hTERT-Immortalized Mesenchymal Stem Cell-Derived Extracellular Vesicles: Large-Scale Manufacturing, Cargo Profiling, and Functional Effects in Retinal Epithelial Cells

Author:

Hindle Jessica1,Williams Anastasia2ORCID,Kim Yuriy2ORCID,Kim Dongsung1,Patil Kajal2,Khatkar Pooja2ORCID,Osgood Quinn1,Nelson Collin3,Routenberg David A.3ORCID,Howard Marissa4,Liotta Lance A.4,Kashanchi Fatah2ORCID,Branscome Heather12

Affiliation:

1. ATCC, Manassas, VA 20110, USA

2. Laboratory of Molecular Virology, School of Systems Biology, George Mason University, Manassas, VA 20110, USA

3. Meso Scale Diagnostics, L.L.C., Rockville, MD 20850, USA

4. Center for Applied Proteomics and Molecular Medicine, George Mason University, Manassas, VA 20110, USA

Abstract

As the economic burden associated with vision loss and ocular damage continues to rise, there is a need to explore novel treatment strategies. Extracellular vesicles (EVs) are enriched with various biological cargo, and there is abundant literature supporting the reparative and immunomodulatory properties of stem cell EVs across a broad range of pathologies. However, one area that requires further attention is the reparative effects of stem cell EVs in the context of ocular damage. Additionally, most of the literature focuses on EVs isolated from primary stem cells; the use of EVs isolated from human telomerase reverse transcriptase (hTERT)-immortalized stem cells has not been thoroughly examined. Using our large-scale EV-manufacturing platform, we reproducibly manufactured EVs from hTERT-immortalized mesenchymal stem cells (MSCs) and employed various methods to characterize and profile their associated cargo. We also utilized well-established cell-based assays to compare the effects of these EVs on both healthy and damaged retinal pigment epithelial cells. To the best of our knowledge, this is the first study to establish proof of concept for reproducible, large-scale manufacturing of hTERT-immortalized MSC EVs and to investigate their potential reparative properties against damaged retinal cells. The results from our studies confirm that hTERT-immortalized MSC EVs exert reparative effects in vitro that are similar to those observed in primary MSC EVs. Therefore, hTERT-immortalized MSCs may represent a more consistent and reproducible platform than primary MSCs for generating EVs with therapeutic potential.

Funder

National Institutes of Health

Publisher

MDPI AG

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