MILLIPLEX® MAP Mouse Bone Panel 1A
MerckThe MILLIPLEX® MAP Mouse Bone Panel 1Ais used for the simultaneous quantification of the following Mouse analytes: ACTH, IL-6, Insulin, Leptin, Osteoprotegerin, TNF-α
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The MILLIPLEX® MAP Mouse Bone Panel 1Ais used for the simultaneous quantification of the following Mouse analytes: ACTH, IL-6, Insulin, Leptin, Osteoprotegerin, TNF-α
The MILLIPLEX® MAP Mouse Bone Panel 1Bis used for the simultaneous quantification of the following Mouse analytes: ACTH, IL-6, Insulin, Leptin, Osteocalcin, Osteoprotegerin, TNF-α
The MILLIPLEX® MAP Mouse Bone Panel 2Ais used for the simultaneous quantification of the following Mouse analytes: ACTH, IL-6, Insulin, Leptin, RANKL, TNF-α
The MILLIPLEX® MAP Mouse Bone Panel 2Bis used for the simultaneous quantification of the following Mouse analytes: ACTH, IL-6, Insulin, Leptin, Osteocalcin, RANKL, TNF-α
The MILLIPLEX® MAP Mouse Osteocalcin - Single Plex is used for the simultaneous quantification of the following Mouse analytes: Osteocalcin
The MILLIPLEX® MAP Mouse OPG - Single Plex is used for the simultaneous quantification of the following Mouse analytes: Osteoprotegerin
The MILLIPLEX® MAP Mouse RANKL - Single Plex is used for the simultaneous quantification of the following Mouse analytes: RANKL
The MILLIPLEX® MAP Mouse Cardiovascular Disease (CVD) Panel 1 is used for the simultaneous quantification of the following Mouse analytes: MMP-9, PAI-1 (Total), sE-Selectin, sICAM-1, sVCAM-1
The MILLIPLEX® MAP Mouse Cardiovascular Disease (CVD) Panel 2 is used for the simultaneous quantification of the following Mouse analytes: Adiponectin, Apo E, Fibrinogen
The MILLIPLEX® MAP Mouse/Rat CRP - Single Plex is used for the simultaneous quantification of the following Mouse, Rat analytes: CRP
The MILLIPLEX® MAP Mouse Endocrine Panel is used for the simultaneous quantification of the following Mouse analytes: Amylin (Active), GLP-1 (Active), Glucagon, Insulin, Leptin
The MILLIPLEX® MAP Mouse Immunoglobulin Isotyping Kit is used for the simultaneous quantification of the following Mouse analytes: Immunoglobulin
The MILLIPLEX® MAP Mouse IgE Single Plex Kit is used for the simultaneous quantification of the following Mouse analytes: IgE
The MILLIPLEX® MAP Mouse Gut Hormone Panel is used for the simultaneous quantification of the following Mouse analytes: Amylin (Active), GIP (Total), GLP-1 (Active), Ghrelin (Active), Insulin, Leptin, PP, PYY (Total)
The MILLIPLEX® MAP Mouse IGF Binding Protein Panel is used for the simultaneous quantification of the following Human analytes: IGFBP-1, GFBP-2, IGFBP-3, IGFBP-5, IGFBP-6, IGFBP-7
The MILLIPLEX® MAP Mouse IGF Binding Protein Magnetic Bead Panel is used for the simultaneous quantification of the following Human analytes: IGFBP-1, IGFBP-2, IGFBP-3, IGFBP-5, IGFBP-6, IGFBP-7
The MILLIPLEX® MAP Mouse Metabolic Hormone Magnetic Bead Panel is used for the simultaneous quantification of the following Human analytes: Amylin (Active), C-Peptide 2, Ghrelin (Active), GIP (Total), GLP-1 (Active), Glucagon, IL-6, Insulin, Leptin, MCP-1, PP, PYY, Resistin, TNF-α
The MILLIPLEX® MAP EpiQuant™ Phosphotyrosine Cell Signaling Panel 1 is used for the simultaneous quantification of the following Human analytes: Cbl (Tyr700/731/774),Crk (Tyr221/239),CUB domain containing protein 1 (Tyr734), EGFR (Tyr1110/1125), Ezrin (Tyr477), FAK (Tyr397/407), FAK (Tyr861), FRS2 (Tyr436), Fyb (Tyr97/651), Gab1 (Tyr285/307/317), Gab2 (Tyr266), Gab2 (Tyr584), Growth hormone receptor (Tyr566), HER2 (Tyr1023), H…
MILLIPLEX® MAP EpiQuant™ technology uses computational algorithms to identify unique, continuous linear sequences (EpiQuant Sequences) in proteins. EpiQuant antibodies generated against EpiQuant sequences have pre-defined target specificity. Protein abundance and/or protein phosphorylation measurements are made at the peptide level, using EpiQuant antibodies, following proteolytic fragmentation of samples and liberation of Epi…
MILLIPLEX® MAP EpiQuant™ technology uses computational algorithms to identify unique, continuous linear sequences (EpiQuant Sequences) in proteins. EpiQuant antibodies generated against EpiQuant sequences have pre-defined target specificity. Protein abundance and/or protein phosphorylation measurements are made at the peptide level, using EpiQuant antibodies, following proteolytic fragmentation of samples and liberation of Epi…
MILLIPLEX® MAP EpiQuant™ technology uses computational algorithms to identify unique, continuous linear sequences (EpiQuant Sequences) in proteins. EpiQuant antibodies generated against EpiQuant sequences have pre-defined target specificity. Protein abundance and/or protein phosphorylation measurements are made at the peptide level, using EpiQuant antibodies, following proteolytic fragmentation of samples and liberation of Epi…
MILLIPLEX® MAP EpiQuant™ technology uses computational algorithms to identify unique, continuous linear sequences (EpiQuant Sequences) in proteins. EpiQuant antibodies generated against EpiQuant sequences have pre-defined target specificity. Protein abundance and/or protein phosphorylation measurements are made at the peptide level, using EpiQuant antibodies, following proteolytic fragmentation of samples and liberation of Epi…
MILLIPLEX® MAP EpiQuant™ technology uses computational algorithms to identify unique, continuous linear sequences (EpiQuant Sequences) in proteins. EpiQuant antibodies generated against EpiQuant sequences have pre-defined target specificity. Protein abundance and/or protein phosphorylation measurements are made at the peptide level, using EpiQuant antibodies, following proteolytic fragmentation of samples and liberation of Epi…
The MILLIPLEX® MAP EpiQuant™ EGFR Pathway Magnetic Bead Panel, MPEQMAG-110K is used for the simultaneous quantification of the following Human analytes: CSK (Tyr304), EGFR (Total), ErbB3 (Tyr1197/1199/1262/1276/1298/1307), ERK 1/2 (Tyr204/187), FAK (Tyr397/407), FAK (Tyr861), FRS2 (Tyr436), Gab1 (Tyr285/307/317), Gab2 (Tyr266), Gab2 (Tyr584), Gab2 (Tyr614), PI3Kp110δ (Tyr485), PKCμ (Tyr502), PLCγ1 (Tyr1253), PLCγ2 (Tyr1197/121…
MILLIPLEX® MAP EpiQuant™ technology uses computational algorithms to identify unique, continuous linear sequences (EpiQuant Sequences) in proteins. EpiQuant antibodies generated against EpiQuant sequences have pre-defined target specificity. Protein abundance and/or protein phosphorylation measurements are made at the peptide level, using EpiQuant antibodies, following proteolytic fragmentation of samples and liberation of Epi…