Overview
S-Lysophosphatidylcholine (S-LysoPC) is a sn-1 deacylated derivative of phosphatidylcholine, characterized by a single fatty acid chain at the sn-2 position. As a lysophospholipid, it serves as a crucial intermediate in phospholipid metabolism and a bioactive lipid mediator in physiological processes. Unlike its non-specific counterparts, the 'S-' designation indicates stereospecificity at the glycerol backbone, making it biologically relevant for studying enzyme-substrate interactions and membrane asymmetry. Its amphiphilic nature enables unique micelle formation at critical concentrations, which is exploited in pharmaceutical formulations.
Physical and Chemical Properties
S-LysoPC exhibits distinct physicochemical properties due to its single acyl chain structure. It forms inverted conical-shaped molecules that preferentially induce positive membrane curvature, a trait utilized in liposome destabilization studies. The critical micelle concentration (CMC) typically ranges between 10-100 μM, depending on chain length and temperature. Thermal analysis shows decomposition rather than clear melting points, with differential scanning calorimetry (DSC) revealing phase transition temperatures between 40-60°C for common variants. Its solubility profile allows for preparation in organic solvent systems (e.g., chloroform:methanol) followed by aqueous dispersion, though stability in water is limited to hours due to possible acyl migration.
Main Applications
In drug delivery, S-LysoPC enhances membrane permeability and is incorporated into stealth liposomes for targeted release. Its ability to modify lipid bilayer properties makes it valuable for studying membrane-protein interactions in structural biology. Pharmaceutical research utilizes S-LysoPC as a biomarker for inflammatory diseases (e.g., atherosclerosis) due to its role in oxidative stress pathways. Recent applications include vaccine adjuvants where it potentiates immune responses by activating antigen-presenting cells through G protein-coupled receptor signaling.
Safety and Storage
As a bioactive lipid, S-LysoPC requires careful handling to maintain stability and prevent exposure. Long-term storage should be at -20°C or lower under inert gas to prevent oxidation. Vials should be equilibrated to room temperature before opening to avoid moisture condensation. Safety protocols mandate fume hood use during weighing due to potential respiratory irritation. Spills should be contained with absorbent materials and cleaned with ethanol/water mixtures. Waste disposal must follow institutional guidelines for organic compounds.
B2B Procurement Guide
When procuring S-LysoPC, buyers should specify: 1) Acyl chain length (e.g., palmitoyl [16:0], oleoyl [18:1]), 2) Purity level (HPLC-certified ≥95% for most applications), 3) Analytical certificates (NMR/MS data), and 4) Sterility requirements if for cell culture. Bulk purchases (100g+) may achieve 15-30% cost reductions. Consider suppliers offering custom synthesis for rare chain variants. For GMP applications, verify ICH stability data and endotoxin testing reports. Lead times for specialty grades often exceed 4-6 weeks.
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