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Analysis of fullerene-based nanomaterial in serum matrix by CE

  1. Author:
    Chan, K. C.
    Patri, A. K.
    Veenstra, T. D.
    McNeil, S. E.
    Issaq, H. J.
  2. Author Address

    SAIC Frederick Inc, Lab Proteom & Analyt Technol, NCI Frederick, Ft Detrick, MD 21702 USA. SAIC Frederick Inc, Nanotechnol Characterizat Lab, NCI Frederick, Ft Detrick, MD USA.;Chan, KC, SAIC Frederick Inc, Lab Proteom & Analyt Technol, NCI Frederick, Ft Detrick, MD 21702 USA.;chan@ncifcrf.gov
    1. Year: 2007
    2. Date: May
  1. Journal: Electrophoresis
    1. 28
    2. 10
    3. Pages: 1518-1524
  2. Type of Article: Article
  3. ISSN: 0173-0835
  1. Abstract:

    With the increasing interest in using nanoparticles as vehicles for drug delivery and image contrast agents, there is a need to develop assays for their detection and quantitation in complex matrices to facilitate monitoring their biodistribution. In this study, we developed a CE approach for the analysis of two nanoparticles: carboxyfullerene (C3) and dendrofullerene (DF1) in both standard solutions and a serum matrix. These highly soluble, charged C-60 derivatives were characterized by CZE using either a bare or dynamically coated fused-silica capillaries. The resolution of both nanoparticles was slightly lower with the coated capillary; however, their migration times were faster. While separation of the DF1 nanoparticles using MEKC resulted in a greater number of observable peaks, the peak profile of C3 was basically unchanged regardless of whether SDS micelles were added to the running buffers or not. The MEKC and/or CZE assays were then used to quantitate the C3 and DF1 nanoparticles in spiked human serum samples. The quantitation of the nanoparticles was linear from 0-500 mu g/mL with detection limits ranging from 0.5 to 6 mu g/mL.

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External Sources

  1. DOI: 10.1002/elps.200600724
  2. WOS: 000246923300008

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