Guo_2012_J.Am.Chem.Soc_134_10244

Reference

Title : Cholinesterase-responsive supramolecular vesicle - Guo_2012_J.Am.Chem.Soc_134_10244
Author(s) : Guo DS , Wang K , Wang YX , Liu Y
Ref : Journal of the American Chemical Society , 134 :10244 , 2012
Abstract :

Enzyme-responsive, amphiphilic self-assembly represents one of the increasingly significant topics in biomaterials research and finds feasible applications to the controlled release of therapeutic agents at specific sites where the target enzyme is located. The supramolecular approach, using "superamphiphiles", provides a smart way to fabricate drug delivery systems responsive to enzymatic catalysis. In this work based on the concept of supramolecular chemistry, we report an enzyme-responsive vesicle using p-sulfonatocalix[4]arene as the macrocyclic host and natural enzyme-cleavable myristoylcholine as the guest molecule. The complexation of p-sulfonatocalix[4]arene with myristoylcholine directs the formation of a supramolecular binary vesicle, which is dissipated by cholinesterase with high specificity and efficiency. Cholinesterase is a key protein overexpressed in Alzheimer's disease, and therefore, the present system may have potential for the delivery of Alzheimer's disease drugs.

PubMedSearch : Guo_2012_J.Am.Chem.Soc_134_10244
PubMedID: 22686862

Related information

Substrate Myristoylcholine

Citations formats

Guo DS, Wang K, Wang YX, Liu Y (2012)
Cholinesterase-responsive supramolecular vesicle
Journal of the American Chemical Society 134 :10244

Guo DS, Wang K, Wang YX, Liu Y (2012)
Journal of the American Chemical Society 134 :10244