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    Cystathionine Analysis Service

      Cystathionine is a crucial intermediate in the methionine metabolism pathway, playing a significant role in the conversion of homocysteine. It is synthesized through the action of cystathionine beta-synthase (CBS) and cystathionine gamma-lyase (CGL), ultimately leading to the production of cysteine, a key regulatory point in sulfur metabolism. Variations in cystathionine levels can be associated with various diseases, including cardiovascular diseases, neurodegenerative disorders, and metabolic conditions. Accurate measurement of cystathionine concentrations provides insights into its role in different health states and offers a scientific basis for diagnosing and treating related diseases.

       

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      Figure 1. Cysteine Metabolism

       

      MtoZ Biolabs utilizes liquid chromatography-tandem mass spectrometry (LC-MS/MS) to conduct detailed quantitative and qualitative analyses of cystathionine and its metabolites. This advanced method integrates LC's rapid separation capabilities with the high detection sensitivity of MS/MS, facilitating the precise measurement of cystathionine in complex biological matrices.

       

      Analysis Workflow

       

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      Service Advantages

      • Rapid Analysis Cycle and Cost-Effectiveness
      • Stable, Reliable, and Highly Sensitive Results
      • Comprehensive One-Stop Service for Extensive Testing Needs
      • User-Friendly Operation with Wide Application Scope
      • Supported by Extensive Bioanalytical Resources and Advanced Platforms

       

      Sample Submission Requirements

       

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      For detailed sample submission instructions, please consult our technical team.

       

      Applications

      Cardiovascular Disease Research: Detect changes in cystathionine levels to assist in early diagnosis and risk assessment of cardiovascular diseases.

       

      Neuroscience Research: Analyze changes in cystathionine levels in patients with neurodegenerative diseases to explore its potential role as a biomarker.

       

      Metabolic Research: Study the role of cystathionine in sulfur metabolism and homocysteine conversion.

       

      Drug Development: Evaluate the impact of new drugs on cystathionine metabolism to aid in developing therapies targeting specific metabolic pathways.

       

      Deliverables

      1. Experimental Procedures

      2. Relevant Liquid Chromatography and Mass Spectrometry Parameters

      3. Detailed Information on Cystathionine and their Metabolites

      4. Raw Data

      5. Custom Analysis Report

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