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Published on: September 21, 2012
Tissue targeting of multivalent Le(x)-terminated N-linked oligosaccharides in mice
M H Chiu1, V H Thomas, H J Stubbs
1College of Pharmacy, University of Michigan, Ann Arbor 48109-1065, USA.
Abstract:
The target site for N-linked biantennary and triantennary oligosaccharides containing multiple terminal Le(x) determinants was analyzed in mice. N-linked oligosaccharides containing a single tert-butoxycarbonyl-tyrosine attached to the reducing end were used as synthons for human milk alpha-3/4-fucosyltransferase to prepare multivalent Le(x) (Gal beta 1-4[Fuc alpha 1-3]GlcNAc) terminated tyrosinamide oligosaccharides. The oligosaccharides were radioiodinated and examined for their pharmacokinetics and biodistribution in mice. The liver was the major target site in mice at 30 min, which accumulated 18% of the dose for Le(x) biantennary compared with 6% for a nonfucosylated Gal biantennary. By comparison, Le(x)- and Gal-terminated triantennary accumulated in the liver with a targeting efficiency of 66 and 59%, respectively. The liver targeting of Le(x)-biantennary was partially blocked by co-administration with either galactose or L-fucose whereas Le(x) triantennary targeting was only reduced by co-administration with galactose. In contrast to these results in mice, in vivo experiments performed in rats established that both Le(x) and Gal terminated biantennary target the liver with nearly identical efficiency (6-7%). It is concluded that the asialoglycoprotein receptor in mice preferentially recognize Le(x) biantennary over Gal biantennary, whereas little or no differentiation exists in rats. Thereby, the mouse asialoglycoprotein receptor apparently possesses additional binding pockets that accommodate a fucose residue when presented as Le(x).
Insights
Mice liver preferentially targets Le(x) biantennary oligosaccharides over Gal biantennary. Rat liver shows no preference, indicating species-specific differences in asialoglycoprotein receptor binding.
Area of Science:
- Glycobiology
- Pharmacokinetics
- Receptor Binding
Background:
- N-linked oligosaccharides are crucial in biological processes.
- Terminal Lewis x (Le(x)) determinants play roles in cell recognition.
- Understanding oligosaccharide targeting is key for drug delivery.
Purpose of the Study:
- To analyze the target sites of N-linked biantennary and triantennary oligosaccharides with Le(x) determinants in mice.
- To investigate the role of the asialoglycoprotein receptor in oligosaccharide recognition.
Main Methods:
- Synthesis of Le(x)-terminated tyrosinamide oligosaccharides.
- Radioiodination of oligosaccharides for pharmacokinetic and biodistribution studies in mice and rats.
- In vivo competition assays using galactose or L-fucose.
Main Results:
- The liver was the primary target site in mice for Le(x) biantennary (18%) compared to Gal biantennary (6%).
- Le(x)- and Gal-terminated triantennary oligosaccharides showed high liver accumulation (66% and 59%).
- Mouse liver targeting of Le(x) biantennary was blocked by galactose or L-fucose; rat liver showed similar targeting for Le(x) and Gal biantennary.
Conclusions:
- The mouse asialoglycoprotein receptor preferentially recognizes Le(x) biantennary oligosaccharides over Gal biantennary.
- Rats exhibit little to no differentiation between Le(x) and Gal biantennary oligosaccharides.
- Mouse asialoglycoprotein receptor may have additional binding pockets for fucose in Le(x).

