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The R-PLEX platform offers both antibody sets and assays for a wide menu of biomarkers. The R-PLEX Mouse HAVCR1/KIM-1 Assay has the essential components to build an assay that measures HAVCR1/KIM-1 in a single analyte format. For information on multiplexing HAVCR1/KIM-1 with other analytes, please see the
R-PLEX Mouse HAVCR1/KIM-1 Antibody Set.
The Product Insert for R-PLEX Assays provides detailed instructions for building a singleplex assay. The datasheet for HAVCR1/KIM-1 provides information on the components (including calibrator stock concentration), 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 TermsHAVCR1, Kidney injury molecule-1, KIM-1, TIM-1
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Specifications
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Kit Contents
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Documentation
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References
Application(s)
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Oncology & Cancer
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Analyte(s)
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HAVCR1/KIM-1
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Species
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Mouse
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Instrument(s)
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SECTOR Imager 2400
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MESO QuickPlex SQ 120MM
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MESO SECTOR S 600
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SECTOR Imager 6000
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MESO SECTOR S 600MM
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MESO QuickPlex SQ 120
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Plate Type
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96-well
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LLOD (Sensitivity)
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20.9
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Dynamic Range
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20.9-30,000
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Sample Type
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Plasma, Serum
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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 Condition
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Multi-Component
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Gene ID(s)
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171283
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UniProt ID(s)
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Q5QNS5
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Schedule B Code
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3822.19.0000
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Product Description
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Storage
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Quantity per Kit
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Mouse HAVCR1/KIM-1 Antibody Set
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2-8 °C
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1 each (5 plate size)
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Mouse HAVCR1/KIM-1 Calibrator
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≤-70 °C
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5 vial (1 vial)
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2-8 °C
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5 each (1 plate)
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2-8 °C
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1 bottle (50 mL)
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≤-10 °C
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1 bottle (50 mL)
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≤-10 °C
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1 bottle (40 mL)
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RT
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1 bottle (90 mL)
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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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Glyoxalase-1 overexpression reduces endothelial dysfunction and attenuates early renal impairment in a rat model of diabetes.
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Urinary biomarkers track the progression of nephropathy in hypertensive and obese rats.
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Application of emerging biomarkers of acute kidney injury in development of kidney-sparing polypeptide-based antibiotics.
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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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View All
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