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Cyclodextrin-Based Polymeric Materials: Synthesis, Properties, and Pharmaceutical/Biomedical Applications

Biomacromolecules · 2009 · Vol. 10(12) · pp. 3157–3175
Frank van de ManakkerTina VermondenCornelus F. van NostrumWim E. Hennink

Abstract

This review describes the synthesis, properties, and, in particular, biomedical and pharmaceutical applications of an upcoming class of polymeric networks and assemblies based on cyclodextrins (CDs). CDs are cyclic oligosaccharides composed of alpha-1,4-coupled d-glucose units, which contain a hydrophobic internal cavity that can act as a host for various, generally lipophilic, guest molecules. Because of this unique physicochemical property, commonly referred to as inclusion complex formation, CDs have often been used to design polymeric materials, such as hydrogels and nanoparticles. Polymeric systems based on CDs exhibit unique characteristics in terms of mechanical properties, stimuli-responsiveness, and drug release characteristics. In this contribution, first, an outline is given of covalently cross-linked polymeric networks in which CD moieties were structurally incorporated to modulate the network strength as well as the complexation and release of low molecular weight drugs. Second, physically assembled polymeric systems are discussed, of which the formation is accomplished by inclusion complexes between polymer-conjugated CDs and various guest molecule-derivatized polymers. Due to their physical nature, these polymeric systems are sensitive to external stimuli, such as temperature changes, shear forces and the presence of competing CD-binding molecules, which can be exploited to use these systems as injectable, in situ gelling devices. In recent years, many interesting CD-containing polymeric systems have been described in literature. These systems have to be optimized and extensively evaluated in preclinical studies concerning their safety and efficacy, making future clinical applications of these materials in the biomedical and pharmaceutical field feasible.

Drug Solubulity and Delivery SystemsHydrogels: synthesis, properties, applicationsNanoparticle-Based Drug DeliverySelf-healing hydrogelsPolymerNanotechnologyCyclodextrinChemistryMoleculeCombinatorial chemistryNanoparticleSmall moleculeMaterials science

MeSH terms

AnimalsCyclodextrinsHumansPolymersCell Line, TumorNanoparticlesMechanical Phenomena
Citations
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References
Cyclodextrins: Their Future in Drug Formulation and Delivery
Pharmaceutical Research · 1997 · 683 citations
Sheddable Coatings for Long-Circulating Nanoparticles
Pharmaceutical Research · 2007 · 548 citations
Novel crosslinking methods to design hydrogels
Advanced Drug Delivery Reviews · 2002 · 1,927 citations
Cyclodextrins and their pharmaceutical applications
International Journal of Pharmaceutics · 2006 · 1,664 citations
Cyclodextrins as food ingredients
Trends in Food Science & Technology · 2004 · 670 citations
Pharmaceutical Applications of Cyclodextrins. 2. In Vivo Drug Delivery
Journal of Pharmaceutical Sciences · 1996 · 805 citations
In situ gelling hydrogels for pharmaceutical and biomedical applications
International Journal of Pharmaceutics · 2008 · 618 citations
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