Near-Infrared Fluorescent Rosol Dye Tailored toward Lymphatic Mapping Applications.
Kenneth S HettieJessica L KlockowTimothy E GlassFrederick T ChinPublished in: Analytical chemistry (2019)
An optical molecular imaging contrast agent that is tailored toward lymphatic mapping techniques implementing near-infrared (NIR) fluorescence image-guided navigation in the planning and surgical treatment of cancers would significantly aid in enabling the real-time visualization of the potential metastatic tumor-draining lymph node(s) for their needed surgical biopsy and/or removal, thereby ensuring unmissed disease to prevent recurrence and improve patient survival rates. Here, the development of the first NIR fluorescent rosol dye (THQ-Rosol) tailored to overcome the limitations arising from the suboptimal properties of the generic molecular fluorescent dyes commonly used for such applications is described. In developing THQ-Rosol, we prepared a progressive series of torsionally restrictive N-substituted non-NIR fluorescent rosol dyes based on density functional theory (DFT) calculations, wherein we discerned high correlations amongst their calculated energetics, modeled N-C3' torsion angles, and evaluated properties. We leveraged these strong relationships to rationally design THQ-Rosol, wherein DFT calculations inspired an innovative approach and synthetic strategy to afford an uncharged xanthene core-based scaffold/molecular platform with an aptly elevated p Ka value alongside NIR fluorescence emission (ca.700-900 nm). THQ-Rosol exhibited 710 nm NIR fluorescence emission, a 160 nm Stokes shift, robust photostability, and an aptly elevated p Ka value (5.85) for affording pH-insensitivity and optimal contrast upon designed use. We demonstrated the efficacy of THQ-Rosol for lymphatic mapping with in vitro and in vivo studies, wherein it revealed timely tumor drainage and afforded definitive lymph node visualization upon its administration and accumulation. THQ-Rosol serves as a proof-of-concept for the effective tailoring of an uncharged xanthene core-based scaffold/molecular platform toward a specific imaging application using rational design.
Keyphrases
- density functional theory
- lymph node
- living cells
- fluorescent probe
- photodynamic therapy
- high resolution
- single molecule
- molecular dynamics
- fluorescence imaging
- quantum dots
- drug release
- neoadjuvant chemotherapy
- sentinel lymph node
- energy transfer
- magnetic resonance
- smoking cessation
- label free
- high throughput
- high density
- squamous cell carcinoma
- small cell lung cancer
- ultrasound guided
- molecular docking
- molecular dynamics simulations
- free survival
- computed tomography
- contrast enhanced
- mass spectrometry
- early stage
- drug delivery
- highly efficient
- risk assessment