TY - JOUR
T1 - Toward targeted oral vaccine delivery systems
T2 - Selection of lectin mimetics from combinatorial libraries
AU - Lambkin, Imelda
AU - Pinilla, Clemencia
AU - Hamashin, Christa
AU - Spindler, Lisa
AU - Russell, Shannon
AU - Schink, Amy
AU - Moya-Castro, Rosa
AU - Allicotti, Gina
AU - Higgins, Lisa
AU - Smith, Melanie
AU - Dee, Jackie
AU - Wilson, Carolyn
AU - Houghten, Richard
AU - O'Mahony, Daniel
PY - 2003/8/1
Y1 - 2003/8/1
N2 - Purpose.: Various lectins bind specifically to oligosaccharides on intestinal cells. Exploiting this specificity, Ulex europaeus agglutinin I (UEA1) has been used as a ligand for targeted oral vaccine delivery to M cells (antigen-presenting cells) in follicle-associated epithelium. In this study we characterized compounds identified from mixture-based positional scanning synthetic combinatorial libraries, which mimic UEA1 and, thus, may have properties applicable to targeted drug delivery. Methods.: Two UEA1 mimetics were synthesized and their activity was verified on live cells. The ability of the lead compound, a tetragalloyl D-Lysine amide construct (4-copy gallic acid construct), to deliver dye-loaded polystyrene particles to M cells was assessed in an in situ mouse gut loop model. Results.: The 4-copy gallic acid construct inhibited UEA1 binding to Caco-2 cell membranes with an IC50 of 3 μM, a 650- to 5000-fold increase over the natural UEA1 substrate α-L-fucose. The biotin-labeled derivative of this construct demonstrated comparable binding activity as verified on live cells by fluorescence-activated cell sorting. Preclinical studies confirmed its ability to mediate M cell-specific delivery of streptavidin-coated particles in vivo. Conclusions.: Polyphenolic compounds, D-Lysine scaffolds with multiple galloyl groups, can mimic functional activities of UEA1. Properties of such molecules, including low molecular weight, stability, ease of synthesis and low cost, highlight their potential for application in targeted vaccine delivery.
AB - Purpose.: Various lectins bind specifically to oligosaccharides on intestinal cells. Exploiting this specificity, Ulex europaeus agglutinin I (UEA1) has been used as a ligand for targeted oral vaccine delivery to M cells (antigen-presenting cells) in follicle-associated epithelium. In this study we characterized compounds identified from mixture-based positional scanning synthetic combinatorial libraries, which mimic UEA1 and, thus, may have properties applicable to targeted drug delivery. Methods.: Two UEA1 mimetics were synthesized and their activity was verified on live cells. The ability of the lead compound, a tetragalloyl D-Lysine amide construct (4-copy gallic acid construct), to deliver dye-loaded polystyrene particles to M cells was assessed in an in situ mouse gut loop model. Results.: The 4-copy gallic acid construct inhibited UEA1 binding to Caco-2 cell membranes with an IC50 of 3 μM, a 650- to 5000-fold increase over the natural UEA1 substrate α-L-fucose. The biotin-labeled derivative of this construct demonstrated comparable binding activity as verified on live cells by fluorescence-activated cell sorting. Preclinical studies confirmed its ability to mediate M cell-specific delivery of streptavidin-coated particles in vivo. Conclusions.: Polyphenolic compounds, D-Lysine scaffolds with multiple galloyl groups, can mimic functional activities of UEA1. Properties of such molecules, including low molecular weight, stability, ease of synthesis and low cost, highlight their potential for application in targeted vaccine delivery.
KW - Gallic acid
KW - Lectin
KW - M cells
KW - Mixture-based synthetic combinatorial libraries (SCLs)
KW - Polyphenols
KW - Ulex europaeus agglutinin I (UEA1)
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U2 - 10.1023/A:1025061317400
DO - 10.1023/A:1025061317400
M3 - Article
C2 - 12948024
AN - SCOPUS:12444283332
SN - 0724-8741
VL - 20
SP - 1258
EP - 1266
JO - Pharmaceutical research
JF - Pharmaceutical research
IS - 8
ER -