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Stem-Cell-Driven Chondrogenesis: Perspectives on Amnion-Derived Cells

Authors :
Ludovica Sulcanese
Giuseppe Prencipe
Angelo Canciello
Adrián Cerveró-Varona
Monia Perugini
Annunziata Mauro
Valentina Russo
Barbara Barboni
Source :
Cells, Vol 13, Iss 9, p 744 (2024)
Publication Year :
2024
Publisher :
MDPI AG, 2024.

Abstract

Regenerative medicine harnesses stem cells’ capacity to restore damaged tissues and organs. In vitro methods employing specific bioactive molecules, such as growth factors, bio-inductive scaffolds, 3D cultures, co-cultures, and mechanical stimuli, steer stem cells toward the desired differentiation pathways, mimicking their natural development. Chondrogenesis presents a challenge for regenerative medicine. This intricate process involves precise modulation of chondro-related transcription factors and pathways, critical for generating cartilage. Cartilage damage disrupts this process, impeding proper tissue healing due to its unique mechanical and anatomical characteristics. Consequently, the resultant tissue often forms fibrocartilage, which lacks adequate mechanical properties, posing a significant hurdle for effective regeneration. This review comprehensively explores studies showcasing the potential of amniotic mesenchymal stem cells (AMSCs) and amniotic epithelial cells (AECs) in chondrogenic differentiation. These cells exhibit innate characteristics that position them as promising candidates for regenerative medicine. Their capacity to differentiate toward chondrocytes offers a pathway for developing effective regenerative protocols. Understanding and leveraging the innate properties of AMSCs and AECs hold promise in addressing the challenges associated with cartilage repair, potentially offering superior outcomes in tissue regeneration.

Details

Language :
English
ISSN :
20734409
Volume :
13
Issue :
9
Database :
Directory of Open Access Journals
Journal :
Cells
Publication Type :
Academic Journal
Accession number :
edsdoj.732a11ade1c44b2d85e41b441d334487
Document Type :
article
Full Text :
https://doi.org/10.3390/cells13090744