Metal alginates for polyphenol delivery systems: Studies on crosslinking ions and easy-to-use patches for release of protective flavonoids in skin

Incorporation of bioactive natural compounds like polyphenols is an attractive approach for enhanced functionalities of biomaterials. In particular flavonoids have important pharmacological activities, and controlled release systems may be instrumental to realize the full potential of these phytoche...

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Published inBioactive materials Vol. 5; no. 3; pp. 447 - 457
Main Authors Silva, João, Vanat, Pavlo, Marques-da-Silva, Dorinda, Rodrigues, Joaquim Rui, Lagoa, Ricardo
Format Journal Article
LanguageEnglish
Published China Elsevier B.V 01.09.2020
KeAi Publishing
KeAi Communications Co., Ltd
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Summary:Incorporation of bioactive natural compounds like polyphenols is an attractive approach for enhanced functionalities of biomaterials. In particular flavonoids have important pharmacological activities, and controlled release systems may be instrumental to realize the full potential of these phytochemicals. Alginate presents interesting attributes for dermal and other biomaterial applications, and studies were carried here to support the development of polyphenol-loaded alginate systems. Studies of capillary viscosity indicated that ionic medium is an effective strategy to modulate the polyelectrolyte effect and viscosity properties of alginates. On gelation, considerable differences were observed between alginate gels produced with Ca2+, Ba2+, Cu2+, Fe2+, Fe3+ and Zn2+ as crosslinkers, especially concerning shrinkage and morphological regularity. Stability assays with different polyphenols in the presence of alginate-gelling cations pointed to the choice of calcium, barium and zinc as safer crosslinkers. Alginate-based films loaded with epicatechin were prepared and the kinetics of release of the flavonoid investigated. The results with calcium, barium and zinc alginate matrices indicated that the release dynamics is dependent on film thicknesses, but also on the crosslinking metal used. On these grounds, an alginate-based system of convenient use was devised, so that flavonoids can be easily loaded at simple point-of-care conditions before dermal application. This epicatechin-loaded patch was tested on an ex-vivo skin model and demonstrated capacity to deliver therapeutically relevant concentrations on skin surface. Moreover, the flavonoid released was not modified and retained full antioxidant bioactivity. The alginate-based system proposed offers a multifunctional approach for flavonoid controllable delivery and protection of skin injured or under risk. [Display omitted] •Production of alginate gels with diverse metal cations was compared.•Copper and iron ions may interfere in the production of polyphenol-loaded materials.•Epicatechin release rate by metal-alginates increased in the order Ba2+<Zn2+<Ca2+.•Antioxidant functional epicatechin was delivered on skin by an alginate patch.
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ISSN:2452-199X
2452-199X
DOI:10.1016/j.bioactmat.2020.03.012