Our broad portfolio consists of multiplex panels that allow you to choose, within the panel, analytes that best meet your needs. On a separate tab you can choose the premixed cytokine format or a single plex kit.
Cell Signaling Kits & MAPmates™
Choose fixed kits that allow you to explore entire pathways or processes. Or design your own kits by choosing single plex MAPmates™, following the provided guidelines.
The following MAPmates™ should not be plexed together:
-MAPmates™ that require a different assay buffer
-Phospho-specific and total MAPmate™ pairs, e.g. total GSK3β and GSK3β (Ser 9)
-PanTyr and site-specific MAPmates™, e.g. Phospho-EGF Receptor and phospho-STAT1 (Tyr701)
-More than 1 phospho-MAPmate™ for a single target (Akt, STAT3)
-GAPDH and β-Tubulin cannot be plexed with kits or MAPmates™ containing panTyr
.
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Select A Species, Panel Type, Kit or Sample Type
To begin designing your MILLIPLEX® MAP kit select a species, a panel type or kit of interest.
Custom Premix Selecting "Custom Premix" option means that all of the beads you have chosen will be premixed in manufacturing before the kit is sent to you.
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96-Well Plate
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Add Additional Reagents (Buffer and Detection Kit is required for use with MAPmates)
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48-602MAG
Buffer Detection Kit for Magnetic Beads
1 Kit
Space Saver Option Customers purchasing multiple kits may choose to save storage space by eliminating the kit packaging and receiving their multiplex assay components in plastic bags for more compact storage.
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You can now customize another kit, choose a premixed kit, check out or close the ordering tool.
Attention: We have moved. Merck Millipore products are no longer available for purchase on MerckMillipore.com.Learn More
Unleashing the Sensitivity of Single Molecule Counting (SMC™) Technology
Ultrasensitive SMC™ technology, originally developed by Singulex®, Inc., provides an indispensable tool in the researcher’s arsenal to help them move novel biology forward, fueling the discovery and development of new therapeutics.
Merck now offers the power of SMC™ technology to leading pharmaceutical R&D laboratories, clinical research organizations (CROs) and academic institutions around the world through the Research-Use-Only SMCxPRO™ and Erenna® immunoassay systems, immunoassay kits, reagents, and custom services.
SMCxPRO™ Instrument with SMC™ technology quantifies low-abundance biomarkers, on the bench top.
Previously Undetectable, Now Quantified. One Molecule at a Time.
SMC™ Single Molecule Counting (SMC™) technology enables precise measurement of molecules at levels previously undetectable, for unprecedented biomarker insights.
Scientists familiar with traditional immunoassays, such as ELISAs, know that sensitivity, matrix effects, and dynamic range affect how they make measurements — or if they can make them at all.
Combining a traditional immunoassay workflow with patented SMC™ technology enables the detection of low-abundance biomarkers, such as proteins and nucleic acids, with unparalleled sensitivity and accuracy, capturing concentrations down to the femtogram/mL level. Researchers can now detect, and monitor changes in, extremely low levels of established disease biomarkers such as cardiac troponin I and cytokines.
What Can Better Precision and Sensitivity Do for Your Research?
Quantify previously undetectable analytes
Better stratify sample populations
Gain insights into novel biological mechanisms
Require fewer data points for critical decision making
Accelerate drug discovery and development
Reduce program costs and improve productivity
SMC™ Assay Workflow. During the capture and detection steps, specific antibodies translate each biomarker into signal. During the modified elution step, fluorescent dye-labeled detection antibodies are dissociated from the immunocomplex. The eluate is measured in a small interrogation space illuminated by a laser. Single fluorescently labeled molecules are excited by the laser as they pass through the interrogation space as detected events.
The SMCxPRO™ and Erenna® instruments capture the sum of all digital events counted above a background threshold. This model can have limited dynamic range so at higher concentrations on the Erenna® a proprietary algorithm computes the total sum of all photons recorded as an additional standard curve and the SMCxPRO™ digital event algorithm computes digital events across a spectrum of time series for a single standard curve thus improving assay sensitivity and extending the dynamic measuring range beyond what can be achieved with traditional technologies.