Physical, Mechanical, and Biological Properties of Fibrin Scaffolds for Cartilage Repair

Int J Mol Sci. 2022 Aug 30;23(17):9879. doi: 10.3390/ijms23179879.

Abstract

Articular cartilage is a highly organized tissue that provides remarkable load-bearing and low friction properties, allowing for smooth movement of diarthrodial joints; however, due to the avascular, aneural, and non-lymphatic characteristics of cartilage, joint cartilage has self-regeneration and repair limitations. Cartilage tissue engineering is a promising alternative for chondral defect repair. It proposes models that mimic natural tissue structure through the use of cells, scaffolds, and signaling factors to repair, replace, maintain, or improve the specific function of the tissue. In chondral tissue engineering, fibrin is a biocompatible biomaterial suitable for cell growth and differentiation with adequate properties to regenerate damaged cartilage. Additionally, its mechanical, biological, and physical properties can be enhanced by combining it with other materials or biological components. This review addresses the biological, physical, and mechanical properties of fibrin as a biomaterial for cartilage tissue engineering and as an element to enhance the regeneration or repair of chondral lesions.

Keywords: articular cartilage; biomaterials; cartilage engineering; fibrin; scaffold.

Publication types

  • Review

MeSH terms

  • Biocompatible Materials / chemistry
  • Cartilage, Articular* / pathology
  • Fibrin*
  • Tissue Engineering
  • Tissue Scaffolds / chemistry

Substances

  • Biocompatible Materials
  • Fibrin

Grants and funding

This research received no external funding.