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Progress in Composite Hydrogels and Scaffolds Enriched with Icariin for Osteochondral Defect Healing. | LitMetric

AI Article Synopsis

  • Osteochondral structure reconstruction through tissue engineering poses challenges in regenerative medicine, necessitating scaffolds for effective cartilage and bone remodeling.
  • Functional hydrogels and scaffolds can deliver signaling molecules like growth factors, making them a promising therapeutic option.
  • Icariin, a bioactive compound with chondrogenic and osteoinductive properties, has potential as a low-cost alternative to traditional growth factors for osteochondral regeneration, with ongoing research highlighting its beneficial effects and applications in biocompatible materials.

Article Abstract

Osteochondral structure reconstruction by tissue engineering, a challenge in regenerative medicine, requires a scaffold that ensures both articular cartilage and subchondral bone remodeling. Functional hydrogels and scaffolds present a strategy for the controlled delivery of signaling molecules (growth factors and therapeutic drugs) and are considered a promising therapeutic approach. Icariin is a pharmacologically-active small molecule of prenylated flavonol glycoside and the main bioactive flavonoid isolated from spp. The in vitro and in vivo testing of icariin showed chondrogenic and ostseoinductive effects, comparable to bone morphogenetic proteins, and suggested its use as an alternative to growth factors, representing a low-cost, promising approach for osteochondral regeneration. This paper reviews the complex structure of the osteochondral tissue, underlining the main aspects of osteochondral defects and those specifically occurring in osteoarthritis. The significance of icariin's structure and the extraction methods were emphasized. Studies revealing the valuable chondrogenic and osteogenic effects of icariin for osteochondral restoration were also reviewed. The review highlighted th recent state-of-the-art related to hydrogels and scaffolds enriched with icariin developed as biocompatible materials for osteochondral regeneration strategies.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9602414PMC
http://dx.doi.org/10.3390/gels8100648DOI Listing

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