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The R-PLEX platform offers matched sets of antibodies and calibrators for a wide menu of biomarkers. The R-PLEX Mouse Clusterin Antibody Set can be used with other MSD components (see "Recommended Components" tab below) to build assays that measure Clusterin. These assays can measure Clusterin alone or in multiplex panels with other biomarkers.
The Product Inserts for R-PLEX Antibody Sets provide detailed instructions for building assays in several formats. The Datasheet for Clusterin provides lot specific information for the components (including calibrator stock concentrations), recommended sample types and dilution factors, and representative data for analytical performance. These items and other helpful documents can be found in the "Documentation" tab below.
Related Key Terms
CLI, AAG4, APOJ, CLU1, CLU2, KUB1, SGP2, APO-J, SGP-2, SP-40, TRPM2, TRPM-2, NA1/NA2, CLU, chaperone, cytoprotective, renal damage
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Specifications
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Recommended Components
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Kit Contents
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Documentation
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References
Application(s)
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Cytokines & Chemokines
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Immunology/Inflammation
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Analyte(s)
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Clusterin
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Species
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Mouse
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Usage Statement
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For Research Use Only. Not for use in diagnostic procedures.
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Storage Statement(s)
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Antibody set (2-8°C); Calibrator (≤-70°C)
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Gene ID(s)
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12759
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UniProt ID(s)
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Q06890
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Why do I need other components
Catalog No.
Product Name
Size
R50AI-1
R60AM-1
L45SA-1
Product Description
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Storage
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Quantity per Kit
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Mouse Clusterin Antibody Set
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2-8 °C
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1 each (5 plate size)
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Mouse Clusterin Calibrator
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≤-70 °C
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5 vial (1 vial)
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Product Inserts
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Datasheets
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Handouts
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SDS
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Title
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Journal
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Year
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Urinary biomarkers track the progression of nephropathy in hypertensive and obese rats.
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Assessment of cisplatin-induced kidney injury using an integrated rodent platform.
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Early prediction of polymyxin-induced nephrotoxicity with next generation urinary kidney injury biomarkers.
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Time course of renal proximal tubule injury, reversal, and related biomarker changes in rats following cisplatin administration.
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Renal biomarker changes associated with hyaline droplet nephropathy in rats are time and potentially compound dependent.
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View All
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