Harnessing the Secretome of Mesenchymal Stromal Cells for Traumatic Spinal Cord Injury: Multicell Comparison and Assessment of In Vivo Efficacy.


Journal

Stem cells and development
ISSN: 1557-8534
Titre abrégé: Stem Cells Dev
Pays: United States
ID NLM: 101197107

Informations de publication

Date de publication:
15 11 2020
Historique:
pubmed: 24 9 2020
medline: 4 9 2021
entrez: 23 9 2020
Statut: ppublish

Résumé

Cell therapy offers significant promise for traumatic spinal cord injury (SCI), which despite many medical advances, has limited treatment strategies. Able to address the multifactorial and dynamic pathophysiology of SCI, cells present various advantages over standard pharmacological approaches. However, the use of live cells is also severely hampered by logistical and practical considerations. These include specialized equipment and expertise, standardization of cell stocks, sustained cell viability post-thawing, and cryopreservation-induced delayed-onset cell death. For this reason, we suggest a novel and clinically translatable alternative to live-cell systemic infusion, which retains the efficacy of the latter while overcoming many of its limitations. This strategy involves the administration of concentrated cell secretome and exploits the trophic mechanism by which stromal cells function. In this study, we compare the efficacy of intravenously delivered concentrated conditioned media (CM) from human umbilical cord matrix cells (HUCMCs), bone marrow mesenchymal stromal cells, as well as newborn and adult fibroblasts in a rat model of moderately severe cervical clip compression/contusion injury (C7--T1, 35 g). This is further paired with a thorough profile of the CM cytokines, chemokines, and angiogenic factors. The HUCMC-derived CM was most effective at limiting acute (48 h post-SCI) vascular pathology, specifically lesion volume, and functional vascularity. Principle component analysis (PCA), hierarchical clustering, and interaction analysis of proteins highly expressed in the HUCMC secretome suggest involvement of the MAPK/ERK, JAK/STAT, and immune cell migratory pathways. This "secretotherapeutic" strategy represents a novel and minimally invasive method to target multiple organ systems and several pathologies shortly after traumatic SCI.

Identifiants

pubmed: 32962528
doi: 10.1089/scd.2020.0079
pmc: PMC7703247
doi:

Substances chimiques

Antigens 0
Culture Media, Conditioned 0
Proteome 0
STAT Transcription Factors 0
Janus Kinases EC 2.7.10.2

Types de publication

Comparative Study Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

1429-1443

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Auteurs

Reaz Vawda (R)

Department of Genetics and Development, Krembil Research Institute, University Health Network, Toronto, Canada.

Anna Badner (A)

Department of Genetics and Development, Krembil Research Institute, University Health Network, Toronto, Canada.
Institute of Medical Science, School of Medicine, University of Toronto, Toronto, Canada.

James Hong (J)

Department of Genetics and Development, Krembil Research Institute, University Health Network, Toronto, Canada.
Institute of Medical Science, School of Medicine, University of Toronto, Toronto, Canada.

Mirriam Mikhail (M)

Department of Genetics and Development, Krembil Research Institute, University Health Network, Toronto, Canada.

Rachel Dragas (R)

Department of Genetics and Development, Krembil Research Institute, University Health Network, Toronto, Canada.
Institute of Medical Science, School of Medicine, University of Toronto, Toronto, Canada.

Kristiana Xhima (K)

Department of Genetics and Development, Krembil Research Institute, University Health Network, Toronto, Canada.

Alejandro Jose (A)

Department of Genetics and Development, Krembil Research Institute, University Health Network, Toronto, Canada.

Michael G Fehlings (MG)

Department of Genetics and Development, Krembil Research Institute, University Health Network, Toronto, Canada.
Institute of Medical Science, School of Medicine, University of Toronto, Toronto, Canada.
Spinal Program, Toronto Western Hospital, University Health Network, Toronto, Canada.

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Classifications MeSH