4.5 Article

Restricted access magnetic materials prepared by dual surface modification for selective extraction of therapeutic drugs from biological fluids

Journal

JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS
Volume 324, Issue 4, Pages 410-417

Publisher

ELSEVIER
DOI: 10.1016/j.jmmm.2011.07.058

Keywords

Magnetic particle; Porous silica; Restricted access material; Solid-phase extraction; Biological fluid; Clinical analysis

Funding

  1. National Natural Science Foundation of China [20775053, 20875067]

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Magnetic porous particles with dual functionality have been prepared by a two-step procedure and evaluated as novel restricted access materials for extraction of therapeutic agents from biological fluids. The magnetic silica particles served as scaffolds were first modified with diol groups, which were then converted to octadecyl esters through reaction with stearoyl chloride. In the second step, the octadecyl esters on the exterior surface were hydrolyzed by the action of lipase to yield magnetic particles with hydrophobic reversed-phase ligands on the inner surface and biocompatible diol groups on the outer surface. The restricted access behavior of the resulting materials was confirmed by differential binding of small molecules such as methotrexate (MTX), leucovorin (LV) and folic acid (FA) relative to bovine serum albumin. While MTX, LV and FA were all bound to the magnetic particles with high affinity, the adsorption of the protein was markedly reduced due to size exclusion effect. The utility of the magnetic particles for sample preparation was tested in solid-phase extraction of MTX, LV and FA from spiked human serum and the effects of the SPE conditions on the recovery of the analytes were systematically studied. Moreover, the magnetic particle-based sample preparation procedure coupled with reversed-phase liquid chromatography analysis was validated in terms of specificity, linearity and reproducibility. The method was shown to be free from interference of endogenous compounds and linear over the concentration range of 0.5-10 mu g/mL for the three drugs studied. The limits of detection for the three drugs in serum were in the range of 0.160-0.302 mu g/mL. Reproducibility expressed as the RSD of the recovery for ten replicated extractions at three different concentrations was found to be less than 8.93%. With a unique combination of surface functionality with magnetic cores, the restricted access magnetic particles may be adapted in automated and high throughput protocols for routine analysis of a large volume of clinical samples. (C) 2011 Elsevier B.V. All rights reserved.

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