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    Metabolomics Analysis

    • • Procyanidin B2 Analysis Service

      Polyphenols are the largest group of secondary metabolites in plants, and their structural determination has been a focal point in research. Among polyphenols, procyanidin, also known as condensed tannins, are derived from proanthocyanidins. Procyanidin and proanthocyanidins are ubiquitously present in the plant kingdom and are commonly found in varying concentrations in everyday foods such as fruits, vegetables, legumes, grains, and nuts, as well as in cosmetics and pharmaceuticals containing plant materia

    • • Procyanidin B1 Analysis Service

      Polyphenols are the largest group of secondary metabolites in plants, and their structural determination has been a focal point in research. Among polyphenols, procyanidin, also known as condensed tannins, are derived from proanthocyanidins. Procyanidin and proanthocyanidins are ubiquitously present in the plant kingdom and are commonly found in varying concentrations in everyday foods such as fruits, vegetables, legumes, grains, and nuts, as well as in cosmetics and pharmaceuticals containing plant materia

    • • Procyanidin A2 Analysis Service

      Polyphenols are the largest group of secondary metabolites in plants, and their structural determination has been a focal point in research. Among polyphenols, procyanidin, also known as condensed tannins, are derived from proanthocyanidins. Procyanidin and proanthocyanidins are ubiquitously present in the plant kingdom and are commonly found in varying concentrations in everyday foods such as fruits, vegetables, legumes, grains, and nuts, as well as in cosmetics and pharmaceuticals containing plant materia

    • • Procyanidin A1 Analysis Service

      Polyphenols are the largest group of secondary metabolites in plants, and their structural determination has been a focal point in research. Among polyphenols, procyanidin, also known as condensed tannins, are derived from proanthocyanidins. Procyanidin and proanthocyanidins are ubiquitously present in the plant kingdom and are commonly found in varying concentrations in everyday foods such as fruits, vegetables, legumes, grains, and nuts, as well as in cosmetics and pharmaceuticals containing plant materia

    • • Pilocarpine Analysis Service

      MtoZ Biolabs utilizes liquid chromatography-mass spectrometry (LC-MS) for metabolomic analysis of pilocarpine. This technique combines the high separation efficiency of high-performance liquid chromatography (HPLC) with the high sensitivity of mass spectrometry (MS), allowing for the precise detection and quantification of trace components in complex samples.

    • • Morphine Analysis Service

      MtoZ Biolabs utilizes liquid chromatography-mass spectrometry (LC-MS) for metabolomic analysis of morphine. This technique combines the high separation efficiency of high-performance liquid chromatography (HPLC) with the high sensitivity of mass spectrometry (MS), allowing for the precise detection and quantification of trace components in complex samples.

    • • Magnoflorine Analysis Service

      MtoZ Biolabs utilizes liquid chromatography-mass spectrometry (LC-MS) for metabolomic analysis of magnoflorine. This technique combines the high separation efficiency of high-performance liquid chromatography (HPLC) with the high sensitivity of mass spectrometry (MS), allowing for the precise detection and quantification of trace components in complex samples.

    • • Berberine Analysis Service

      MtoZ Biolabs utilizes liquid chromatography-mass spectrometry (LC-MS) for metabolomic analysis of berberine. This technique combines the high separation efficiency of high-performance liquid chromatography (HPLC) with the high sensitivity of mass spectrometry (MS), allowing for the precise detection and quantification of trace components in complex samples.

    • • Aconitine Analysis Service

      MtoZ Biolabs utilizes liquid chromatography-mass spectrometry (LC-MS) for metabolomic analysis of aconitine. This technique combines the high separation efficiency of high-performance liquid chromatography (HPLC) with the high sensitivity of mass spectrometry (MS), allowing for the precise detection and quantification of trace components in complex samples.

    • • Single Cell Metabolomics Service

      The single cell is the fundamental unit of biological activity, influencing all aspects of an organism’s physiology and pathology, such as growth, development, metabolic regulation, communication, and aging. Understanding single cell metabolic activities is pivotal for addressing broader life science challenges. Single cell metabolomics, by accurately measuring metabolites within individual cells, offers a powerful tool to discern fine distinctions in cellular functions and disease states.

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