Endo-pH
Endo-pH is a cell-permeable, pH-responsive fluorescent probe based on BODIPY, with a pKa of 5.08. When pH decreases from 7.32 to 4.97, Endo-pH undergoes protonation under acidic conditions, resulting in a 79-fold increase in fluorescence intensity at 786 nm. The detection wavelengths of its protonated form are Ex/Em=688/786 nm, while the absorption wavelength of its non-protonated form is 745 nm. Endo-pH can be used for staining late endosomes in live cells and determining the fusion time of late endosomes and lysosomes.
For research use only. We do not sell to patients.
- Formula: C41H51BN6O2
- Molecular Weight:670.69
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Storage:
Please store the product under the recommended conditions in the Certificate of Analysis.
Biological Activity
Description
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: Alternatives include DMSO[1], ethanol[2], or CH2Cl2[3].
1.2 Concentration recommendation:
1.2.1 0.1 mM when using DMSO as solvent[1].
1.2.2 100 nM when using ethanol as solvent[2].
1.2.3 Ketene stock solution generated in situ from 1.0 equiv of precursor (e.g., precursor 1) when using CH2Cl2 as solvent[3].
2. Working Solution Preparation
2.1 Diluent: Alternatives include DMEM containing 10% w/v FBS[1], or CH2Cl2[3].
2.2 Working concentration:
2.2.1 0.1 mM when using DMEM containing 10% w/v FBS as diluent (no dilution step from DMSO stock)[1].
2.2.2 2.0 equiv of alkene (e.g., 3, 6, 8); 2.5 equiv of EtAlCl2 (for in situ generated ketene with Et3NHCl byproduct); 1.5 equiv of EtAlCl2 (for isolated/purified ketene); 1.1 equiv of Et3N when using CH2Cl2 as diluent[3].
2.3 Note: Adjust working solution concentration as needed; prepare fresh before use.
3. Staining Procedure
3.1 For adherent mammalian cells (U2OS, HeLa, A549 cell lines)[1]:
3.1.1 Incubation conditions: Incubate cells with 0.1 mM Endo-pH (BODIPY 6) working solution at 37°C for 60 minutes.
3.1.2 Washing steps: Wash cells with DMEM containing 10% w/v FBS.
3.2 For adherent plant cells (rice scutellar epithelium cells)[2]:
3.2.1 Incubation conditions: Add 100 nM sodium monensin to preincubation and incubation media; incubate at 30°C.
3.2.2 Washing steps: No washing steps specified.
3.3 For small-molecule ketene and alkene solutions[3]:
3.3.1 Incubation conditions:
3.3.1.1 Ketene generation: Incubate precursor (e.g., 1) with Et3N in CH2Cl2 at 22 °C for 1 h.
3.3.1.2 Lewis acid promoted cycloaddition: Add EtAlCl2 to the ketene-alkene mixture, incubate from -78 °C to 22 °C for 1.5 h (or at -78 °C for 2-3 h).
3.3.1.3 Thermal cycloaddition: Incubate ketene-alkene mixture in toluene at 120 °C for 24 h, or in CH2Cl2 at 22 °C for 12 h.
3.3.2 Washing steps: No washing steps specified.
4. Controls
4.1 Negative controls (samples without Sodium Monensin (HY-N0150) treatment)[2].
4.2 Control experiments to confirm inversion in selectivity is not due to solvent effect[3].
5. Detection & Analysis
5.1 Instrument type: Fluorescence microscope[1], electron microscope[2], NMR spectrometer[3].
5.2 Ex/Em wavelengths: Ex 688 nm; Em 786 nm[1].
5.3 Result analysis:
5.3.1 Fluorescence intensity increases significantly in acidic environments (pH ~5.0); fluorescence localizes to late endosomes (co-localizes with Rab7-RFP marker); produces far-red/near-infrared fluorescence[1].
5.3.2 Golgi cisternae in treated cells show swelling while maintaining mutual adherence; characteristic intercisternal material is visible between Golgi saccules; treated cells have larger central vacuoles compared to control cells; rough endoplasmic reticulum does not show swelling in treated cells[2].
5.3.3 Determine product yield via 1H NMR with an internal standard; determine diastereomeric ratio via 1H NMR analysis of the unpurified reaction mixture; Lewis acid promoted conditions favor exo-Ph adducts (e.g., 7a, 9a) while thermal conditions favor endo-Ph adducts (e.g., 7b, 9b); increased steric bulk of ketene alkyl substituent enhances diastereoselectivity in Lewis acid promoted reactions; ketene with non-rotatable aryl ring forms endo-Ar adduct with excellent diastereoselectivity under both thermal and Lewis acid promoted conditions[3].
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only.
Chemical Information
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Molecular Weight 670.69
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Formula C41H51BN6O2
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SMILES
CC1=CC(/C=C/C2=CC=C(N3CCN(C)CC3)C=C2)=[N+]4C1=C(C(OC)=O)C5=C(C)C=C(/C=C/C6=CC=C(N7CCN(C)CC7)C=C6)N5[B-]4(C)C
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Shipping
Room temperature in continental US; may vary elsewhere.
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Storage
Please store the product under the recommended conditions in the Certificate of Analysis.
Purity & Documentation
References
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)