Mesenchymal Cells Retain the Specificity of Embryonal Origin During Osteogenic Differentiation

Author:

Lobov Arseniy12ORCID,Kuchur Polina1,Khizhina Aigul1,Kotova Anastasia13,Ivashkin Andrei1,Kostina Daria1,Klausen Polina1,Khokhlova Evgeniia1,Repkin Egor4,Postnikova Kseniia1,Perepletchikova Daria1,Denisov Evgeny5,Gerashchenko Tatiana5,Tikhilov Rashid6,Bozhkova Svetlana6,Sereda Andrey6,Karelkin Vitaliy6,Enukashvily Natella1ORCID,Malashicheva Anna1

Affiliation:

1. Institute of Cytology Russian Academy of Science , St. Petersburg , Russia

2. Department of Chemical and Structural Biology, Weizmann Institute of Science , Rehovot , Israel

3. Cell Technologies Laboratory, North-Western State Medical University , St. Petersburg , Russia

4. Centre for Molecular and Cell Technologies, St. Petersburg State University , St Petersburg , Russia

5. Laboratory of Cancer Progression Biology, Cancer Research Institute, Tomsk National Research Medical Center, Russian Academy of Sciences , Tomsk , Russia

6. Vreden National Medical Research Center of Traumatology and Orthopedics , St. Petersburg , Russia

Abstract

Abstract Mesenchymal stem cells (MSCs) are widely used in therapy, but the differences between MSCs of various origins and their ability to undergo osteogenic differentiation and produce extracellular matrix are not fully understood. To address this, we conducted a comparative analysis of mesenchymal cell primary cultures from 6 human sources, including osteoblast-like cells from the adult femur, adipose-derived stem cells, Wharton’s jelly-derived mesenchymal cells, gingival fibroblasts, dental pulp stem cells, and periodontal ligament stem cells. We analyzed these cells’ secretome, proteome, and transcriptome under standard and osteogenic cultivation conditions. Despite the overall similarity in osteogenic differentiation, the cells maintain their embryonic specificity after isolation and differentiation in vitro. Furthermore, we propose classifying mesenchymal cells into 3 groups: dental stem cells of neural crest origin, mesenchymal stem cells, and fetal stem cells. Specifically, fetal stem cells have the most promising secretome for various applications, while mesenchymal stem cells have a specialized secretome optimal for extracellular matrix production. Nevertheless, mesenchymal cells from all sources secreted core bone extracellular matrix-associated proteins. In conclusion, our study illuminates the distinctive characteristics of mesenchymal stem cells from various sources, providing insights into their potential applications in regenerative medicine and enhancing our understanding of the inherent diversity of mesenchymal cells in vivo.

Funder

Russian Foundation for Basic Research

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,Molecular Medicine

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