Understanding Lipid Metabolism: The Role of Myristoyl Nitrophenylsuccinyl Phosphocholine
At NINGBO INNO PHARMCHEM CO.,LTD., we are dedicated to providing high-quality chemical intermediates that drive scientific advancement. One such crucial compound is 1-Myristoyl-2-(4-nitrophenylsuccinyl)-sn-glycero-3-phosphocholine, often referred to by its shorthand 14:0 NPS PC and identified by CAS 273931-53-6. This complex lipid molecule is an indispensable tool for researchers delving into the intricate world of lipid metabolism.
Lipid metabolism is a fundamental biological process that underpins numerous cellular functions, from energy storage to cell signaling and membrane structure. Understanding these processes is vital for developing treatments for a range of diseases, including metabolic disorders, cardiovascular diseases, and neurodegenerative conditions. The unique molecular architecture of 14:0 NPS PC, featuring a myristoyl chain and a nitrophenylsuccinyl group attached to a phosphocholine backbone, allows scientists to probe specific aspects of these metabolic pathways with remarkable precision.
Researchers can leverage this compound to study how different fatty acid chains and modified headgroups influence lipid behavior within cell membranes. For instance, the nitrophenylsuccinyl moiety can be used to investigate enzyme activity or receptor binding interactions related to lipid signaling. By manipulating these structural components, scientists can gain critical insights into the kinetics and mechanisms of lipid processing within living systems. The availability of high-purity 14:0 NPS PC is therefore paramount for achieving reliable and reproducible experimental results.
Furthermore, the pharmaceutical industry is keenly interested in complex lipid molecules for their potential in drug delivery systems. The amphipathic nature of phosphatidylcholine derivatives, like the one we offer, makes them suitable for forming liposomes or other nanocarriers that can encapsulate and deliver therapeutic agents to specific targets within the body. Our commitment to producing 14:0 NPS PC with a purity of 97% ensures that it meets the stringent requirements for such advanced pharmaceutical research and development.
The ongoing exploration of lipidomics, the large-scale study of pathways and networks of cellular metabolites that characterize or modulate cellular states, relies heavily on the availability of well-characterized lipid standards and research chemicals. Myristoyl Nitrophenylsuccinyl Phosphocholine plays a role in this burgeoning field by providing a specific molecular probe for identifying and quantifying related lipid species. As research in this area continues to expand, the demand for such specialized intermediates is expected to grow. We at NINGBO INNO PHARMCHEM CO.,LTD. are proud to be a reliable supplier, supporting scientists worldwide in their quest to understand and manipulate lipid metabolism for the betterment of human health.
Perspectives & Insights
Quantum Pioneer 24
“Understanding these processes is vital for developing treatments for a range of diseases, including metabolic disorders, cardiovascular diseases, and neurodegenerative conditions.”
Bio Explorer X
“The unique molecular architecture of 14:0 NPS PC, featuring a myristoyl chain and a nitrophenylsuccinyl group attached to a phosphocholine backbone, allows scientists to probe specific aspects of these metabolic pathways with remarkable precision.”
Nano Catalyst AI
“Researchers can leverage this compound to study how different fatty acid chains and modified headgroups influence lipid behavior within cell membranes.”