1,2-Dipalmitoyl-sn-Glycero-3-Phosphothioethanol (Sodium Salt)

>99%

Reagent Code: #62414
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CAS Number 474923-39-2

science Other reagents with same CAS 474923-39-2

blur_circular Chemical Specifications

scatter_plot Molecular Information
Weight 730.99 g/mol
Formula C₃₇H₇₂O₈PNaS
inventory_2 Storage & Handling
Storage room temperature

description Product Description

This chemical is widely used in the field of biochemistry and nanotechnology for the development of liposomes and drug delivery systems. Its amphiphilic nature allows it to form stable lipid bilayers, making it an essential component in creating carriers for targeted drug delivery. It is particularly useful in encapsulating therapeutic agents, ensuring their controlled release and improved bioavailability. Additionally, it is employed in the study of membrane interactions and cellular uptake mechanisms, aiding in the design of more efficient therapeutic strategies. Its application also extends to vaccine development, where it enhances the stability and efficacy of vaccine formulations.

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Test Parameter Specification
Purity 98.5-100
Infrared Spectrum Conforms to Structure
NMR Conforms to Structure

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Size Availability Unit Price Quantity
inventory 5mg
10-20 days ฿4,260.00
inventory 25mg
10-20 days ฿15,200.00

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1,2-Dipalmitoyl-sn-Glycero-3-Phosphothioethanol (Sodium Salt)
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This chemical is widely used in the field of biochemistry and nanotechnology for the development of liposomes and drug delivery systems. Its amphiphilic nature allows it to form stable lipid bilayers, making it an essential component in creating carriers for targeted drug delivery. It is particularly useful in encapsulating therapeutic agents, ensuring their controlled release and improved bioavailability. Additionally, it is employed in the study of membrane interactions and cellular uptake mechanisms,

This chemical is widely used in the field of biochemistry and nanotechnology for the development of liposomes and drug delivery systems. Its amphiphilic nature allows it to form stable lipid bilayers, making it an essential component in creating carriers for targeted drug delivery. It is particularly useful in encapsulating therapeutic agents, ensuring their controlled release and improved bioavailability. Additionally, it is employed in the study of membrane interactions and cellular uptake mechanisms, aiding in the design of more efficient therapeutic strategies. Its application also extends to vaccine development, where it enhances the stability and efficacy of vaccine formulations.

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