| Literature DB >> 29503859 |
Eszter Boros1,2, Omar R Pinkhasov1, Peter Caravan1,3.
Abstract
BACKGROUND: Current analytical methods for characterizing pharmacokinetic and metabolic properties of positron emission tomography (PET) and single photon emission computed tomography (SPECT) probes are limited. Alternative methods to study tracer metabolism are needed. The study objective was to assess the potential of high performance liquid chromatography - inductively coupled plasma - mass spectrometry (HPLC-ICP-MS) for quantification of molecular probe metabolism and pharmacokinetics using stable isotopes.Entities:
Keywords: Hplc-Icp-ms; Metabolite analysis; Preclinical studies; Radiometals
Year: 2018 PMID: 29503859 PMCID: PMC5824709 DOI: 10.1186/s41181-017-0037-5
Source DB: PubMed Journal: EJNMMI Radiopharm Chem ISSN: 2365-421X
Fig. 1Chemical structures of In-FBP15, Ga-FBP17, Ga-FBP18 and In-FBP19
Fig. 2Example of simultaneous multi-element HPLC-ICP-MS analysis of a mixture of different compounds used in imaging applications at approximate compound concentrations of 1 μM. Data is normalized to the most dilute sample to be represented on the same scale
Fig. 3Overlaid HPLC-ICP-MS chromatograms of Ga-FBP18 (a) and In-FBP19 (b) for 5 min (black), 15 min (dark grey) and 60 min (light grey) post injection. Identified intact complex and metabolite groups are denoted in color. Panels C and D: Quantification of total probe and metabolite groups as a function of time post injection for Ga-FBP18 (c) and In-FBP19 (d)
Fig. 4Quantification of intact Ga-FBP18 (a) and In-FBP19 (b) based on reverse phase HPLC-ICP-MS from single compound injection (filled triangles) and co-injection (open triangles). Solid line is monoexponential fit to the data
Fig. 5SEC HPLC-ICP-MS chromatograms of Ga-FBP18 plasma sample 15 min post injection (black) and pure Ga-transferrin (red) (a) or In-FBP19 plasma sample 15 min post injection (black) and In-transferrin (red) (b). Elution time of intact complex is indicated by grey box