lipid Deposition Profiles Influence Foreign Body Responses
Fibrosis remains a significant cause of failure in implanted biomedical devices and early absorption of proteins on implant surfaces has been shown to be a key instigating factor. However, lipids can also regulate immune activity and their presence may also contribute to biomaterial‐induced foreign body responses (FBR) and fibrosis. Here it is demonstrated that the surface presentation of lipids on implant affects FBR by influencing reactions of immune cells to materials as well as their resultant inflammatory/suppressive polarization. Time‐of‐flight secondary ion mass spectroscopy (ToF‐SIMS) is employed to characterize lipid deposition on implants that are surface‐modified chemically with immunomodulatory small molecules. Multiple immunosuppressive phospholipids (phosphatidylcholine, phosphatidylinositol, phosphatidylethanolamine, and sphingomyelin) are all found to deposit preferentially on implants with anti‐FBR surface modifications in mice. Significantly, a set of 11 fatty acids is enriched on unmodified implanted devices that failed in both mice and humans, highlighting relevance across species. Phospholipid deposition is also found to upregulate the transcription of anti‐inflammatory genes in murine macrophages, while fatty acid deposition stimulated the expression of pro‐inflammatory genes. These results provide further insights into how to improve the design of biomaterials and medical devices to mitigate biomaterial material‐induced FBR and fibrosis.
Year:
2023
Collaborators (5)
Cigliola Valentina
Assistant Professor
Vanderbilt University
Michael Diehl
Associate Professor
Rice University
Caleb Bashor
Rice University
Omid Veiseh
-
Mario Escobar
Assistant Research Professor
Rice University

How do I reach out?
Sign in for free to see their profile details and contact information.