RHC 80267 - Diacylglycerol (DAG) Lipase Inhibitor for Signal Transduction Studies

REF #: 3199886
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Short description

RHC 80267 is a diacylglycerol (DAG) lipase inhibitor that is widely used for signal transduction studies. With a purity of 98% HPLC, this solid form chemical is an important second messenger in cellular communication pathways. Discover its key features:

  • 98% HPLC purity: Ensures high quality and reliable results
  • Solid form: Convenient to handle and use
  • Diacylglycerol (DAG) lipase inhibitor: Efficiently inhibits DAG lipase activity
  • Signal transduction studies: Essential for understanding cellular communication processes

Chemical information:

  • Chemical Name: 1,6-bis(Cyclohexyloximinocarbonylamino)hexane
  • Alternate Names: R2028, U 57908
  • CAS Number: 83654-05-1
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  • Procurenet Team Tshim Sha Tsui
    Hong Kong Hong Kong 3 years
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Description

RHC 80267 - Diacylglycerol (DAG) Lipase Inhibitor for Signal Transduction Studies

Product Description:

RHC 80267 is a highly pure diacylglycerol (DAG) lipase inhibitor commonly used in signal transduction studies and lipid metabolism research. This compound plays a crucial role as a second messenger in cellular signaling pathways, making it an essential tool for researchers in diverse scientific fields.

Key Features:

  • 98% HPLC purity
  • Solid form
  • Diacylglycerol (DAG) lipase inhibitor
  • Important second messenger in signal transduction pathways

Chemical Information:

  • Chemical Name: 1,6-bis(Cyclohexyloximinocarbonylamino)hexane
  • Alternate Names: R2028, U 57908
  • CAS Number: 83654-05-1

Product Details:

RHC 80267, also known as 1,6-bis(Cyclohexyloximinocarbonylamino)hexane, has a chemical formula of C19H36N4O2 and a molecular weight of 344.51 grams per mole. It is available as a solid form with a purity of 98% HPLC. The compound is highly stable and can be easily stored for extended periods of time.

As a diacylglycerol (DAG) lipase inhibitor, RHC 80267 plays a crucial role in regulating lipid metabolism and cellular signaling. It directly targets and inhibits the activity of DAG lipase, an enzyme involved in the breakdown of diacylglycerol, a lipid molecule. By inhibiting DAG lipase, RHC 80267 can modulate the levels of diacylglycerol in cells, which in turn affects various cellular processes and signal transduction pathways.

RHC 80267 is an essential tool for researchers studying lipid metabolism, signal transduction, and related pathways. It has been widely used in numerous in vitro and in vivo experiments to investigate the role of diacylglycerol and its signaling mechanisms. Some of the key applications and research areas where RHC 80267 is utilized include:

  • Signal transduction studies
  • Lipid metabolism research
  • Cellular signaling pathways
  • Diacylglycerol-related experiments
  • Pharmacological studies
  • Drug discovery and development

The purity of RHC 80267 is crucial for obtaining accurate and reliable results in experiments. The product is subjected to rigorous quality control measures, ensuring a purity level of 98% as determined by high-performance liquid chromatography (HPLC) analysis. This high purity level guarantees the consistency and integrity of the compound, making it an excellent choice for research purposes.

Researchers and scientists can conveniently handle RHC 80267 in its solid form. It is provided as a stable crystalline powder, which can be easily dissolved in appropriate solvents for various experimental applications. The solid form ensures long-term stability and ease of handling, allowing for precise and reproducible results.

Additional Information:

RHC 80267 is also known by its alternate names, R2028 and U 57908. These names are commonly used in scientific literature and discussions.

Summary:

RHC 80267 - Diacylglycerol (DAG) Lipase Inhibitor for Signal Transduction Studies is a highly pure compound used in signal transduction studies and lipid metabolism research. With its solid form, 98% HPLC purity, and crucial role as a second messenger, RHC 80267 provides researchers with a reliable tool to investigate cellular signaling pathways and related mechanisms.

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