Enhancement of the immunoregulatory potency of mesenchymal stromal cells by treatment with immunosuppressive drugs
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Published version
Author(s)
Type
Journal Article
Abstract
Background aims
Multipotent mesenchymal stromal cells (MSCs) are distinguished by their ability to differentiate into a number of stromal derivatives of interest for regenerative medicine, but they also have immunoregulatory properties that are being tested in a number of clinical settings.
Methods
We show that brief incubations with rapamycin, everolimus, FK506 or cyclosporine A increase the immunosuppressive potency of MSCs and other cell types.
Results
The treated MSCs are up to 5-fold more potent at inhibiting the induced proliferation of T lymphocytes in vitro. We show that this effect probably is due to adsorption of the drug by the MSCs during pre-treatment, with subsequent diffusion into co-cultures at concentrations sufficient to inhibit T-cell proliferation. MSCs contain measurable amounts of rapamycin after a 15-min exposure, and the potentiating effect is blocked by a neutralizing antibody to the drug. With the use of a pre-clinical model of acute graft-versus-host disease, we demonstrate that a low dose of rapamycin-treated but not untreated umbilical cord–derived MSCs significantly inhibit the onset of disease.
Conclusions
The use of treated MSCs may achieve clinical end points not reached with untreated MSCs and allow for infusion of fewer cells to reduce costs and minimize potential side effects.
Multipotent mesenchymal stromal cells (MSCs) are distinguished by their ability to differentiate into a number of stromal derivatives of interest for regenerative medicine, but they also have immunoregulatory properties that are being tested in a number of clinical settings.
Methods
We show that brief incubations with rapamycin, everolimus, FK506 or cyclosporine A increase the immunosuppressive potency of MSCs and other cell types.
Results
The treated MSCs are up to 5-fold more potent at inhibiting the induced proliferation of T lymphocytes in vitro. We show that this effect probably is due to adsorption of the drug by the MSCs during pre-treatment, with subsequent diffusion into co-cultures at concentrations sufficient to inhibit T-cell proliferation. MSCs contain measurable amounts of rapamycin after a 15-min exposure, and the potentiating effect is blocked by a neutralizing antibody to the drug. With the use of a pre-clinical model of acute graft-versus-host disease, we demonstrate that a low dose of rapamycin-treated but not untreated umbilical cord–derived MSCs significantly inhibit the onset of disease.
Conclusions
The use of treated MSCs may achieve clinical end points not reached with untreated MSCs and allow for infusion of fewer cells to reduce costs and minimize potential side effects.
Date Issued
2015-08-12
Date Acceptance
2015-05-26
Citation
Cytotherapy, 2015, 17 (9), pp.1188-1199
ISSN
1477-2566
Publisher
Elsevier
Start Page
1188
End Page
1199
Journal / Book Title
Cytotherapy
Volume
17
Issue
9
Copyright Statement
This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
Subjects
Science & Technology
Life Sciences & Biomedicine
Cell & Tissue Engineering
Biotechnology & Applied Microbiology
Cell Biology
Hematology
Medicine, Research & Experimental
Research & Experimental Medicine
immunoregulation
immunosuppression
mesenchymal stromal cells
rapamycin
sirolimus
VERSUS-HOST-DISEASE
REGULATORY T-CELLS
STEM-CELLS
RAPAMYCIN
TRANSPLANTATION
PROLIFERATION
THERAPY
MOUSE
INFLAMMATION
SURVIVAL
Animals
Antibodies, Neutralizing
Cell Proliferation
Coculture Techniques
Cyclosporine
Disease Models, Animal
Everolimus
Female
Graft vs Host Disease
Humans
Immune Tolerance
Immunosuppression
Immunosuppressive Agents
Lymphocyte Activation
Male
Mesenchymal Stem Cell Transplantation
Mesenchymal Stromal Cells
Mice
Mice, Inbred BALB C
Sirolimus
T-Lymphocytes
Tacrolimus
Umbilical Cord
Immunology
1103 Clinical Sciences
Publication Status
Published