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  5. Bioactivity of Biosilica Obtained From North Atlantic Deep-Sea Sponges

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Article
en
2021

Bioactivity of Biosilica Obtained From North Atlantic Deep-Sea Sponges

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en
2021
Vol 8
Vol. 8
DOI: 10.3389/fmars.2021.637810

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Rui L Reis
Rui L Reis

Institution not specified

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Olesia Dudik
Sara Amorim
Joana R. Xavier
+4 more

Abstract

Demosponges are a well-known source of a plethora of bioactive compounds. In particular, they are able to form a skeleton by direct deposition of silica in a process catalyzed by silicatein. Herein, we isolated biosilicas from five different Atlantic deep-sea sponges Geodia atlantica (GA), Geodia barretti (GB), Stelletta normani (SN), Axinella infundibuliformis (AI), and Phakellia ventilabrum (PV) to explore the bioactivity and osteogenic capacity of its silica-based materials. We chemically characterized the isolated biosilicas and evaluated them for their bioactivity to deposit Ca and P on their surface (by immersion in simulated body fluid, SBF). GB-, SN-, AI-, and PV-based biosilicas did not generate a stable calcium phosphate (CaP) layer over time in the presence of SBF, however, the GA-derived one was able to form a CaP surface layer (at a Ca/P ratio of ∼1.7, similar to the one observed for hydroxyapatite), that was stable during the 28 days of testing. In addition, no cytotoxicity toward L929 and SaOs2 cells was observed for the GA-based biosilica up to a concentration of 10 mg/mL. Overall, the GA-based biosilica presents the characteristics to be used in the development of biomaterials for bone tissue engineering (BTE).

How to cite this publication

Olesia Dudik, Sara Amorim, Joana R. Xavier, Hans Tore Rapp, Tiago H. Silva, Ricardo A. Pires, Rui L Reis (2021). Bioactivity of Biosilica Obtained From North Atlantic Deep-Sea Sponges. , 8, DOI: https://doi.org/10.3389/fmars.2021.637810.

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Publication Details

Type

Article

Year

2021

Authors

7

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.3389/fmars.2021.637810

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