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BRAND / VENDOR: Waters

Waters, 186003836, AccQ-Tag Ultra Derivatization Kit

CATALOG NUMBER: 186003836
Prix régulier$0.99
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Product Description

Amino Acid Analysis (AAA) is required for many applications. AccQ•Tag Ultra Derivitization Kit is a component of the UPLC® Amino Acid Analysis Application Solution. This kit is executed with UV detection and is enough for 250 anaylses.

Specifications
UNSPSC: 41116104
Application: Amino Acid
Brand: AccQ-Tag
Product Type: Application Kits

Additional Information
AccQ-Tag Ultra Derivatization Kit As a part of the Waters lab equipment for UPLC Amino Acid Analysis Application Solution, the AccQ-Tag Ultra Derivatization Kit contains five sets of derivatizing reagents that contribute to the optimal process. There are three vials in each set of reagents, containing the following: AccQ-Tag Ultra Borate Buffer in Vial 1 is added to all samples to ensure the correct pH for derivatization. AccQ-Tag Ultra Reagent Powder in Vial 2A is the 6-aminoquinolyl-N-hydroxysuccinmidyl carbamate (ACQ) derivatizing reagent, which is shipped dry for the maximum level of stability. AccQ-Tag Ultra Reagent Diluent in Vial 2B is made from acetonitrile, which is used to reconstitute the reagent for the derivatization process. These three components create the ability to perform derivatization without special sample preservation and with a high tolerance to buffer salts or sample components. Samples remain stable for several days after preparation. The Waters UPLC Amino Acid Analysis Application kit is designed to offer a turnkey solution for labs that need to provide information accurately, quickly, and economically. When the AccQ-Tag Ultra Derivatization Kit is used along with the rest of the family of products, labs are able to provide accurate information on the number of amino acids in a sample and identify the protein and any modifications. It is not recommended to use the AccQ-Tag Ultra Derivatization Kit with any products that are not a part of the larger application solution. AccQ-Tag Ultra Chemistry kits are created with the highest level of quality control tests, including UV detection. The quantity of reagents provided is enough to execute 250 analyses, with accurate and precise results in a wide range of applications. Protein and peptide hydrolysates, monitoring cell culture media, and measuring nutritional value of food or feeds can all be enhanced using this kit as a part of the broader application solution. FAQs about AccQ-Tag Ultra Derivatization Kit What is the purpose of the AccQ-Tag Ultra Derivatization Kit? The AccQ-Tag Ultra Derivatization Kit is used for the analysis of amino acids in biological samples by high-performance liquid chromatography (HPLC). How does the AccQ-Tag Ultra Derivatization Kit improve amino acid analysis? The kit provides a fast and efficient derivatization process that enhances the sensitivity and stability of amino acids for accurate quantification. Can the AccQ-Tag Ultra Derivatization Kit be used with different types of samples? Yes, the kit is compatible with a wide range of sample types, including plasma, urine, tissue, and cell culture samples. What equipment is required to use the AccQ-Tag Ultra Derivatization Kit? The kit is designed to be used with a high-performance liquid chromatography (HPLC) system equipped with a fluorescence detector. How long does it take to complete the derivatization process with the AccQ-Tag Ultra Derivatization Kit? The derivatization process typically takes less than 10 minutes, making it a quick and efficient solution for amino acid analysis in the lab.

FAQ
What is derivatization? The process of derivatization occurs when a compound is chemically changed to produce a new compound with more properties, making it more amenable to any particular method of analysis. The goal can be to make an analyte more volatile or less reactive, improving its behavior for chromatography. How does this affect amino acids? When this is performed on amino acids, derivatization will replace hydrogens on OH, NH2, and SH polar functional groups with nonpolar moiety. Ultimately, this allows laboratories to gather more information about the structure of the molecule and make determinations such as what amino acids may be critical to producing high-quality proteins at a fast rate.


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