4.6 Article

Amniotic membrane-mesenchymal stromal cells secreted factors and extracellular vesicle-miRNAs: Anti-inflammatory and regenerative features for musculoskeletal tissues

Journal

STEM CELLS TRANSLATIONAL MEDICINE
Volume 10, Issue 7, Pages 1044-1062

Publisher

OXFORD UNIV PRESS
DOI: 10.1002/sctm.20-0390

Keywords

amnion; extracellular vesicles; inflammation; mesenchymal stem; stromal cells; osteoarthritis; tendinopathy

Funding

  1. PRIN 2017 program of Italian Ministry of Research and University (MIUR) [2017RSAFK7]
  2. Intramural funds from the Universita Cattolica del Sacro Cuore [Linea D1-2019, Linea D1-2018]
  3. Italian Ministry of Health, MIUR (5x1000 year 2017)
  4. Fondazione Poliambulanza of Brescia
  5. Italian Ministry of Health, Ricerca Corrente

Ask authors/readers for more resources

Research on human amniotic membrane-derived mesenchymal stromal cells (hAMSCs) and their secreted factors show promising therapeutic potential for musculoskeletal conditions like osteoarthritis and tendinopathy. The identified molecules, including cytokines and miRNAs, play roles in inflammation regulation, cell protection, and polarization, laying the groundwork for predicting disease-targeted clinical efficacy and developing clinical-grade therapies.
Human amniotic membrane-derived mesenchymal stromal cells (hAMSCs) are easily obtained in large quantities and free from ethical concerns. Promising therapeutic results for both hAMSCs and their secreted factors (secretome) were described by several in vitro and preclinical studies, often for treatment of orthopedic disorders such as osteoarthritis (OA) and tendinopathy. For clinical translation of the hAMSC secretome as cell-free therapy, a detailed characterization of hAMSC-secreted factors is mandatory. Herein, we tested the presence of 200 secreted factors and 754 miRNAs in extracellular vesicles (EVs). Thirty-seven cytokines/chemokines were identified at varying abundance, some of which involved in both chemotaxis and homeostasis of inflammatory cells and in positive remodeling of extracellular matrix, often damaged in tendinopathy and OA. We also found 336 EV-miRNAs, 51 of which accounted for more than 95% of the genetic message. A focused analysis based on miRNAs related to OA and tendinopathy showed that most abundant EV-miRNAs are teno- and chondro-protective, able to induce M2 macrophage polarization, inhibit inflammatory T cells, and promote Treg. Functional analysis on IL-1 beta treated tenocytes and chondrocytes resulted in downregulation of inflammation-associated genes. Overall, presence of key regulatory molecules and miRNAs explain the promising therapeutic results of hAMSCs and their secretome for treatment of musculoskeletal conditions and are a groundwork for similar studies in other pathologies. Furthermore, identified molecules will pave the way for future studies aimed at more sharply predicting disease-targeted clinical efficacy, as well as setting up potency and release assays to fingerprint clinical-grade batches of whole secretome or purified components.

Authors

I am an author on this paper
Click your name to claim this paper and add it to your profile.

Reviews

Primary Rating

4.6
Not enough ratings

Secondary Ratings

Novelty
-
Significance
-
Scientific rigor
-
Rate this paper

Recommended

No Data Available
No Data Available