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Sheddable Coatings for Long-Circulating Nanoparticles

Pharmaceutical Research · 2007 · Vol. 25(1) · pp. 55–71
Birgit RombergWim E. HenninkGert Storm

Abstract

Nanoparticles, such as liposomes, polymeric micelles, lipoplexes and polyplexes are frequently studied as targeted drug carrier systems. The ability of these particles to circulate in the bloodstream for a prolonged period of time is often a prerequisite for successful targeted delivery. To achieve this, hydrophilic 'stealth' polymers, such as poly(ethylene glycol) (PEG), are used as coating materials. Such polymers shield the particle surface and thereby reduce opsonization by blood proteins and uptake by macrophages of the mononuclear phagocyte system. Yet, after localizing in the pathological site, nanoparticles should deliver their contents in an efficient manner to achieve a sufficient therapeutic response. The polymer coating, however, may hinder drug release and target cell interaction and can therefore be an obstacle in the realization of the therapeutic response. Attempts have been made to enhance the therapeutic efficacy of sterically stabilized nanoparticles by means of shedding, i.e. a loss of the coating after arrival at the target site. Such an 'unmasking' process may facilitate drug release and/or target cell interaction processes. This review presents an overview of the literature regarding different shedding strategies that have been investigated for the preparation of sterically stabilized nanoparticulates. Detach mechanisms and stimuli that have been used are described.

Nanoparticle-Based Drug DeliveryRNA Interference and Gene DeliveryAdvanced Drug Delivery SystemsMononuclear phagocyte systemEthylene glycolNanoparticleDrug deliveryAntibody opsonizationCoatingEndocytosisDrug carrierPolymerDrug

MeSH terms

AnimalsCell MembraneExcipientsHumansHydrogen-Ion ConcentrationIndicators and ReagentsPeptidesPolyethylene GlycolsPolymersDrug Delivery SystemsNanoparticles
Citations
548
FWCI
15.10
field-weighted impact
References
82
Percentile
99%
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References
Unraveling the role of proteases in cancer
Clinica Chimica Acta · 2000 · 583 citations
Recent advances with liposomes as pharmaceutical carriers
Nature Reviews Drug Discovery · 2005 · 5,121 citations
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