首页|Silk fibroin/cholinium gallate-based architectures as therapeutic tools

Silk fibroin/cholinium gallate-based architectures as therapeutic tools

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? 2022 Acta Materialia Inc.The combination of natural resources with biologically active biocompatible ionic liquids (Bio-IL) is presented as a combinatorial approach for developing tools to manage inflammatory diseases. Innovative biomedical solutions were constructed combining silk fibroin (SF) and Ch[Gallate], a Bio-IL with antioxidant and anti-inflammatory features, as freeze-dried 3D-based sponges. An evaluation of the effect of the Ch[Gallate] concentration (≤3% w/v) on the SF/Ch[Gallate] sponges was studied. Structural changes observed on the sponges revealed that the Ch[Gallate] presence positively affected the β-sheet formation while not influencing the silk native structure, which was suggested by the FTIR and solid-state NMR results, respectively. Also, it was possible to modulate their mechanical properties, antioxidant activity and stability/degradation in an aqueous environment, by changing the Ch[Gallate] concentration. The architectures showed high water uptake ability and a weight loss that follows the controlled Ch[Gallate] release rate studied for 7 days. Furthermore, the sponges supported human adipose stem cells growth and proliferation, up to 7 days. TNF-α, IL-6 (pro-inflammatory) and IL-10 (anti-inflammatory) release quantification from a human monocyte cell line revealed a decrease in the pro-inflammatory cytokines concentrations in samples containing Ch[Gallate]. These outcomes encourage the use of the developed architectures as tissue engineering solutions, potentially targeting inflammation processes. Statement of Significance: Combining natural resources with active biocompatible ionic liquids (Bio-IL) is herein presented as a combinatorial approach for the development of tools to manage inflammatory diseases. We propose using silk fibroin (SF), a natural protein, with cholinium gallate, a Bio-IL, with antioxidant and anti-inflammatory properties, to construct 3D-porous sponges through a sustainable methodology. The morphological features, swelling, and stability of the architectures were controlled by Bio-IL content in the matrices. The sponges were able to support human adipose stem cells growth and proliferation, and their therapeutic effect was proved by the blockage of TNF-α from activated and differentiated THP-1 monocytes. We believe that these bio-friendly and bioactive SF/Bio-IL-based sponges are effective for targeting pathologies with associated inflammatory processes.

Anti-inflammatory propertiesAntioxidant propertiesBiocompatible ionic liquidCholinium gallateSilk fibroin

Gomes J.M.、Silva S.S.、Fernandes E.M.、Lobo F.C.M.、Martin-Pastor M.、Taboada P.、Reis R.L.

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3B's Research Group I3Bs–Research Institute on Biomaterials Biodegradables and Biomimetics

Magnetic Resonance Unit Network of Research Infrastructures Universidade de Santiago de Compostela

Colloids and Polymers Physics Group Particle Physics Department and Institute of Materials

2022

Acta biomaterialia

Acta biomaterialia

EISCI
ISSN:1742-7061
年,卷(期):2022.147
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