Monitoring lipid peroxidation within foam cells by lysosome-targetable and ratiometric probe.
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Summary
Foam-LPO, the first fluorescent LPO probe specifically targeting lysosomes, has been developed through straightforward synthesis using low-cost reagents and benefits the understanding in the initiation and control factors of atherosclerosis.
- Type
- article
- Published
- 2015-07-31
- Cited by
- 63
- References
- 28
- OpenAlex
- https://openalex.org/W954573795
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:33057622
Keywords
Chemistry, Lysosome, Lipid peroxidation, Fluorophore, Biophysics
References
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- Role of oxygen free radicals in cancer development.
- Evidence of foam cell and cholesterol crystal formation in macrophages incubated with oxidized LDL by fluorescence and electron microscopy.
- Enhanced Macrophage Degradation of Biologically Modified Low Density Lipoprotein
- Macrophage Foam Cell Formation with Native Low Density Lipoprotein*
- Fluorescent BODIPY-based Zn(II) complex as a molecular probe for selective detection of neurofibrillary tangles in the brains of Alzheimer's disease patients.
- High-resolution single-turnover mapping reveals intraparticle diffusion limitation in Ti-MCM-41-catalyzed epoxidation.
- The use of cis-parinaric acid to measure lipid peroxidation in cardiomyocytes during ischemia and reperfusion.
- Oxidation and atherosclerosis
- Mass spectrometric characterization of the oxidation of the fluorescent lipid peroxidation reporter molecule C11-BODIPY(581/591).
Cited by
- A ratiometric fluorescent probe based on a Bodipy-Coumarin conjugate for sensing of nitroxyl in living cells
- A photostable AIE fluorogen for lysosome-targetable imaging of living cells.
- Discerning the Chemistry in Individual Organelles with Small-Molecule Fluorescent Probes.
- Wahrnehmung der chemischen Prozesse in einzelnen Organellen mit niedermolekularen Fluoreszenzsonden
- Amphiphilic BODIPY derivatives: the solvophobic effect on their photophysical properties and bioimaging in living cells.
- Targetable and fixable rotor for quantifying mitochondrial viscosity of living cells by fluorescence lifetime imaging.
- Assembly of BODIPY-carbazole dyes with liposomes to fabricate fluorescent nanoparticles for lysosomal bioimaging in living cells.
- Facile and Sensitive Near-Infrared Fluorescence Probe for the Detection of Endogenous Alkaline Phosphatase Activity In Vivo.
- A near-infrared fluorescent probe based on BODIPY derivative with high quantum yield for selective detection of exogenous and endogenous cysteine in biological samples.
- Through‐Bond Energy Transfer Cassette with Dual‐Stokes Shifts for “Double Checked” Cell Imaging
- Lysosomal oxidation of Low Density Lipoproteins
- A ratiometric fluorescent probe for formaldehyde in aqueous solution, serum and air using aza-cope reaction
- Quantitatively monitoring oxygen variation in endoplasmic reticulum with a fluorophore-phosphor energy transfer cassette.
- Substituent effect: A new strategy to construct a ratiometric fluorescent probe for detection of Al3+ and imaging in vivo
- Detecting and Imaging of γ-Glutamytranspeptidase Activity in Serum, Live Cells, and Pathological Tissues with a High Signal-Stability Probe by Releasing a Precipitating Fluorochrome.
- Mitochondria-targeted near-infrared fluorescent probe for the detection of carbon monoxide in vivo.
- A fluorescent flavonoid for lysosome detection in live cells under "wash free" conditions.
- Lysosomal oxidation of LDL alters lysosomal pH, induces senescence, and increases secretion of pro-inflammatory cytokines in human macrophages
- Lysosome-Targeted Single Fluorescence Probe for Two-Channel Imaging Intracellular SO2 and Biothiols
- One-Step Synthesis of Label-Free Ratiometric Fluorescence Carbon Dots for the Detection of Silver Ions and Glutathione and Cellular Imaging Applications.
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