Biotin-V
Biotin-V is a fluorescent probe targeting the biotin receptor (BiR), which can be used to detect changes in intracellular viscosity in cancer cells and tumor tissues. Biotin-V consists of a viscosity-responsive TICT (twisted internal charge transfer) fluorophore and a biotin-targeting moiety. In a high-viscosity environment, intramolecular rotation is restricted, which reduces non-radiative transitions and enhances fluorescence intensity and fluorescence lifetime. Biotin-V enters BiR-positive cancer cells via biotin receptor-mediated uptake, and mainly localizes to mitochondria, enabling dual-modal viscosity imaging (fluorescence intensity imaging and fluorescence lifetime imaging) (Ex/Em = 540/608 nm; cell imaging Ex/Em = 561/570-620 nm).
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- CAS No.: 2989973-69-3
- Formule: C30H36BrN7OS2
- Masse moléculaire:654.69
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Stockage:
Please store the product under the recommended conditions in the Certificate of Analysis.
Activité biologique
Operating Instructions
(The following is a recommended experimental protocol for guidance only; adjust according to your specific requirements)
1. Stock Solution Preparation
1.1 Solvent: Methanol.
1.2 Recommended concentration: 10 μM.
2. Working Solution Preparation
2.1 Serum-free medium or PBS is generally used. Proteins and esterases in serum may interfere with staining results or cause dye hydrolysis.
2.2 Working concentrations: 2.0 μM; 5 μM; 10 μM.
2.3 Notes: Adjust the working solution concentration as needed; prepare fresh before use.
3. Staining Procedures
3.1 Sample types: Cell samples and tumor tissue samples.
3.1.1 Adherent cells (HeLa, 4T1, HepG2, RAW264.7, A549, 3T3): No trypsin digestion is required before staining.
3.1.2 Suspension cells: Not mentioned (no relevant literature sources, thus omitted)
3.1.3 Tumor tissues: Tumor tissues from mouse tumor-bearing models.
3.2 Incubation conditions:
3.2.1 Adherent cancer cells/normal cells: Incubate with 2.0 μM Biotin-V at 37°C for 30 min, protected from light as required for fluorescence imaging.
3.2.2 Viscosity-stimulated HeLa cells: Pre-treat with 10 μM nystatin or monensin for 60 min first, then incubate with 5 μM Biotin-V at 37°C for 30 min, protected from light as required for fluorescence imaging.
3.2.3 In vivo mouse model: Intraperitoneally inject 100 μL of 5 μM Biotin-V; incubation time is determined by the imaging timeline.
4. Control Setup
4.1 Negative control: Biotin receptor-negative normal cells (RAW264.7 macrophages, 3T3 cells) stained under the same conditions.
4.2 Blocking control: Pre-treat HeLa cells with 1 mM D-biotin for 60 min before incubation with 2.0 μM Biotin-V.
4.3 Blank control: Normal mice injected with Biotin-V, used to exclude non-targeted fluorescence.
5. Detection and Analysis
5.1 Instruments: Laser confocal fluorescence microscope; fluorescence lifetime imaging microscope.
5.1.1 Excitation/emission wavelengths for cell imaging: λex=561 nm, λem=570-620 nm (corresponding to the red channel for Biotin-V); λex=488 nm, λem=500-550 nm (corresponding to the green channel for Mito Tracer Green).
5.1.2 Excitation/emission wavelengths for fluorescence lifetime imaging (FLIM): Pulsed excitation at 561 nm, fluorescence detected at 575-605 nm.
5.1.3 Excitation wavelength for solution spectrum measurement: λex=540 nm.
5.2 Result analysis:
5.2.1 Changes in fluorescence intensity: In solution systems, fluorescence intensity increases by approximately 80-fold when viscosity rises; fluorescence intensity increases by approximately 2-fold in HeLa cells pre-treated with nystatin and by approximately 2.5-fold in HeLa cells pre-treated with monensin; fluorescence intensity in tumor-bearing mice is 4-fold higher than that in normal mice.
5.2.2 Fluorescence localization: Localizes to mitochondria in cancer cells, verified by co-localization with Mito Tracer Green (Pearson's co-localization coefficient=0.89); selectively accumulates in biotin receptor-positive cancer cells and tumor tissues.
5.2.3 Color change: Emits distinct red fluorescence under high viscosity conditions, while fluorescence is negligible in low viscosity environments.
5.2.4 Changes in fluorescence lifetime: When solution viscosity rises, the lifetime extends from 0.514 ns to 3.02 ns; in HeLa cells, the average lifetime extends from 0.813 ns to 1.33 ns after nystatin treatment and to 1.57 ns after monensin treatment; the fluorescence lifetime of tumor tissues (1.468 ns) is longer than that of liver tissues (1.167 ns).
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only.
Fluorescence lifetime imaging with Biotin-V shows that the fluorescence lifetime of tumor tissue (1.468 ns) is higher than that of liver tissue (1.167 ns), indicating higher viscosity in tumor tissue[1].
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only.
Chemical Information
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CAS No. 2989973-69-3
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Masse moléculaire 654.69
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Formule C30H36BrN7OS2
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SMILES
CN(C)C(C=C1)=CC=C1/C=C/C2=[N+](C3=CC=CC=C3S2)CC4=CN(N=N4)CCCCC[C@@H]5[C@@]6([H])[C@@](NC(N6)=O)([H])CS5.[Br-]
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Livraison
Room temperature in continental US; may vary elsewhere.
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Stockage
Please store the product under the recommended conditions in the Certificate of Analysis.
Pureté et documentation
Références
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)