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KMID : 0369819920220020155
Jorunal of Korean Pharmaceutical Sciences
1992 Volume.22 No. 2 p.155 ~ p.161
Development of Target - Specific Drug Delivery Systems Using Glycosylated Proliposome I - Binding of Asialofetuin - Labeled Liposomes to Lectin RCA
½Éⱸ/Shim CK
ÀÌâ¿ë/±èÁ¾±¹/Lee CY/Kim CK
Abstract
Although glycosylated liposomes have attracted much attention as targeting delivery systems (DDS) of drugs to specific organs which have glycoside receptors, physical instability of liposomes greatly limits their practical application. In this case, proliposomes might be a potential answer to solve this problem. Utilizing the proliposomes as tageting DDS has been a goal of our series of works; we have tried to develop DDS which form liposomes uppon adding water and can deliver drugs to specific target organs/cells such as hepatocytes. In this paper, preparation of glycosylated liposomes and binding of the liposomes with lectin (agglutinin RCA 120) was studied. Asialoletuin (AF) was selected as a model compound which has galactose terminal and is favorable for binding with galactose receptor on the surface of hepatocytes. AF was obtained by splitting the terminal N-acetylneuraminic acid (NANA) of fetuin. Small unilamellar AF-liposomes were prepared by mixing aqueous solution of AF-palmitate with thin film of phosphatidyl choline and cholesterol (30:10 w/w) formed on the innersurface of the round bottomed flask. They were successively extruded through polycarbonate membranes (0.45 mm). Palmitoyl-AF not incorporated into the liposomal bilayer was separated from liposomes by a Sepharose 4B column equilibrated with 10 mM Tris-HCI buffered saline. Lectin (agglutinin RCA 120) was added to the suspension of AF-liposomes and incubated at 37?C for 2 hr. After centrifugation, the unbound lectin in the supernatant was assayed for protein. The binding of the lectin to AF-liposomes (AF content 2.8 nmole) at 37?C was linear at least upto 35 mg of lectin indicating high affinity association of the lectin to AF molecules of the liposomes.
KEYWORD
proliposome, asialofetuin (AF), AF-liposome, galactose, targeting, lectin binding
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