RRC ID 18575
Author Bader RA, Silvers AL, Zhang N.
Title Polysialic acid-based micelles for encapsulation of hydrophobic drugs.
Journal Biomacromolecules
Abstract Despite improvements relative to unmodified counterparts, poly(ethylene glycol) (PEG) conjugation may not be the ideal solution for improving circulatory stability of current nanoparticle carriers or free drugs. Polysialic acid (PSA), a natural polymer for which the body possesses no receptors, has been conjugated directly to biologically active molecules to prevent premature clearance; however, this concept has not yet been applied to nanoparticle drug carrier systems. In the current study, PSA was modified with a long-chain hydrocarbon through reaction of the carboxylic acid side groups with N-decylamine (DA). The resultant PSA-DA conjugates self-assembled into micelles for encapsulation of hydrophobic drug molecules, as demonstrated with Cyclosporine A. Cytotoxicty was dependent on the degree of substitution with DA. On the basis of size and zeta potential, the micelles are capable of passively targeting diseased regions, such as cancer and inflammatory tissue. Further investigations are necessary to explore whether the PSA-based micelles possess stealth properties similar to those of PEG and to establish in vitro and in vivo efficacy.
Volume 12(2)
Pages 314-20
Published 2011-2-14
DOI 10.1021/bm1008603
PMID 21218771
MeSH Amines / chemistry Amines / pharmacology Carboxylic Acids / chemistry Cell Line Cyclosporine / chemistry* Drug Carriers / chemical synthesis Drug Carriers / chemistry* Fibroblasts / drug effects Humans Hydrophobic and Hydrophilic Interactions Micelles* Molecular Structure Particle Size Sialic Acids / chemical synthesis Sialic Acids / chemistry* Structure-Activity Relationship
IF 6.092
Times Cited 61
WOS Category POLYMER SCIENCE CHEMISTRY, ORGANIC BIOCHEMISTRY & MOLECULAR BIOLOGY
Resource
Human and Animal Cells MH7A(RCB1512)