The characterization and cytotoxic evaluation of chondrosia reniformis collagen isolated from different body parts (ectosome and choanosome) envisaging the development of biomaterials

Miguel S. Rocha, Catarina F. Marques, Ana C. Carvalho, Eva Martins, Alexander Ereskovsky, Rui L. Reis, Tiago H. Silva*

*Corresponding author for this work

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Abstract

Chondrosia reniformis is a collagen-rich marine sponge that is considered a sustainable and viable option for producing an alternative to mammalian-origin collagens. However, there is a lack of knowledge regarding the properties of collagen isolated from different sponge parts, namely the outer region, or cortex, (ectosome) and the inner region (choanosome), and how it affects the development of biomaterials. In this study, a brief histological analysis focusing on C. reniformis collagen spatial distribution and a comprehensive comparative analysis between collagen isolated from ectosome and choanosome are presented. The isolated collagen characterization was based on isolation yield, Fourier-transformed infrared spectroscopy (FTIR), circular dichroism (CD), SDS-PAGE, dot blot, and amino acid composition, as well as their cytocompatibility envisaging the development of future biomedical applications. An isolation yield of approximately 20% was similar for both sponge parts, as well as the FTIR, CD, and SDS-PAGE profiles, which demonstrated that both isolated collagens presented a high purity degree and preserved their triple helix and fibrillar conformation. Ectosome collagen had a higher OHpro content and possessed collagen type I and IV, while the choanosome was predominately constituted by collagen type IV. In vitro cytotoxicity assays using the L929 fibroblast cell line displayed a significant cytotoxic effect of choanosome collagen at 2 mg/mL, while ectosome collagen enhanced cell metabolism and proliferation, thus indicating the latter as being more suitable for the development of biomaterials. This research represents a unique comparative study of C. reniformis body parts, serving as a support for further establishing this marine sponge as a promising alternative collagen source for the future development of biomedical applications
Original languageEnglish
Article number55
Number of pages19
JournalMarine Drugs
Volume22
Issue number2
DOIs
Publication statusPublished - 24 Jan 2024

Keywords

  • Collagen
  • C. reniformis
  • Marine sponges
  • Ectosome
  • Choanosome

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