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Insights into low molecular mass organic gelators: a focus on drug delivery and tissue engineering applications

Soft Matter · 2013 · Vol. 10(2) · pp. 237–256
Kathryn J. SkillingFrancesca CitossiTracey D. BradshawMarianne AshfordBarrie KellamMaria Marlow

Abstract

In recent years low molecular mass organic gelators (LMOGs) have gained increasing interest as an alternative biomaterial to polymer derived gels, with potential applications in drug delivery and tissue engineering. LMOGs are small organic molecules which self-assemble in water or organic solvents forming a 3D network that entraps the liquid phase resulting in gel formation. In this review, we report the classification of LMOGs into hydrogelators and gelators of organic solvents and we discuss the techniques commonly used to characterise the gels of these gelators with particular reference to specific applications of LMOGs in drug delivery and tissue engineering.

Supramolecular Self-Assembly in MaterialsLipid Membrane Structure and BehaviorRNA Interference and Gene DeliveryDrug deliveryTissue engineeringBiomaterialMolecular engineeringNanotechnologyPolymerOrganic moleculesChemistryMaterials scienceOrganic chemistry

MeSH terms

GelsHumansMolecular WeightOrganic ChemicalsDrug Delivery SystemsTissue Engineering
Citations
350
FWCI
15.62
field-weighted impact
References
200
Percentile
100%
vs. same field & year
Citations per year
References
Organogels and their use in drug delivery — A review
Journal of Controlled Release · 2007 · 724 citations
Prodrugs: design and clinical applications
Nature Reviews Drug Discovery · 2008 · 1,565 citations
Design and Application of Self‐Assembled Low Molecular Weight Hydrogels
European Journal of Organic Chemistry · 2005 · 583 citations
Supramolecular gels: Functions and uses
Chemical Society Reviews · 2005 · 2,015 citations
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