Molecular Pharmaceutics 2012-11-05

Acid-labile mPEG-vinyl ether-1,2-dioleylglycerol lipids with tunable pH sensitivity: synthesis and structural effects on hydrolysis rates, DOPE liposome release performance, and pharmacokinetics.

Junhwa Shin, Pochi Shum, Jessica Grey, Shin-ichi Fujiwara, Guarov S Malhotra, Andres González-Bonet, Seok-Hee Hyun, Elaine Moase, Theresa M Allen, David H Thompson

Index: Mol. Pharm. 9(11) , 3266-76, (2012)

Full Text: HTML

Abstract

A family of 3-methoxypoly(ethylene glycol)-vinyl ether-1,2-dioleylglycerol (mPEG-VE-DOG) lipopolymer conjugates, designed on the basis of DFT calculations to possess a wide range of proton affinities, was synthesized and tested for their hydrolysis kinetics in neutral and acidic buffers. Extruded ∼100 nm liposomes containing these constructs in ≥90 mol % 1,2-dioleoyl-sn-glycero-3-phosphoethanolamine (DOPE) produced dispersions that retained their calcein cargo for more than 2 days at pH 7.5, but released the encapsulated contents over a wide range of time scales as a function of the electronic properties of the vinyl ether linkage, the solution pH, and the mPEG-VE-DOG composition in the membrane. The in vivo performance of two different 90:10 DOPE:mPEG-VE-DOG compositions was also evaluated for blood circulation time and biodistribution in mice, using (125)I-tyraminylinulin as a label. The pharmacokinetic profiles gave a t(1/2) of 7 and 3 h for 90:10 DOPE:ST302 and 90:10 DOPE:ST502, respectively, with the liposomes being cleared predominantly by liver and spleen uptake. The behavior of these DOPE:mPEG-VE-DOG formulations is consistent with their relative rates of vinyl ether hydrolysis, i.e., the more acid-sensitive mPEG-VE-DOG derivatives produced faster leakage rates from DOPE:mPEG-VE-DOG liposomes, but decreased the blood circulation times in mice. These findings suggest that the vinyl ether-based PEG-lipid derivatives are promising agents for stabilizing acid-sensitive DOPE liposomes to produce formulations with a priori control over their pH responsiveness in vitro. Our data also suggest, however, that the same factors that contribute to enhanced acid sensitivity of the DOPE:mPEG-VE-DOG dispersions are also likely responsible for their reduced pharmacokinetic profiles.


Related Compounds

Related Articles:

Universal concept for the implementation of a single cleavable unit at tunable position in functional poly(ethylene glycol)s.

2013-02-11

[Biomacromolecules 14(2) , 448-59, (2013)]

Preliminary assessment of the safety evaluation of novel pH-sensitive hydrogel.

2012-10-01

[Eur. J. Pharm. Biopharm. 82(2) , 332-9, (2012)]

PEGylation of vesicular stomatitis virus extends virus persistence in blood circulation of passively immunized mice.

2013-04-01

[J. Virol. 87(7) , 3752-9, (2013)]

How a simple "clicked" PEGylated 1,2,3-triazole ligand stabilizes gold nanoparticles for multiple usage.

2013-04-21

[Chem. Commun. (Camb.) 49(31) , 3218-20, (2013)]

Characterization of biomolecular nanoconjugates by high-throughput delivery and spectroscopic difference.

2012-12-01

[Nanomedicine (Lond.) 7(12) , 1851-62, (2012)]

More Articles...