wb-detection-reagents-showcase

With a variety of detection techniques for western blotting-chemiluminescence, fluorescence, or colorimetric, to choose from, you can select a technology to match your experimental requirements.

Chemiluminescent Detection Technical Tip

Fluorescent Detection Technical Tip

 Chemiluminescent detection

Chemiluminescent detection

Fluorescent detection

Fluorescent detection

Chromogenic detection

Chromogenic detection

Major advantageHighest sensitivityDetect multiple targets at onceEasily visualize blots without equipment
Technology overviewEnhanced chemiluminescent (ECL) HRP and AP substrates providing pictogram to femtogram level detectionSimultaneous detection of multiple proteins on the same blot using a variety of available fluorescent dyes and conjugated 2° antibodiesDirect visualization of your target protein using color detection reagents
Signal SourceIndirect signal from enzymatic reactionDirect signal from fluorophoreIndirect signal from enzymatic reaction
Signal DurationLimited (hours)Extended (weeks to months)Extended (weeks to months)
Sensitivity

Excellent, with a wide variety of substrates available

Good, may require higher concentration of secondary antibody

Limited, best for high abundant proteins
ConsistencyPossible variation between blots, can be mitigated by using high duration substratesHigh reproducibility between blotsPossible variation between blots
DetectionX-ray film and imaging instrumentsImaging instruments with appropriate filters or lasersVisual, no instrumentation required
QuantitationSingle-channel detection makes normalization challengingMultiplexing with an internal control makes normalization simplerSingle-channel detection makes normalization challenging
Other considerations
  • Stripping and reprobing of blot possible
  • Long exposure times possible, as no excitation light source required to capture signal
  • Care is needed to avoid fluorescence contamination
  • Longer exposure times can produce high background because of the small amount of excitation light passing through emission filters
  • Stripping and reprobing of blot not possible
  • Best application for high abundant proteins and when imaging or film processing instrumentation is not available

HRP substrates

Catalog # Name Size Price (USD) Qty
34577 SuperSignal™ West Pico PLUS Chemiluminescent Substrate, 200 mL Each
196.65

Online Exclusive

214.00
Save 17.35 (8%)
34578 SuperSignal™ West Pico PLUS Chemiluminescent Substrate, 1 L Each
561.65

Online Exclusive

624.00
Save 62.35 (10%)
34580 SuperSignal™ West Pico PLUS Chemiluminescent Substrate, 500 mL Each
338.65

Online Exclusive

378.00
Save 39.35 (10%)
34075 SuperSignal™ West Dura Extended Duration Substrate, 100 mL Each
395.65

Online Exclusive

428.00
Save 32.35 (8%)
34076 SuperSignal™ West Dura Extended Duration Substrate, 200 mL Each
703.65

Online Exclusive

756.00
Save 52.35 (7%)
34095 SuperSignal™ West Femto Maximum Sensitivity Substrate, 100 mL Each
428.65

Online Exclusive

475.00
Save 46.35 (10%)
34096 SuperSignal™ West Femto Maximum Sensitivity Substrate, 200 mL Each
701.65

Online Exclusive

774.00
Save 72.35 (9%)
32132 Pierce™ ECL Plus Western Blotting Substrate, 100 mL kit Each
377.65

Online Exclusive

426.00
Save 48.35 (11%)
32134 Pierce™ ECL Plus Western Blotting Substrate, 25 mL kit Each
125.65

Online Exclusive

142.00
Save 16.35 (12%)
32106 Pierce™ ECL Western Blotting Substrate Each
271.65

Online Exclusive

310.00
Save 38.35 (12%)
32109 Pierce™ ECL Western Blotting Substrate, 50 mL Each
78.65

Online Exclusive

89.50
Save 10.85 (12%)
32209 Pierce™ ECL Western Blotting Substrate, 250 mL Each
201.65

Online Exclusive

227.00
Save 25.35 (11%)
WP20004 Novex™ HRP Chromogenic Substrate (TMB) 250 mL
271.00
37574 1-Step™ Ultra TMB-Blotting Solution Each
237.65

Online Exclusive

266.00
Save 28.35 (11%)
34012 1-Step™ Chloronaphthol Substrate Solution Each
135.00
34065 Metal Enhanced DAB Substrate Kit Each
207.65

Online Exclusive

235.00
Save 27.35 (12%)
34000 Pierce™ CN/DAB Substrate Kit Each
184.00
A38554 SuperSignal™ West Atto Ultimate Sensitivity Substrate, 20 mL Each
139.65

Online Exclusive

150.00
Save 10.35 (7%)
A38555 SuperSignal™ West Atto Ultimate Sensitivity Substrate, 100 mL Each
444.65

Online Exclusive

482.00
Save 37.35 (8%)

AP substrates


Fluorescent secondary antibodies

Overview of western blot detection techniques

Chemiluminescent western blot detection

Chemiluminescent substrates are popular because they offer several advantages over other detection methods. These advantages have allowed chemiluminescence to become the detection method of choice in most protein laboratories. Using chemiluminescence allows multiple exposures to be made in order to obtain the best image. The detection reagents can be removed and the entire blot reprobed to visualize another protein or to optimize detection of the first protein. A large linear response range allows detection and quantitation for a large range of protein concentrations. Most importantly, chemiluminescence yields the greatest sensitivity of any available detection method.

Chemiluminescent Western Blot Detection

Key Highlights

  • Greatest sensitivity
  • Detection and quantitation for a large range of protein concentrations

Chemiluminescent substrates for horseradish peroxidase (HRP) are majority two-component systems consisting of a stable peroxide solution and an enhanced luminol solution. To make a working solution, the two components are mixed together. When incubated with a blot on which HRP-conjugated antibodies (or other probes) are bound, a chemical reaction emits light at 425 nm which can be captured with x-ray film, CCD camera imaging devices and phosphorimagers that detect chemiluminescence. Chemiluminescent substrates for alkaline phosphatase are also readily available. Click here for information on chemiluminescent western blot detection can be found here

Fluorescent western blot detection

Fluorescent reagents are growing in popularity for western blotting because they offer increased time savings over chemiluminescent detection and reduced chemical waste compared to both chemiluminescent or chromogenic detection systems. While the detection limits are still not as low as chemiluminescent detection, fluorescent detection has the unique advantage of allowing multiple targets to be assayed for on the same blot at the same time without the need to strip and reprobe.

Fluorescent Western Blot Detection

Key Highlights

  • Multiplexing capability
  • Direct signal

The growing demand for multiplex western blotting has driven the development of many new fluorescent dyes (such as Alexa Fluor Plus conjugates). These new fluorophores are brighter and more photo stable than the traditional fluorescein and rhodamine molecules traditionally used and comprise a broader range of non-overlapping spectra. Together with the advances in the digital imaging equipment these new fluorophores enable extremely powerful analyses in western blotting. Click here for information on fluorescent western blot detection can be found here.

Chromogenic western blot detection

Chromogenic or precipitating substrates have been used widely for many years and offer the simplest and most cost-effective method of western blot detection. When these substrates come in contact with the appropriate enzyme (e.g. Alkaline phosphatase- AP or horseradish peroxidase-HRP), they are converted to insoluble, colored products that precipitate onto the membrane. The resulting colored band or spot requires no special equipment for processing or visualizing. Chromogenic blotting substrates are available in a variety of specifications and formats, producing a range of colored precipitates. The appropriate substrate choice depends on the enzyme label and desired sensitivity. Similar to developing film, the blot is incubated in substrate until the desired amount of development is achieved. In contrast to chemiluminescent western blotting, the colored precipitate formed by chromogenic substrates cannot be easily stripped off to facilitate re-probing procedures. Therefore, it is important to allow the reaction to proceed until color development is satisfactory and then stop the reaction.

Chromogenic Western Blot Detection

Key Highlights

  • No special instrumentation required
  • Most cost-effective technique for high abundant targets

The low sensitivity of chromogenic substrates makes it difficult to optimize for detecting proteins of low abundance. Although the reaction can be allowed to develop for several hours or even overnight, this also allows background signal to continue to develop. Where chromogenic substrates fail in terms of sensitivity, they are ideal for applications where protein abundance is high. Click here for information on chromogenic western blot detection can be found here.  

 Chemiluminescent detection

Chemiluminescent detection

Fluorescent detection

Fluorescent detection

Chromogenic detection

Chromogenic detection

Major advantageHighest sensitivityDetect multiple targets at onceEasily visualize blots without equipment
Technology overviewEnhanced chemiluminescent (ECL) HRP and AP substrates providing pictogram to femtogram level detectionSimultaneous detection of multiple proteins on the same blot using a variety of available fluorescent dyes and conjugated 2° antibodiesDirect visualization of your target protein using color detection reagents
Signal SourceIndirect signal from enzymatic reactionDirect signal from fluorophoreIndirect signal from enzymatic reaction
Signal DurationLimited (hours)Extended (weeks to months)Extended (weeks to months)
Sensitivity

Excellent, with a wide variety of substrates available

Good, may require higher concentration of secondary antibody

Limited, best for high abundant proteins
ConsistencyPossible variation between blots, can be mitigated by using high duration substratesHigh reproducibility between blotsPossible variation between blots
DetectionX-ray film and imaging instrumentsImaging instruments with appropriate filters or lasersVisual, no instrumentation required
QuantitationSingle-channel detection makes normalization challengingMultiplexing with an internal control makes normalization simplerSingle-channel detection makes normalization challenging
Other considerations
  • Stripping and reprobing of blot possible
  • Long exposure times possible, as no excitation light source required to capture signal
  • Care is needed to avoid fluorescence contamination
  • Longer exposure times can produce high background because of the small amount of excitation light passing through emission filters
  • Stripping and reprobing of blot not possible
  • Best application for high abundant proteins and when imaging or film processing instrumentation is not available

HRP substrates


AP substrates


Fluorescent secondary antibodies

Overview of western blot detection techniques

Chemiluminescent western blot detection

Chemiluminescent substrates are popular because they offer several advantages over other detection methods. These advantages have allowed chemiluminescence to become the detection method of choice in most protein laboratories. Using chemiluminescence allows multiple exposures to be made in order to obtain the best image. The detection reagents can be removed and the entire blot reprobed to visualize another protein or to optimize detection of the first protein. A large linear response range allows detection and quantitation for a large range of protein concentrations. Most importantly, chemiluminescence yields the greatest sensitivity of any available detection method.

Chemiluminescent Western Blot Detection

Key Highlights

  • Greatest sensitivity
  • Detection and quantitation for a large range of protein concentrations

Chemiluminescent substrates for horseradish peroxidase (HRP) are majority two-component systems consisting of a stable peroxide solution and an enhanced luminol solution. To make a working solution, the two components are mixed together. When incubated with a blot on which HRP-conjugated antibodies (or other probes) are bound, a chemical reaction emits light at 425 nm which can be captured with x-ray film, CCD camera imaging devices and phosphorimagers that detect chemiluminescence. Chemiluminescent substrates for alkaline phosphatase are also readily available. Click here for information on chemiluminescent western blot detection can be found here

Fluorescent western blot detection

Fluorescent reagents are growing in popularity for western blotting because they offer increased time savings over chemiluminescent detection and reduced chemical waste compared to both chemiluminescent or chromogenic detection systems. While the detection limits are still not as low as chemiluminescent detection, fluorescent detection has the unique advantage of allowing multiple targets to be assayed for on the same blot at the same time without the need to strip and reprobe.

Fluorescent Western Blot Detection

Key Highlights

  • Multiplexing capability
  • Direct signal

The growing demand for multiplex western blotting has driven the development of many new fluorescent dyes (such as Alexa Fluor Plus conjugates). These new fluorophores are brighter and more photo stable than the traditional fluorescein and rhodamine molecules traditionally used and comprise a broader range of non-overlapping spectra. Together with the advances in the digital imaging equipment these new fluorophores enable extremely powerful analyses in western blotting. Click here for information on fluorescent western blot detection can be found here.

Chromogenic western blot detection

Chromogenic or precipitating substrates have been used widely for many years and offer the simplest and most cost-effective method of western blot detection. When these substrates come in contact with the appropriate enzyme (e.g. Alkaline phosphatase- AP or horseradish peroxidase-HRP), they are converted to insoluble, colored products that precipitate onto the membrane. The resulting colored band or spot requires no special equipment for processing or visualizing. Chromogenic blotting substrates are available in a variety of specifications and formats, producing a range of colored precipitates. The appropriate substrate choice depends on the enzyme label and desired sensitivity. Similar to developing film, the blot is incubated in substrate until the desired amount of development is achieved. In contrast to chemiluminescent western blotting, the colored precipitate formed by chromogenic substrates cannot be easily stripped off to facilitate re-probing procedures. Therefore, it is important to allow the reaction to proceed until color development is satisfactory and then stop the reaction.

Chromogenic Western Blot Detection

Key Highlights

  • No special instrumentation required
  • Most cost-effective technique for high abundant targets

The low sensitivity of chromogenic substrates makes it difficult to optimize for detecting proteins of low abundance. Although the reaction can be allowed to develop for several hours or even overnight, this also allows background signal to continue to develop. Where chromogenic substrates fail in terms of sensitivity, they are ideal for applications where protein abundance is high. Click here for information on chromogenic western blot detection can be found here.  

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