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    Metabolomics Analysis

    • • Dihydrojasmonic Acid Analysis Service

      Dihydrojasmonic Acid (H2JA) is a structurally reduced form of jasmonic acid, a vital plant hormone that orchestrates a myriad of physiological processes, including stress response, growth regulation, and developmental pathways. H2JA shares a similar core structure with jasmonic acid but is distinct due to the hydrogenation of its cyclopentenone ring, which influences its biological activity and signaling properties in plants.

    • • 3-oxo-2-(2-(Z)-Pentenyl)cyclopentane-1-hexanoic Acid Analysis Service

      3-oxo-2-(2-(Z)-Pentenyl)cyclopentane-1-hexanoic Acid (OPC-6) is a unique organic compound derived from the metabolism of jasmonic acid, a key plant hormone involved in regulating a variety of physiological responses, including growth, development, and defense mechanisms. This compound, which can be categorized within the broader class of cyclopentanone derivatives, is notable for its role in the intricate signaling pathways that govern plant stress responses, particularly...

    • • Abscisic Aldehyde Analysis Service

      Abscisic Aldehyde is a crucial intermediate in the biosynthesis of abscisic acid (ABA), one of the most important plant hormones involved in regulating plant growth, development, and stress responses. This compound is primarily derived from carotenoids through a series of enzymatic reactions, marking a key point in the conversion of xanthophylls into bioactive ABA.

    • • 2-Methoxycarbonylphenyl Beta-D-glucopyranoside Analysis Service

      2-Methoxycarbonylphenyl Beta-D-glucopyranoside is a specialized glycoside compound that combines a methoxycarbonylphenyl group with a Beta-D-glucopyranoside moiety. This structure is characterized by the presence of a glucose unit linked to a methoxycarbonyl-substituted aromatic ring. Glycosides like 2-Methoxycarbonylphenyl Beta-D-glucopyranoside are significant in various biological systems, where they often participate in critical roles such as signal transduction, defense mechanisms, and...

    • • 9-Ribosyl-trans-zeatin 5'-monophosphate Analysis Service

      At MtoZ Biolabs, we provide a specialized service for the analysis of 9-Ribosyl-trans-zeatin 5'-monophosphate, a naturally occurring compound with significant biological roles in plant growth regulation. 9-Ribosyl-trans-zeatin 5'-monophosphate is a compound derived from trans-zeatin, a type of cytokinin, which are plant hormones that regulate various processes, including cell division, differentiation, and growth.

    • • Trans-Zeatin-9-glucoside Analysis Service

      Trans-Zeatin-9-glucoside is a type of cytokinin glucoside that belongs to the class of organic compounds known as glycosyl compounds. As a plant hormone, it plays essential roles in cell division, plant growth, and development, including lateral bud emergence (tillering), and leaf senescence. Thus, the accurate analysis of Trans-Zeatin-9-glucoside is crucial for understanding plant growth and development.

    • • 2,4-Dihydroxy Benzoic Acid Analysis Service

      2,4-dihydroxy benzoic acid, with the chemical formula C₇H₆O₄, is a derivative of benzoic acid, distinguished by the presence of two hydroxyl (-OH) groups at the 2nd and 4th positions on the benzene ring. While the primary functions of 2,4-dihydroxy benzoic acid are not yet fully elucidated, research suggests that it may be involved in antioxidant and anti-inflammatory responses. The hydroxyl groups enhance its ability to scavenge free radicals in the body, potentially reducing oxidative stress and preventin

    • • Phenylacetylglutamine Analysis Service

      Phenylacetylglutamine is a metabolite that plays a significant role in various biological processes. It is primarily produced through the conjugation of phenylacetic acid and glutamine. This compound is a product of microbial metabolism, where gut microbiota metabolize dietary and endogenous substrates. Phenylacetylglutamine has been associated with various health implications, including its potential role as a biomarker for renal function, cardiovascular diseases, and metabolic disorders.

    • • 3-Beta-Hydroxy-5-Cholestenoate Analysis Service

      3-beta-hydroxy-5-cholestenoate, with the chemical formula C31H54O3Si, is a metabolic intermediate in the biosynthesis of bile acids from cholesterol. Its structure is characterized by the presence of a hydroxyl (-OH) group at the 3rd carbon position and a double bond between the 5th and 6th carbon atoms, distinguishing it from cholesterol. Research suggests it plays a crucial role in the regulation of cholesterol homeostasis and the conversion of cholesterol into bile acids, which are essential for dietary

    • • 6-hydroxy Melatonin Analysis Service

      6-hydroxy melatonin, with the chemical formula C13H16N2O3, has a structure similar to melatonin, differing only by the introduction of a hydroxyl (-OH) group at the 6th carbon position. While the primary functions of 6-hydroxy melatonin are not yet fully elucidated, research suggests that it may be involved in antioxidant and anti-inflammatory responses. Melatonin itself has strong antioxidant properties, and 6-hydroxy melatonin, with the additional hydroxyl group, may enhance these properties. It can scave

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