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Biocompatibility of a Marine Collagen-Based Scaffold In Vitro and In Vivo

Overview
Journal Mar Drugs
Publisher MDPI
Specialties Biology
Pharmacology
Date 2020 Aug 16
PMID 32796603
Citations 15
Authors
Affiliations
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Abstract

Scaffold material is essential in providing mechanical support to tissue, allowing stem cells to improve their function in the healing and repair of trauma sites and tissue regeneration. The scaffold aids cell organization in the damaged tissue. It serves and allows bio mimicking the mechanical and biological properties of the target tissue and facilitates cell proliferation and differentiation at the regeneration site. In this study, the developed and assayed bio-composite made of unique collagen fibers and alginate hydrogel supports the function of cells around the implanted material. We used an in vivo rat model to study the scaffold effects when transplanted subcutaneously and as an augment for tendon repair. Animals' well-being was measured by their weight and daily activity post scaffold transplantation during their recovery. At the end of the experiment, the bio-composite was histologically examined, and the surrounding tissues around the implant were evaluated for inflammation reaction and scarring tissue. In the histology, the formation of granulation tissue and fibroblasts that were part of the inclusion process of the implanted material were noted. At the transplanted sites, inflammatory cells, such as plasma cells, macrophages, and giant cells, were also observed as expected at this time point post transplantation. This study demonstrated not only the collagen-alginate device biocompatibility, with no cytotoxic effects on the analyzed rats, but also that the 3D structure enables cell migration and new blood vessel formation needed for tissue repair. Overall, the results of the current study proved for the first time that the implantable scaffold for long-term confirms the well-being of these rats and is correspondence to biocompatibility ISO standards and can be further developed for medical devices application.

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References
1.
Ehrlich H, Deutzmann R, Brunner E, Cappellini E, Koon H, Solazzo C . Mineralization of the metre-long biosilica structures of glass sponges is templated on hydroxylated collagen. Nat Chem. 2010; 2(12):1084-8. DOI: 10.1038/nchem.899. View

2.
Depres-Tremblay G, Chevrier A, Snow M, Hurtig M, Rodeo S, Buschmann M . Rotator cuff repair: a review of surgical techniques, animal models, and new technologies under development. J Shoulder Elbow Surg. 2016; 25(12):2078-2085. DOI: 10.1016/j.jse.2016.06.009. View

3.
Luttikhuizen D, Harmsen M, van Luyn M . Cellular and molecular dynamics in the foreign body reaction. Tissue Eng. 2006; 12(7):1955-70. DOI: 10.1089/ten.2006.12.1955. View

4.
Rahman M . Collagen of Extracellular Matrix from Marine Invertebrates and Its Medical Applications. Mar Drugs. 2019; 17(2). PMC: 6410095. DOI: 10.3390/md17020118. View

5.
Benayahu D, Sharabi M, Pomeraniec L, Awad L, Haj-Ali R, Benayahu Y . Unique Collagen Fibers for Biomedical Applications. Mar Drugs. 2018; 16(4). PMC: 5923389. DOI: 10.3390/md16040102. View