PubMed Health⌕ Search

PubMed · 10941668

Graphitized carbons for solid-phase extraction.

Abstract

The objective of this review is to provide updated information about the most important features of graphitized carbonaceous sorbents used for solid-phase extraction (SPE) of organic compounds from liquid natural matrices or extracts. The surface characteristics of graphitized carbon blacks and porous graphitic carbons are described which are responsible for the various types interactions (hydrophobic, electronic and ion-exchange) with analytes. The method development is given which is based on the prediction from liquid chromatographic retention data obtained using porous graphitic carbon. Emphasis is placed on their capability for trapping very polar and water-soluble analytes from aqueous samples. Comparison is made between carbon-based SPE sorbents and other reversed-phase materials such as octadecyl silicas and highly cross-linked copolymers. Especially, the difficulty encountered for the desorption of some strongly retained analytes is explained by LC data and solutions are given for optimizing the composition and volume of the desorption solution. Many examples illustrate the various common features of graphitized carbons which are the extraction of very polar analytes and multiresidue extractions. Some applications are specific to graphitized carbon black due to the presence of surface functional groups. They include the extraction of anionic compounds such as benzene and naphthalene sulfonates or acidic pesticides. Other applications are specific to porous graphitic carbon due to its flat and homogeneous surface. One example is the trace extraction of coplanar polychlorinated biphenyls (PCBs), dibenzo-p-dioxins and dibenzofurans from other PCB congeners.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

M C Hennion. 2000-07-14. Graphitized carbons for solid-phase extraction.. https://doi.org/10.1016/s0021-9673(00)00085-6

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Method for multiresidue determination of halogenated aromatics and PAHs in combustion-related samples.

Flue gas and fly ash samples have a complex composition. Thus, thorough extraction and selective cleanup prior to analysis are essential. This paper presents an evaluated method for determining halogenated dibenzo-p-dioxins (PXDD), halogenated dibenzofurans (PXDF), chlorinated biphenyls (PCB), chlorobenzenes (CBz), -phenols (CPh), dibenzo-p-dioxins (DD), dibenzofurans (DF), and polycyclic aromatic hydrocarbons (PAH) in a single sample. Since these combustion byproducts are ubiquitous, harmful environmental contaminants it is very important to obtain reliable assessments of them: especially specific PCDD/F and PCB congeners with Ah-receptor mediated toxicity. The reported method for this purpose includes techniques such as solid-phase extraction, Soxhlet-Dean-Stark extraction, cleanup using open liquid chromatographic columns, and finally GC/MS analysis/determination with quantification by the isotope dilution technique. The validation results presented here show good reproducibility for PXDD/F and PCB and are satisfactory for CPh, CBz, and PAH. An extraction efficiency test revealed that a nonpolar solvent did not completely extract a few analytes, i.e., diCPh and fluorene, which appear to require a more polar extraction agent. To pinpoint and minimize the loss of analytes, specific studies on reductions of their amounts during sample concentration were performed, showing that traditional rotary evaporation and nitrogen blow-down produce equally good results as a novel technique.

Chromatography, Liquid↗

Characterization of antisense oligonucleotide-peptide conjugates with negative ionization electrospray mass spectrometry and liquid chromatography-mass spectrometry.

Covalent post-synthesis or solid-phase conjugation of peptides to oligonucleotides has been reported as a possible method of delivering antisense oligonucleotides into cells. While synthesis strategies for preparing these conjugates have been widely addressed, few detailed reports on their structural characterization have been published. This paper discusses the negative ion electrospray ionization mass spectrometric (ESI-MS) and liquid chromatography-mass spectrometric (LC-MS) analysis of various peptide-oligonucleotide conjugates ranging from small T(6)-nucleopeptides to large peptide-oligonucleotide phosphorothioate conjugates and ribozyme-peptide hybrids (3-13 kDa). Molecular weight determination with mass errors of 0.1-3.1 amu were conducted, employing on-line IP-RP-HPLC and high m/z range mode to facilitate the analysis of large compounds and difficult modifications.

Chromatography, Liquid↗

LC-MS-MS determination of brostallicin in human plasma following automated on-line SPE.

LC-MS-MS method using automated on-line solid-phase extraction (SPE) has been developed and validated for the quantitation of brostallicin (I), a new distamycin derivative, in human plasma. I is a DNA minor groove binder currently under phase I-II clinical evaluation as an anticancer drug. Plasma (0.4 ml) was spiked with 0.2 ml stable label IS solution and placed in a 96-well plate maintained at +4 degrees C. Aliquots of 0.1 ml of prepared samples were loaded into the on-line SPE HySphere Resin SH cartridges (10 mm x 2 mm ID) and the analytes back eluted with the mobile phase into LC-MS-MS system. A Platinum Cyano column (100 mm x 4.6 mm, 3.6 microm) was used to perform the chromatographic analysis. The mobile phase was acetonitrile-ammonium formate buffer (pH 3.5; 20 mM) (70:30, v/v) at a flow rate of 1.0 ml/min. LC flow was split so that 300 microl/min was directed toward the mass spectrometer interface. Retention time of I was 2.6 min and the total cycle time was 8 min. MS detection used an Applied Biosystems/MDS SCIEX API 365 with a TurboIonSpray interface and MRM (m/Z: 725/257 for I and m/Z: 729/257 for IS) operated in positive ion mode. The method was validated over the calibration range 0.124-497 ng/ml. A negligible carry-over effect from the system was observed. In spite of the known instability of I in human plasma (about 20% decrease over 12 h), the ratio analyte/IS peak area showed good stability over the analysis time required for 96 samples. The automated on-line SPE method can be considered as a valid alternative to the off-line manual SPE procedure previously developed.

Chromatography, Liquid↗