4.7 Article

Amphiphilic Hyperbranched Fluoropolymers as Nanoscopic 19F Magnetic Resonance Imaging Agent Assemblies

期刊

BIOMACROMOLECULES
卷 9, 期 10, 页码 2826-2833

出版社

AMER CHEMICAL SOC
DOI: 10.1021/bm800595b

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资金

  1. Children's Discovery Institute of St. Louis Children's Hospital
  2. Washington University School of Medicine
  3. National Heart Lung and Blood Institute of the National Institutes of Health as a Program of Excellence in Nanotechnology [HL080729]
  4. Knut and Alice Wallenberg Foundation
  5. MRI
  6. NIH [P20 RR020643, R24-CA83060]
  7. NCI [U54CA119342]
  8. Center of Cancer Nanotechnology Excellence
  9. International Biomaterials Research Alliance
  10. Queensland State Government National and International Research Alliance Program

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Three hyperbranched fluoropolymers were synthesized and their micelles were constructed as potential F-19 MRI agents. A hyperbranched star-like core was first synthesized via atom transfer radical self-condensing vinyl (co)polymerization (ATR-SCVCP) of 4-chloromethyl styrene (CMS), lauryl acrylate (LA), and 1,1,1-tris(4'-(2-bromoisobutyryloxy)phenyl)ethane (TBBPE). The polymerization gave a small core with M-n of 5.5 kDa with PDI of 1.6, which served as a macroinitiator. Trifluoroethyl methacrylate (TFEMA) and tert-butyl acrylate (tBA) in different ratios were then grafted from the core to give three polymers with M. of about 120 kDa and PDI values of about 1.6-1.8. After acidolysis of the tert-butyl ester groups, amphiphilic, hyperbranched star-like polymers with M. of about 100 kDa were obtained. These structures were subjected to micelle formation in aqueous solution to give micelles having TEM-measured diameters ranging from 3-8 nm and DLS-measured hydrodynamic diameters from 20-30 nm. These micelles gave a narrow, single resonance by F-19 NMR spectroscopy, with a half-width of approximately 130 Hz. The T-1/T-2 parameters were about 500 and 50 ms, respectively, and were not significantly affected by the composition and sizes of the micelles. F-19 MRI phantom images of these fluorinated micelles were acquired, which demonstrated that these fluorinated micelles maybe useful as novel F-19 MRI agents for a variety of biomedical studies.

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