CQPP
CQPP is a Fluorescent probe designed for monitoring polarity changes in the cellular microenvironment, including polarity tracking of lipid droplets/nuclei during ferroptosis. CQPP exhibits ratiometric fluorescence emission and fluorescence lifetime variations in response to polarity changes; a nonpolar environment stimulates fluorescence from the locally excited (LE) state, while a polar environment drives solvation relaxation to the intramolecular charge transfer (ICT) state, which attenuates the LE emission at ~470 nm and simultaneously enhances the ICT emission at ~670 nm. CQPP binds to intranuclear DNA through electrostatic interactions and hydrogen bonds in the DNA minor groove, which enhances its emission at ~670 nm and prolongs its fluorescence lifetime. CQPP can simultaneously target lipid droplets (green LE fluorescence) and the nucleus (red ICT fluorescence). The detection wavelengths of CQPP are Ex/Em = 405/470 nm and Ex/Em = 405/670 nm, and it also supports fluorescence lifetime imaging via 810 nm two-photon excitation.
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- Fòrmula: C34H36IN5O2
- Peso molecular:673.59
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Almacenamiento:
Please store the product under the recommended conditions in the Certificate of Analysis.
Actividad biológica
Descripciòn
In Vitro
Guide (The following is our recommended protocol. This protocol is for guidance only and should be modified according to your specific needs).
1. Stock Solution Preparation
1.1 Solvent: 1,4-dioxane, DMSO, or Tris-HCl buffer.
1.2 Concentration recommendation: 2 μM, 5 μM, or 2 mM.
Note: Paper [1] uses stock concentrations of 2 μM or 5 μM (used directly without dilution), while Paper [2] uses a 2 mM stock concentration (diluted to working solution).
2. Working Solution Preparation
2.1 Diluent: Cell culture medium.
2.2 Working concentration: 5 μM.
2.3 Note: Adjust working solution concentration as needed; prepare fresh before use.
3. Staining Procedure
3.1 For adherent cells (HT-1080 cells)[1][2]:
3.1.1 Incubation conditions:
3.1.1.1 Incubate with 5 μM CQPP for 2 h.
3.1.1.2 Co-incubate with 5 μM CQPP and 2 μM ferroptosis inducer for up to 4 h.
3.1.1.3 For pre-treated samples, incubate with 10 μM ferroptosis inducer for 6 h prior to CQPP staining.
3.1.2 Washing steps: No washing steps required.
4. Controls
4.1 Negative control: Untreated HT-1080 cells.
4.2 Apoptosis control: HT-1080 cells treated with cisplatin.
5. Detection & Analysis
5.1 Instrument type: Confocal fluorescence microscope, two-photon fluorescence microscope, fluorescence lifetime imaging microscope.
5.2 Ex/Em wavelengths:
5.2.1 One-photon excitation: λₑₓ = 405 nm; dual emission: λₑₘ = 470 nm (green fluorescence for lipid droplets), λₑₘ = 670 nm (red fluorescence for nucleus).
5.3 Result analysis:
5.3.1 Fluorescence intensity changes: In non-ferroptotic cells, green fluorescence intensity (lipid droplets) is high and cytoplasmic red fluorescence intensity is low; during ferroptosis, green fluorescence intensity from lipid droplets decreases, cytoplasmic red fluorescence intensity slightly increases, and the ratiometric value (I470ₙₘ/I670ₙₘ) decreases.
5.3.2 Fluorescence localization: Green fluorescence localizes to lipid droplets; red fluorescence localizes to the nucleus.
5.3.3 Fluorescence lifetime changes: In non-ferroptotic cells, lipid droplets show a fluorescence lifetime of ~1.46 ns, and nucleus shows ~2.01-2.11 ns; during ferroptosis, lipid droplet fluorescence lifetime decreases to ~0.77 ns while nucleus lifetime remains unchanged; during apoptosis, nucleus lifetime increases while lipid droplet lifetime shows no obvious change.
5.3.4 Polarity-related changes: Green fluorescence from lipid droplets shifts to increased red fluorescence in cytoplasm as lipid droplet polarity increases during ferroptosis; ratiometric images show a polarity gradient from low (red) to high (blue), with gradient homogenization over ferroptosis progression.
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only.
Chemical Information
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Peso molecular 673.59
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Fòrmula C34H36IN5O2
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SMILES
CCN(C1=CC2=C(C=C(C(O2)=O)/C=C/C3=[N+](C4=CC(N5CCN(CC5)C6=CC=NC=C6)=CC=C4C=C3)C)C=C1)CC.[I-]
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Envío
Room temperature in continental US; may vary elsewhere.
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Almacenamiento
Please store the product under the recommended conditions in the Certificate of Analysis.
Pureza y Documentación
Referencias
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)