missing translation for 'onlineSavingsMsg'
Learn More

Invitrogen™ CellEvent™ Caspase-3/7 Green ReadyProbes™ Reagent

Product Code. 13599180
Change view
Click to view available options
Quantity:
1.75 mL kit
Unit Size:
1.75mL
1 product options available for selection
Product selection table with 1 available options. Use arrow keys to navigate and Enter or Space to select.
Product Code. Quantity Unit Size
13599180 1.75 mL kit 1.75mL
Use arrow keys to navigate between rows. Press Enter or Space to select a product option. 1 options available.
1 options
This item is not returnable. View return policy
Product Code. 13599180 Supplier Invitrogen™ Supplier No. R37111
Curiosity Goes Beyond
Use promo code 27966
View all promotions
 Restricted Item
In Stock
Add to basket
Add to basket

missing translation for 'validMainframeMsg'

This item is not returnable. View return policy

Includes

1 x 1.75mL dropper bottles

Fluorogenic, no-wash indicator for live- and fixed-cell applications

Activation of caspase-3 is an early indicator of apoptosis.

  • Allows rapid and sensitive detection of cells destined for cell death
  • Formulated as room temperature-stable solution and comes in convenient dropper bottle: tip and drip2 drops/mL to stain cells
  • Optimized caspase-3/7 substrate for apoptosis analysis
  • Simple and fast no-wash protocol helps preserve delicate apoptotic cells
  • Compatible with both live-cell fluorescence imaging and formaldehyde-based fixation methods
  • Ready-to-use liquid formulation: no need to dilute, weigh, or pipet
  • Four amino acid peptide (DEVD) conjugated to a nucleic acid-binding dye that is nonfluorescent when not bound to DNA: The Caspase-3/7 Green reagent is intrinsically nonfluorescent, as DEVD peptide inhibits binding of dye to DNA
  • Upon activation of caspase-3/7 in apoptotic cells, DEVD peptide is cleaved and free dye can bind DNA, generating bright green fluorescence
  • Apoptotic cells with activated caspase-3/7 will have bright green nuclei, while cells without activated caspase 3/7 will show minimal fluorescence
  • Fluorescent signal survives fixation and permeabilization, allowing end-point assays and immunocytochemistry-based methods
  • Optimization may be needed for some cell types, conditions, and applications: In such cases, simply add more or fewer drops until optimal staining intensity is obtained
  • If desired, combine with red or far-red nuclear stain for total cell count
  • Excited with maximum at 502nm and has emission maximum at 530nm
  • It is detected through standard GFP and FITC filters

Apoptosis, Apoptosis Related Factors, Caspase Activation, Cell Analysis, Cell Viability, Proliferation and Function, Cellular Imaging, High-Content Screening (HCS)

TRUSTED_SUSTAINABILITY

Specifications

Quantity 1.75 mL kit
Format Dropper Bottle
Product Type Caspase 3/7 Reagent
Content And Storage 1 × 1.75 mL dropper bottles

Store at ≤ 25°C.
Compatible Cells Mammalian Cells
Excitation/Emission 502/530
Color Green
Product Line CellEvent, ReadyProbes
Detection Method Fluorescence
For Use With (Application) Cell Imaging
For Use With (Equipment) Confocal Microscope, Floid™ Cell Imaging System, Fluorescence Microscope, Flow Cytometer, Floid™ Cell Imaging System
Label Type Other Label(s) or Dye(s)
Show More Show Less
How many tests can I perform with each Invitrogen CellEvent Caspase-3/7 Green ReadyProbes product?

The number of tests depends on the final assay volume. At two 40 µL drops per mL staining solution, Invitrogen CellEvent Caspase-3/7 Green ReadyProbes Reagent, Cat. No. R37111, yields approximately 200 tests. Practical yield may be lower because of pipetting loss, dead volume, concentration optimization, and drop-size variation.

How should Invitrogen CellEvent Caspase-3/7 Green ReadyProbes Reagents be stored, and what formats are supplied?

Prepare the working staining solution fresh each day, protect the reagents from light, and avoid repeated freeze-thaw cycles. The shipped products are stable for six months from receipt when stored as directed. Invitrogen CellEvent Caspase-3/7 Green ReadyProbes Reagent, Cat. No. R37111, is supplied as a 12.5X solution stored at 15-30°C.

Can cleaved Invitrogen CellEvent Caspase-3/7 Detection Reagents stain cytoplasmic RNA?

Cytoplasmic RNA staining may occur after Invitrogen CellEvent Caspase Detection Reagents are cleaved. The intended assay readout is nuclear fluorescence from released dye binding to nucleic acids in caspase-positive cells.

How long can Invitrogen CellEvent Caspase Detection Reagents remain in continuous culture?

For continuous culture experiments the Invitrogen CellEvent Caspase Detection Reagents can be maintained in complete cell culture medium at its working concentration.

Can I use a nuclear counterstain with Invitrogen CellEvent Caspase Detection Reagents?

Yes, but add the nuclear counterstain after the Invitrogen CellEvent Caspase reagent signal has developed. For kinetic or continuous-culture experiments, add a Hoechst nuclear stain at the endpoint to reduce potential effects on normal cell physiology. Nuclear counterstain dyes may compete for nucleic acid binding, so optimize the combination.

Can Invitrogen CellEvent Caspase Detection Reagents be multiplexed with fluorescent antibodies or other probes?

Yes, when the labels are spectrally and chemically compatible. For live-cell surface labeling, apply and optimize the surface label before adding the CellEvent Caspase reagent. For intracellular immunofluorescence, allow the CellEvent Caspase reagent signal to develop in living cells before fixation, permeabilization, and antibody staining. Use single-color controls to evaluate spectral overlap, background, and staining sequence effects.

Can Invitrogen CellEvent Caspase-labeled cells be fixed, and can previously fixed cells be stained?

Invitrogen CellEvent Caspase-labeled living cells can be fixed after signal development, but previously fixed cells cannot be stained for caspase-dependent signal. Add CellEvent Caspase Detection Reagents to living cells before fixation. After signal development, cells may be fixed with 4% paraformaldehyde for 20 min at room temperature and washed three times as one example. Fluorescence may remain detectable after fixation, but retention depends on fixation, washing, storage, and imaging conditions. Image fixed samples promptly or verify the required storage interval. Wash steps may remove loosely attached apoptotic cells.

Can I combine Invitrogen CellEvent Caspase-3/7 Green Detection Reagent with PrestoBlue Cell Viability Reagent?

Yes. Invitrogen CellEvent Caspase-3/7 Green Detection Reagent has been demonstrated in combination with Invitrogen PrestoBlue Cell Viability Reagent in the same sample. CellEvent Caspase reagent fluorescence reports activated caspase, while PrestoBlue Cell Viability Reagent reports cellular metabolic activity as an indicator of viability. Follow the instructions for each reagent and use single-reagent controls to evaluate signal interference.

Can I quantify Invitrogen CellEvent Caspase Detection Reagents with a fluorescence microplate reader?

Yes. A compatible fluorescence microplate reader can measure Invitrogen CellEvent Caspase reagent fluorescence as a population-level whole-well response. Optimize cell density, treatment conditions, assay timing, and reader settings, and include untreated and induced controls. Use imaging when single-cell localization or percentage-positive measurements are required.

What controls should I include in an Invitrogen CellEvent Caspase experiment?

Include untreated or vehicle-treated cells, an induced positive control, a no-reagent background control, and an inhibitor-pretreated condition when appropriate. The source protocol lists camptothecin with Z-DEVD-FMK for caspase-3/7 and staurosporine with Z-IETD-FMK or Z-LEHD-FMK for caspase-8 or caspase-9. Optimize inducer and inhibitor concentrations and timing for the cell model.

How can I quantify Invitrogen CellEvent Caspase activity by high-content imaging?

Quantify nuclear fluorescence using measurements such as percentage of caspase-positive cells, nuclear fluorescence intensity, and nuclear morphology. Use consistent acquisition settings and define positive thresholds relative to untreated controls.

Which fluorescence filters should I use with Invitrogen CellEvent Caspase Detection Reagents?

CellEvent Caspase-3/7 Green, Caspase-8 Green, and Caspase-9 Green Detection Reagents, which have approximate excitation/emission maxima of 502/530 nm. Use a Texas Red dye optical configuration for CellEvent Caspase-3/7 Red Detection Reagent, which has approximate maxima of 590/610 nm.

Can Invitrogen CellEvent Caspase Detection Reagents be used with suspension, primary, or stem cells?

Yes. The protocol can be adapted to additional cell types, but different cell models will require optimization. The user guide protocol was optimized using HeLa, A673, and U-2 OS cells. When evaluating a new cell model, titrate the reagent, verify induction conditions, and include positive, negative, and inhibitor controls.

Can Invitrogen CellEvent Caspase Detection Reagents be used with both 2D and 3D cell models?

Yes. Invitrogen CellEvent Caspase Detection Reagents may remain in complete medium during extended culture of planar 2D and 3D models. For spheroids, organoids, or other thick models, optimize reagent working concentration, treatment conditions, imaging depth, and analysis because geometry and diffusion can affect the measured response.

Can Invitrogen CellEvent Caspase Detection Reagents be used for time-lapse imaging with an on-stage incubator?

Yes. Use an environmentally controlled microscope or on-stage incubator maintained at the required culture conditions such as the Invitrogen EVOS M7000 Imaging System with the Invitrogen EVOS Onstage Incubator.

Do Invitrogen CellEvent Caspase Detection Reagents require washing or medium replacement?

No. Invitrogen CellEvent Caspase Detection Reagents are designed for add-and-read use in complete culture medium or compatible physiological buffer. Medium composition and cell type can affect performance, so optimize reagent concentration and acquisition settings for new models. Avoiding a wash step may also reduce loss of loosely attached apoptotic or dying cells.

When should Invitrogen CellEvent Caspase fluorescence appear?

Signal timing depends mainly on when the target caspase becomes active. For endpoint measurements, allow 30-60 minutes at 37°C after adding the reagent before measurement.

What working concentration should I use for Invitrogen CellEvent Caspase Detection Reagents?

Start at 5 µM for Invitrogen CellEvent Caspase-3/7 Green, Caspase-3/7 Red, Caspase-8 Green, and Caspase-9 Green Detection Reagents; optimize within 2-10 µM for a new model. For CellEvent Caspase-3/7 Green ReadyProbes Reagent, add two 40 µL drops per mL of complete medium.

How do I prepare and run an endpoint Invitrogen CellEvent Caspase assay?

Add a freshly prepared 10X Invitrogen CellEvent Caspase staining solution to living cells at a 1:10 dilution in complete culture medium or a compatible physiological buffer. Treat the cells with the selected apoptosis inducer as required, incubate with the reagent for 30-60 minutes at 37°C, and measure fluorescence. Cell lysis, permeabilization, and washing are not required before measurement.

Can I measure caspase-8, caspase-9, and caspase-3/7 in the same experiment?

Yes, but use matched parallel wells for Invitrogen CellEvent Caspase-3/7 Green, Caspase-8 Green, and Caspase-9 Green Detection Reagents since their spectra overlap, so they are not distinguishable in the same fluorescence channel when combined. CellEvent Caspase-3/7 Red Detection Reagent may be paired with either green reagent after experimental verification with single-color controls.

Why can different mammalian cell types show different caspase responses?

Caspase responses can vary because cell type, culture medium, cell density, treatment, pathway composition, and activation timing affect staining and signal. Evaluate new cell models with untreated, induced, and inhibitor-treated controls.

When should I use Annexin V instead of an Invitrogen CellEvent Caspase Detection Reagent?

Choose Annexin V to detect phosphatidylserine exposure at the plasma membrane, and choose Invitrogen CellEvent Caspase Detection Reagents to detect activated caspases and nuclear fluorescence. The methods measure different apoptotic events and should not be treated as interchangeable.

When should I choose an Invitrogen CellEvent Caspase assay instead of a luminescence-based caspase assay?

Choose Invitrogen CellEvent Caspase Detection Reagents when you need live-cell monitoring, kinetic measurements, image-based cellular context, or signal that can be retained after fixation. Luminescence-based caspase assays commonly lyse cells and generate a population-level well signal for plate-based endpoint quantitation. Invitrogen CellEvent Caspase assays can also be measured with compatible fluorescence microplate readers.

How are Invitrogen CellEvent Caspase Detection Reagents different from FLICA reagents?

Invitrogen CellEvent Caspase reagents are cleavable substrates, whereas FLICA reagents are fluorescent caspase inhibitors that covalently bind active caspases. FLICA workflows typically require removal of unbound reagent, and the bound reagent inhibits the labeled enzyme. CellEvent Caspase reagents generate nuclear fluorescence without inhibiting caspase activity and do not require a wash step.

How should I interpret different caspase-8, caspase-9, and caspase-3/7 activation patterns?

Interpret the signals as measurements of caspase activity, not definitive evidence of a single apoptosis pathway. Pathway crosstalk, feedback, stimulus, cell type, and activation timing can affect which caspases become active. Compare matched cell density, treatment conditions, acquisition settings, and time points when evaluating activation patterns.

Which Invitrogen CellEvent Caspase Detection Reagent should I choose?

Choose according to the caspase target and fluorescence channel. Use Invitrogen CellEvent Caspase-3/7 Green or Red Detection Reagent for downstream executioner caspase activity, Invitrogen CellEvent Caspase-8 Green Detection Reagent for initiator activity generally associated with death-receptor signaling, and Invitrogen CellEvent Caspase-9 Green Detection Reagent for initiator activity generally associated with mitochondrial apoptosome signaling. Choose the red Caspase-3/7 reagent when GFP or another green fluorescent marker is present.

How do Invitrogen CellEvent Caspase Detection Reagents generate fluorescence, and which recognition sequences do they use?

Each Invitrogen CellEvent Caspase Detection Reagent contains a caspase-recognition peptide linked to a proprietary fluorogenic DNA-binding dye. Caspase cleavage releases the dye so it can bind nuclear DNA and fluoresce. CellEvent Caspase-3/7 reagents use the DEVD recognition sequence, CellEvent Caspase-8 Green Detection Reagent uses IETD, and CellEvent Caspase-9 Green Detection Reagent uses LEHD.

What are Invitrogen CellEvent Caspase Detection Reagents?

Invitrogen CellEvent Caspase Detection Reagents are cell-permeant, fluorogenic substrates used to detect activated caspase-3/7, caspase-8, or caspase-9 in living cells. They generate nuclear fluorescence in caspase-positive cells and support endpoint, kinetic, continuous-culture, high-content imaging, and fluorescence microplate reader workflows.

What are the recommended storage conditions for the CellEvent Caspase-3/7 Green ReadyProbes Reagent (Cat. No. R37111)?

The recommended storage conditions for CellEvent Caspase-3/7 Green ReadyProbes Reagent (Cat. No. R37111) is between 4 and 25 degrees C or room temperature.

Can I use the ReadyProbes reagents for flow cytometry?

This is not recommended. The ReadyProbes reagents were developed for imaging applications whereas the Ready Flow reagents were optimized for flow cytometry.

What are the advantages of flow cytometry?

-Measures data from single cells.
-Data are obtained for a large number of cells, generating a rich statistical analysis of cell populations.
-Because single cells are measured, it will reveal heterogeneity within a population.
-With the ability to multiplex, small sub-populations can be identified.
-Thousands of cells can be analyzed rapidly.
-It is ideally suited for blood samples and other cells in suspension.
-Data can be re-analyzed multiple times after acquisition.
-Flow cytometry files (FCS) can be archived.

What kinds of applications can I run on a flow cytometer?

There are several applications, some of which include immunophenotyping, cell cycle analysis, apoptosis assays such as annexin V staining, CellEvent Caspase-3/7 assay, and TUNEL assay, cell viability, proliferation assays such as CellTrace assay and Click-iT EdU assay, measurements of mitochondrial potential with MitoProbe assays, and cell counting using counting beads.


For Research Use Only. Not for use in diagnostic procedures.

Product Title
Select an issue

By clicking Submit, you acknowledge that you may be contacted by Fisher Scientific in regards to the feedback you have provided in this form. We will not share your information for any other purposes. All contact information provided shall also be maintained in accordance with our Privacy Policy.