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1.
J Sep Sci ; 40(10): 2170-2177, 2017 May.
Article in English | MEDLINE | ID: mdl-28387037

ABSTRACT

It is difficult to pack chromatographic particles having polymeric-bonded phases because solvents used for making a stable slurry cause the polymer layer to swell. Growth of the polymer inside the column (in situ) after packing was investigated and compared with conventional, ex situ polymer growth. The method of activators generated by electron transfer, along with atom-transfer radical polymerization, enabled polymerization under ambient conditions. Nonporous, 0.62 µm silica particles with silane initiators were used. Polyacrylamide films with a hydrated thickness of 23 nm in 75:25 water/isopropanol grew in 55 min for both in situ and ex situ preparations, and the same carbon coverage was observed. Higher chromatographic resolution and better column-to-column reproducibility were observed for in situ polymer growth, as evaluated by hydrophilic interaction liquid chromatography for the model glycoprotein, ribonuclease B. In situ polymer growth was also found to give lower eddy diffusion, as shown by a narrower peak width for injected acetonitrile in 50:50 acetonitrile/water. When columns were packed more loosely, bed collapse occurred quickly for ex situ, but not for in situ, polymer growth. The higher resolution and stability for in situ polymer growth is explained by packing with hard, rather than soft, contacts between particles.

2.
Mol Pharm ; 10(4): 1299-305, 2013 Apr 01.
Article in English | MEDLINE | ID: mdl-23398604

ABSTRACT

RNA interference has broad therapeutic potential due to its high specificity and ability to potentially evade drug resistance. Three cationic α-cyclodextrin:poly(ethylene glycol) polyrotaxanes derived from polymer axles of different sizes (MW 2,000, 3,400, and 10,000) have been synthesized for delivering siRNA. These polyrotaxanes are able to condense siRNA into positively charged particles that are <200 nm in diameter, enabling their facile internalization into mammalian cells. The cationic polyrotaxanes display cytotoxicity profiles that are >10(2)-fold lower than the commercial standard bPEI and gene silencing efficiencies that are comparable to those of both Lipofectamine 2000 and bPEI. Our findings suggest that the cationic polyrotaxanes display a size-activity relationship, wherein the higher molecular weight polyrotaxanes (PEG3,400 and 10,000) are able to condense and deliver siRNA better than the lower molecular weight material (PEG2,000).


Subject(s)
Genetic Vectors , Polyethylene Glycols/chemistry , Rotaxanes/chemistry , alpha-Cyclodextrins/chemistry , Animals , CHO Cells , Cations , Cricetinae , Cricetulus , Cyclodextrins/chemistry , Gene Transfer Techniques , Green Fluorescent Proteins/metabolism , Lipids/chemistry , Mice , Microscopy, Atomic Force , Molecular Weight , NIH 3T3 Cells , Particle Size , RNA Interference , RNA, Small Interfering/metabolism , Solvents/chemistry
3.
J Org Chem ; 74(16): 6307-10, 2009 Aug 21.
Article in English | MEDLINE | ID: mdl-19624152

ABSTRACT

An efficient, simple convergent assembly of a homolinear alpha(1-->6)-linked octamannosyl thioglycoside was obtained starting from imidazolium cation-tagged mannosyl fluoride and thiomannoside using block couplings. During chain elongation glycosylation reactions no column chromatographic purifications were used.


Subject(s)
Imidazoles/chemistry , Mannosides/chemistry , Oligosaccharides/chemistry , Oligosaccharides/chemical synthesis , Glycosylation , Solutions
4.
Org Lett ; 10(1): 145-8, 2008 Jan 03.
Article in English | MEDLINE | ID: mdl-18069846

ABSTRACT

The synthesis of complex oligosaccharides has been a challenge for researchers. Herein, we describe a strategy for the synthesis of an activated oligomannan 1 that employs ionic liquid (IL) support glycosylation methodology on an IL-tagged mannosyl fluoride donor. This method is capable of rapidly producing linear alpha(1-->6) oligomannan thioglycosides in a convenient and cost-effective manner without the need of column purification after each glycosylation step.


Subject(s)
Mannans/chemical synthesis , Glycosides/chemical synthesis , Glycosides/chemistry , Glycosylation , Mannans/chemistry , Molecular Structure , Stereoisomerism
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