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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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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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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Description
Overview
A cell-permeable, hexapeptide containing a novel integrin-binding motif, SDV (a Type I PDZ-binding motif) that is shown to compete with vitronectin for the RGD-binding site of integrin αvβ3 (IC50 = 1.74 pg/ml), in a chip-based assay. It is rapidly internalized into HUVECs, but not in NIH 3T3 cells, at a culture temperature of 37 °C, a process which is mediated by caveolin and clathrin. At 10 µg/ml, this compound is shown to significantly inhibit the phosphorylation of ERK1/2 and MEK in HUVECs. Furthermore, it suppresses bFGF-induced proliferation of HUVECs, dose-dependently, and displays up-regulation of p53 and induction of apoptosis via activation of caspases-3, -8 and -9 at 50 µg/ml.
Catalogue Number
407272
Brand Family
Calbiochem®
Synonyms
HSDVHK-NH2, HSDVHK
References
References
Bang, J., et al. 2011. Mol Cell Proteomics10, M110. Choi, Y., et al. 2010. Proteomics10, 72. Lee, Y., et al. 2004. J. Biomol. Screen.9, 687.
Integrin αvβ3 Antagonist, P11 - Calbiochem Certificates of Analysis
Title
Lot Number
407272
References
Reference overview
Bang, J., et al. 2011. Mol Cell Proteomics10, M110. Choi, Y., et al. 2010. Proteomics10, 72. Lee, Y., et al. 2004. J. Biomol. Screen.9, 687.
Data Sheet
Note that this data sheet is not lot-specific and is representative of the current specifications for this product. Please consult the vial label and the certificate of analysis for information on specific lots. Also note that shipping conditions may differ from storage conditions.
Revision
27-jul-2012
Synonyms
HSDVHK-NH2, HSDVHK
Description
A cell-permeable, hexapeptide containing a novel integrin-binding motif, SDV (a Type I PDZ-binding motif) that is shown to compete with vitronectin for the RGD-binding site of integrin αvβ3 (IC50 = 1.74 pg/ml), in a chip-based assay. It is rapidly internalized into HUVECs, but not in NIH 3T3 cells, at a culture temperature of 37 °C, a process which is mediated by caveolin and clathrin. At 10 µg/ml, this compound is shown to significantly inhibit the phosphorylation of ERK1/2 and MEK in HUVECs. Furthermore, it suppresses bFGF-induced proliferation of HUVECs, dose-dependently, and displays up-regulation of p53 and induction of apoptosis via activation of caspases-3, -8 and -9 at 50 µg/ml.
Form
White solid
Formulation
Supplied as a trifluoracetate salt.
Intert gas (Yes/No)
Packaged under inert gas
Chemical formula
C₃₀H₅₁N₁₂O₉₃· 3TFA
Structure formula
Purity
≥95% by HPLC
Solubility
H₂O (100 mg/ml)
Storage
Protect from light -20°C
Do Not Freeze
Ok to freeze
Special Instructions
Following reconstitution, aliquot and freeze (-20°C). Stock solutions are stable for up to 3 months at -20°C.
Toxicity
Standard Handling
References
Bang, J., et al. 2011. Mol Cell Proteomics10, M110. Choi, Y., et al. 2010. Proteomics10, 72. Lee, Y., et al. 2004. J. Biomol. Screen.9, 687.