1,2-Distearoyl-sn-glycero-3-phosphoethanolamine (1069-79-0): A Comprehensive Guide for Pharmaceutical and Lipid Science Applications
Explore the critical role of this saturated phospholipid in advanced drug delivery and research.
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1,2-Distearoyl-sn-glycero-3-phosphoethanolamine
This saturated phospholipid is a cornerstone in modern pharmaceutical research and development, particularly for its role in creating stable and effective drug delivery systems. Its amphiphilic nature allows for the self-assembly into crucial structures like liposomes and lipid nanoparticles, enhancing drug stability and bioavailability. Researchers leverage its unique properties for targeted delivery and advanced formulations.
- Leverage 1,2-Distearoyl-sn-glycero-3-phosphoethanolamine synthesis techniques to create high-purity lipids essential for pharmaceutical excipient research.
- Understand the core principles of DSPE lipid nanoparticle formulation for developing next-generation therapeutic delivery systems.
- Explore the diverse CAS 1069-79-0 applications in biotechnology and advanced chemical synthesis for the pharmaceutical industry.
- Utilize this phospholipid for drug delivery systems, optimizing liposome formulation and enhancing overall treatment efficacy.
Key Advantages Provided
Enhanced Formulation Stability
The saturated acyl chains of this phospholipid contribute to the formation of rigid, stable lipid bilayers, crucial for phospholipid applications in drug delivery, ensuring the integrity of liposomal structures.
Improved Drug Bioavailability
By encapsulating therapeutic agents within liposomes or lipid nanoparticles, DSPE significantly boosts drug stability and bioavailability, a key factor in pharmaceutical excipient research.
Versatile Application Potential
With a wide range of CAS 1069-79-0 applications, this compound is invaluable in biotechnology and fine chemical synthesis for pharma, enabling advancements in targeted drug delivery.
Key Applications
Liposome Formulation
This phospholipid is a foundational component for creating stable liposomes, vital for encapsulating and delivering sensitive pharmaceutical compounds.
Lipid Nanoparticle Development
As a key ingredient in DSPE lipid nanoparticle formulation, it enables advanced delivery vehicles for targeted therapies and enhanced drug efficacy.
Pharmaceutical Excipient
Its well-defined properties make it an excellent pharmaceutical excipient, critical for improving the performance of drug products.
Biotechnology Research
Essential in biotechnology research, it facilitates studies on cell membranes, lipid interactions, and the development of novel biomaterials.