| Literature DB >> 19888470 |
Caroline Quin1, Jan Trnka, Alison Hay, Michael P Murphy, Richard C Hartley.
Abstract
A new cyclic nitrone spin trap, [4-(3',3'-dibutyl-2'-oxy-3'H-isoindol-5'-yloxy)butyl]triphenylphosphonium bromide (MitoSpin), bearing a lipophilic cation has been prepared by a route that involves a novel Parham-type lithiation-cyclization of an isocyanate to give the isoindolinone core. MitoSpin accumulates in a membrane potential dependent way in energized mitochondria and its oxidation could potentially be used in the study of oxidative stress resulting from reactive oxygen species generated in mitochondria.Entities:
Year: 2009 PMID: 19888470 PMCID: PMC2767131 DOI: 10.1016/j.tet.2009.07.081
Source DB: PubMed Journal: Tetrahedron ISSN: 0040-4020 Impact factor: 2.457
Scheme 1Spin-trapping with nitrones.
Figure 1Mitochondria-targeted spin traps.
Scheme 2Intended spin-trapping of radicals (Y•) by MitoSpin 6.
Scheme 3Synthesis of MitoSpin 6.
Figure 2Uptake of MitoSpin by energized mitochondria. An electrode sensitive to the TPP moiety of MitoSpin was inserted into 3 mL KCl buffer supplemented with 4 μg/mL rotenone with stirring at 37 °C and five consecutive 1 μM additions of MitoSpin were used to calibrate the response of the ion-selective electrode (arrowheads). The addition of rat liver mitochondria (mitos; 1 mg protein/mL), succinate (10 mM), and FCCP (1 μM) are indicated. This result is typical of three independent measurements.
Scheme 4
Figure 3EPR spectrum of MitoSpinox 23, g=2.0071, AN=7.6 G, the bar indicates the scale for the magnetic field strength in Gauss.
Scheme 5