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A wide variety of assay products for identifying and analyzing of proteins and their functions. Products utilize various detection methods and sample types and can be used for applications including medical, cellular, molecular, and protein research.
For quantitative determination of phospholipase D activity and evaluation of drug effects on phospholipase D metabolism. Key Features: Sensitive. Use 10 µL samples. Detection range: colorimetric assay 0.06 - 10 U/L, fluorimetric assay 0.04 - 1 U/L. Simple and High-throughput: the assay involves addition of a single working reagent and can be readily adapted to high-throughput assays for drug screening. Method: OD570nm, or FL530/585nm. Samples: Biological. Species: All. Procedure: Assay takes 30 min. Kit size: 100 tests. Detection limit: 0.04 U/L.
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For quantitatve determination of cholesterol uptake in cells and screening of modulators on cholesterol uptake. Key Features: Convenient. Treat cells directly in 96-well fluorescent plate. Safe. Non-radioactive assay. High-throughput. Can be readily automated as a high-throughput 96-well plate assay for thousands of samples per day Method: FL485/535nm. Samples: Adherent cells. Species: All. Procedure: Assay takes 24-72 hrs, hand-on time 1 hr. Kit size: 100 tests.
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For quantitative determination of glutathione S-transferase activity and evaluation of drug modulators. Key Features: Fast and sensitive. Linear detection range (20 µL sample): 2 to 80 U/L for 10 min reaction at 25°C. Convenient and high-throughput. Homogeneous "mix-incubate-measure" type assay. Can be readily automated on HTS liquid handling systems for processing thousands of samples per day. Method: OD340nm. Samples: Biological samples (e.g. cell lysates, tissues, etc.). Species: All. Procedure: Assay takes 10 min. Kit size: 100 tests. Detection limit: 2 U/L.
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Sorbitol dehydrogenase (SORD EC 1 1 1 14) catalyzes the interconversion of polyols and their corresponding ketoses and together with aldose reductase (ALDR1 MIM 103880) makes up the sorbitol pathway that is believed to play an important role in the development of diabetic complications (summarized by Carr and Markham 1995 [PubMed 8535074]) The first reaction of the pathway (also called the polyol pathway) is the reduction of glucose to sorbitol by ALDR1 with NADPH as the cofactor SORD then oxidizes the sorbitol to fructose using NAD( ) cofactor
Encompass Procurement Services Non-distribution item offered as a customer accommodation; additional freight charges may apply. Learn More