Presentation + Paper
4 March 2022 Fine-tuning physicochemical properties of Oxazine-4 for nerve-specific imaging
William S. Greer, Antonio Montaño, Nourhan A. Shams, Dani Szafran-Reeder, Anas Masillati, Lei G. Wang, Summer L. Gibbs
Author Affiliations +
Abstract
Accidental damage of vital nerve structures remains a significant surgical morbidity. Patient-to-patient neuroanatomical variability requires considerable dependence on a surgeon’s first-hand experiences that primarily rely on proximal features for orientation, which can be further complicated in patients with nerve damage. As such, enhanced nerve visualization proves to be a vital avenue for advancing surgical precision and patient outcomes. Fluorescence guided surgery (FGS) has the potential to improve surgical guidance, but there are no current nerve-specific fluorophores approved for clinical use. Previous work has identified the oxazine scaffold as a promising avenue for nerve-specific contrast agent development, due to its sufficiently low molecular weight to cross the blood-nerve-barrier (BNB), tunable photophysical properties, and high nerve specificity. Herein we report our efforts to investigate the structure-function relationship of Oxazine-4 through fine-tuned terminal alkylamino modifications, both based on optical and physicochemical properties as well as their affected nerve specificities.
Conference Presentation
© (2022) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
William S. Greer, Antonio Montaño, Nourhan A. Shams, Dani Szafran-Reeder, Anas Masillati, Lei G. Wang, and Summer L. Gibbs "Fine-tuning physicochemical properties of Oxazine-4 for nerve-specific imaging", Proc. SPIE 11943, Molecular-Guided Surgery: Molecules, Devices, and Applications VIII, 1194308 (4 March 2022); https://doi.org/10.1117/12.2612232
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KEYWORDS
Nerve

In vivo imaging

Tissues

Visualization

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