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Quantibody Multiplex ELISA Cytokine Arrays
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  • Quantibody Multiplex ELISA Cytokine Arrays

Quantibody® Multiplex ELISA Cytokine Arrays

Build a clear and accurate picture of the expression levels of multiple proteins simultaneously with Quantibody® Multiplex ELISAs.

Browse Quantibody Arrays

Capture 4x the data with much less sample

Combining the specificity and sensitivity of an ELISA with the high throughput of an array, Quantibody® is an array-based multiplex ELISA system for the simultaneous quantitation of multiple cytokines, growth factors, proteases, soluble receptors, and other proteins from a wide range of sample types. With this platform, you need a mere 50 µL of sample to quantify up to 40 proteins in quadruplicate, making this array 80 times more efficient than traditional ELISA.

Each 75mm x 25mm glass slide is spotted with 16 identical antibody arrays called "subarrays". Within each subarray, the capture antibodies and controls are spotted in quadruplicate, enabling detection of up to 40 proteins per slide. Because each slide comes with a 16-well removable gasket and chamber assembly, you can simultaneously process up to 14 samples per slide (number of samples varies depending on how many slides include the full set of 8 standards).

Process 100s of samples a day

To achieve even higher throughput, 4 slides can be nested into a tray which matches a standard microplate. This allows you to automate the simultaneous processing of 64 arrays. Because current automated liquid handling workstations can accommodate several trays at once, you can process hundreds of samples per day.

Features

  • Get more data from less sample with only 50 ul of sample required for quantification of up to 40 proteins
  • Save time with 4-hour processing
  • Save money with an assay that’s more cost-effective than ELISA
  • Detect cleaner signals with no interference between capture antibodies (unlike bead-based multiplex assays)
  • Customize an array from our list of targets to meet your research objectives
  • Expedite your data collection with high-throughput automated processing
  • Many species available: Human, Mouse, Rat, Porcine (pig), Canine (dog), Bovine (cow), Rabbit, Ovine (sheep), Chicken, Dolphin, Equine (horse), Feline (cat), Rhesus Macaque

Research Applications

  • High-throughput profiling of cytokine expression.
  • Validation of semi-quantitative antibody array results.
  • Identifying potential molecular targets for drug development.
  • Identifying the molecular mechanisms of drug action.
  • Identifying crucial factors involved in disease processes.
  • Discovering biomarkers for disease management.
  • Discovering expression patterns for molecular classification of diseases.

Kit Components

  • Glass Slide/s (capture antibodies pre-printed)
  • Detection antibody cocktail
  • Lyophilized protein standard mix
  • Sample Diluent
  • Streptavidin-Fluorescent dye
  • Wash buffer
  • Accessories (slide incubation chamber with gasket, adhesive film, etc.)
Quantibody Multiplex ELISA

Need help scanning your slides and analyzing data?

Start by reviewing our Laser Scanner Specifications Guide.

If you don’t have access to a laser scanner you can take advantage of our free slide scanning and data extraction service. Simply ship us your slides and we’ll send back the raw data extracted from your images.

Need help analyzing all that information? Simply copy and paste your data into the RayBiotech Q-Analyzer Tool specific for your array. The Q-Analyzer will automatically plot the standard curve for each analyte as well as perform background subtraction and normalization.

Wherever you are in your data analysis process, we’re here to help. Learn more about our free data extraction, full scanning, and data analysis services.

Quantibody Categories

Cytokine Arrays
Angiogenesis Arrays
Disease Focused Arrays
High-Density Arrays
Inflammation Arrays
Pathway Arrays
T Cell Arrays
Chemokine Arrays
Bone Metabolism Arrays
ECM Arrays
Growth Factor Arrays
Isotyping Arrays
Quantitative antibody array spots with standard curves

Featured Service

Quantiative Proteomics Services

See What Quantibody Services Can Do For You

How It Works

RAY_0185_Quantibody-Array-Infographic_H_L1

Like a traditional sandwich-based ELISA, Quantibody Multiplex ELISAs use a matched pair of antibodies for target protein detection.

  1. A panel of capture antibodies is printed as multiple identical subarrays on a standard glass slide.
  2. Start the workflow with an initial blocking step before adding your samples to each subarray.
  3. Next, wash the slide to remove non-specifically bound proteins and then incubate the array with a cocktail of biotinylated detection antibodies.
  4. Finally, incubate the array with a streptavidin-conjugated fluor and visualize using a fluorescence laser scanner.

To quantify target protein concentrations, use an array-specific protein standard with predetermined concentrations to generate an 8-point standard curve of each target protein. Determine the unknown protein concentration by comparing signals from the unknown samples to the standard curve.


FAQ

Frequently Asked Questions

Still have questions?

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Quantitative data gives you the actual concentration (pg/ml, for example) of the analyte, while semi-quantitative data gives you the relative fold-change of the analyte compared to the concentration in another sample.

The main difference between the glass-slide and membrane-based arrays is the type of detection used. Glass-slide-based arrays use fluorescence and need a compatible laser scanner, while membrane-based arrays use chemiluminescence, which can be detected with most western blot imaging systems.

Another difference is the required sample size. Glass-slide assays use smaller sample sizes than membrane-based assays. Glass slides require ~70 ul – 100 ul, while the membranes require at least 1 ml, after dilution.

Lastly, glass-slide-based arrays are generally cheaper than membrane-based arrays.

You’ll need a gene microarray laser scanner. A list of specifications and compatible laser scanners can be found here:

Compatible Laser Scanners for Glass Slide Arrays

Most of our arrays are compatible with any biological fluid. This includes cell culture media, cell lysates, tissue lysates, and all clarified body fluids (serum, plasma, urine, cerebrospinal fluid, BAL, saliva, tears, etc.)

In general, any cell-free extract that contains soluble, non-denatured proteins is likely to work with our arrays.

Our tips for sample preparation can be found here:

Tips on Sample Preparation

The positive control spots are standardized amounts of biotinylated IgG. They are used for signal normalization, monitoring of the detection step, and to help orient the array image.

The negative control spots are printed with buffer only, and thus are not expected to give signals. Negative control spots are used for background subtraction.

The areas on the array map labeled as “blank” are empty (there is nothing printed there). Both the negative control and blank spots should give similar intensity values, and either one may be used to represent the background.

Data extraction is accomplished by the software application associated with the laser scanner. For faster spot identification, we can provide you with a free GAL file which can be downloaded here. More information regarding glass slide array data extraction can be found here.

Normalization is used to compare data between arrays (i.e., different samples) by accounting for the differences in signal intensities of the positive control spots on those arrays. We can do this because the positive control is a controlled amount of biotinylated antibody that is attached to the solid support. The amount of signal from each of those spots is dependent on 1) the amount of the reporter (streptavidin-HRP or streptavidin-fluor) bound to that antibody and 2) the length of exposure time (for chemiluminescent detection).

Since these factors proportionally affect the signal intensity of every spot on the array, the differences in the positive control signals between arrays will accurately reflect the differences between other spots on those arrays.

One array must be defined as the "reference array“ to which the signals of other arrays are normalized. It is up to the researcher to define which array should be the reference.

You can calculate the normalized values as follows:
X(nY) = X(Y) x P1/P(Y)

  • P1 = the average signal density of the positive control spots on the reference array
  • P(Y) = the average signal density of the positive control spots on Array Y
  • X(Y) = the signal density for a particular spot on Array for sample “Y”
  • X(nY)= the normalized value for that particular spot "X" on Array for sample “Y"

Please note that RayBiotech’s analysis software tools can perform the normalization automatically. More information about our analysis tools can be found here.

No problem! Simply send your slides to us and we can scan them for you. We will provide you with the scanned image (TIF file) and the densitometry values with full analysis. Learn more about our scanning services here:

Scanning and Data Analysis Services

Different arrays have different sensitivities. You can find more information here:

Quantibody® Array

We’ve created a helpful guide to help you organize your slides. You can find it here:

Quantibody Standard Options

Still have questions?

Contact Us

Related Services

Quantitative Proteomics Services

Develop deeper insights with precise, ultrasensitive, and quantitative proteomics services, delivered by the experienced scientists at RayBiotech.

Discovery Proteomics Services

Maximize your protein expression discovery efforts with our high-density arrays for this service.

CRO Services

When you need a few extra hands to get an assay completed or support from experimental design to data analysis, our experienced team of scientists is ready to help.

Biostatistics and Bioinformatics

Whether you’re short on analytical resources or expertise, our experienced team can support your studies with a wide range of biostatistics and bioinformatics services.

Related Categories

Membrane Antibody Arrays

Easily conduct simultaneous expression analysis of multiple proteins with our C-Series membrane-based arrays that use the same familiar workflows and instruments as chemiluminescent western blotting.

Label-Based Antibody Arrays

Screen faster with an array that can simultaneously detect and assess relative expression of 8000 proteins including cytokines, growth factors, receptors, adipokines, proteases, and signaling proteins—available in glass slide and membrane formats.

Cytokine Arrays

Move quickly and confidently with simultaneous profiling of cytokine protein levels using an array format that best meets your project goals.

Cytometric Bead Arrays

Take advantage of RayPlex® CBA technology for solution-based high throughput protein detection using a standard flow cytometer.

What customers are saying

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Sang

National Institutes of Health (NIH)

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Amanda

Washington University in St. Louis

“This product [Mouse Cytokine Array Q1, Cat# QAM-CYT-1] is very simple and reliable to measure the production of cytokines from cell culture media. They also provide a free scanning service, so no need to worry about a slide scanner. Highly recommended.“

“Instructions [for Human Cytokine Array Q1, Cat# QAH-CYT-1] were very clear and straightforward; it was a relatively simple process for a first-time user. Plenty of buffers and diluents included, and free analyzing by RayBiotech if you don't have a compatible scanner accessible.”

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High-Density Multiplex ELISA Full Testing Services

Ship us your samples (5 sample minimum) and our experienced service department will use our GLP-compliant Quantibody array platform to quantitatively detect up to 1200 human, 640 mouse, or 282 rat proteins and return to you a full report of your results.