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Highly Stable, Fluorescence‐Labeled Heptapeptides Substituted with a D‐Amino Acid for the Specific Detection of Oxidized Low‐Density Lipoprotein in Plasma
12
Citations
25
References
2014
Year
Highly StableProteinlipid InteractionPeptide ScienceAnalytical UltracentrifugationBioanalysisMouse PlasmaBioimagingBiochemistryD‐amino AcidFluorescence‐labeled Heptapeptides SubstitutedLipopeptidesBiomolecular EngineeringHigh Plasma StabilityVitro StabilityNatural SciencesPeptide TherapeuticLipoprotein MetabolismChemical ProbeLipid ChemistryMedicineSmall Molecules
Probes that can detect oxidized low-density lipoprotein (ox-LDL) in plasma and in atherosclerotic plaques can be useful for the diagnosis, prevention, and treatment of atherosclerosis. Recently, we have reported that two heptapeptides (Lys-Trp-Tyr-Lys-Asp-Gly-Asp, KP6) coupled to fluorescein isothiocyanate (FITC) through the ε-amino group of N-terminus Lys in the absence/presence of 6-amino-n-caproic acid (AC) linker to FITC-(FITC)KP6 and (FITC-AC)KP6-can be useful as fluorescent probes for the specific detection of ox-LDL. In this study, to develop the fluorescent peptides with high plasma stability for the specific detection of ox-LDL, we investigated the interaction of (FITC)KP6 and (FITC-AC)KP6 substituted with D-Lys at the N-terminus-(FITC)dKP6 and (FITC-AC)dKP6-with ox-LDL, and the in vitro stability of these peptides in mouse plasma. (FITC)dKP6 and (FITC-AC)dKP6 bound with high specificity to ox-LDL in a dose-dependent manner, and also to ox-LDL in the mouse plasma. Furthermore, (FITC)dKP6 was more stable than (FITC)KP6 in mouse plasma (102.1% versus 69.0% remained after 1 h). These findings strongly suggest that (FITC)dKP6 and (FITC-AC)dKP6 may be effective fluorescent probes with higher plasma stability than (FITC)KP6 and (FITC-AC)KP6 for the specific detection of ox-LDL.
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