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Augmented Expansion of Treg Cells From Healthy and Autoimmune Subjects via Adult Progenitor Cell Co-Culture.
- Source :
-
Frontiers in immunology [Front Immunol] 2021 Sep 01; Vol. 12, pp. 716606. Date of Electronic Publication: 2021 Sep 01 (Print Publication: 2021). - Publication Year :
- 2021
-
Abstract
- Recent clinical experience has demonstrated that adoptive regulatory T (Treg) cell therapy is a safe and feasible strategy to suppress immunopathology via induction of host tolerance to allo- and autoantigens. However, clinical trials continue to be compromised due to an inability to manufacture a sufficient Treg cell dose. Multipotent adult progenitor cells (MAPC <superscript>Ⓡ</superscript> ) promote Treg cell differentiation in vitro , suggesting they may be repurposed to enhance ex vivo expansion of Tregs for adoptive cellular therapy. Here, we use a Good Manufacturing Practice (GMP) compatible Treg expansion platform to demonstrate that MAPC cell-co-cultured Tregs (MulTreg) exhibit a log-fold increase in yield across two independent cohorts, reducing time to target dose by an average of 30%. Enhanced expansion is coupled to a distinct Treg cell-intrinsic transcriptional program characterized by elevated expression of replication-related genes ( CDK1, PLK1, CDC20 ), downregulation of progenitor and lymph node-homing molecules ( LEF1 CCR7, SELL ) and induction of intestinal and inflammatory tissue migratory markers ( ITGA4, CXCR1 ) consistent with expression of a gut homing (CCR7lo β <subscript>7</subscript> hi) phenotype. Importantly, we find that MulTreg are more readily expanded from patients with autoimmune disease compared to matched Treg lines, suggesting clinical utility in gut and/or T helper type1 (Th1)-driven pathology associated with autoimmunity or transplantation. Relative to expanded Tregs, MulTreg retain equivalent and robust purity, FoxP3 Treg-Specific Demethylated Region (TSDR) demethylation, nominal effector cytokine production and potent suppression of Th1-driven antigen specific and polyclonal responses in vitro and xeno Graft vs Host Disease (xGvHD) in vivo . These data support the use of MAPC cell co-culture in adoptive Treg therapy platforms as a means to rescue expansion failure and reduce the time required to manufacture a stable, potently suppressive product.<br />Competing Interests: AT and AV-T are employees of Athersys Inc. and JB and VR are employees of ReGenesys BV a subsidiary of Athersys Inc. AT, AV-T, JB, and VR have compensated stock options from Athersys, Inc. The remaining authors declare that the research was conducted in the absence of any commercial or financial relationships that could be construed as a potential conflict of interest.<br /> (Copyright © 2021 Reading, Roobrouck, Hull, Becker, Beyens, Valentin-Torres, Boardman, Lamperti, Stubblefield, Lombardi, Deans, Ting and Tree.)
- Subjects :
- Adult Stem Cells cytology
Adult Stem Cells immunology
Adult Stem Cells metabolism
Animals
Autoimmune Diseases etiology
Autoimmune Diseases metabolism
Autoimmune Diseases pathology
Biomarkers
Cells, Cultured
Coculture Techniques
Disease Models, Animal
Disease Susceptibility
Female
Gene Expression Regulation
Graft vs Host Disease diagnosis
Graft vs Host Disease etiology
Humans
Immunophenotyping
Male
Mice
T-Lymphocyte Subsets immunology
T-Lymphocyte Subsets metabolism
Autoimmunity
Lymphocyte Count
T-Lymphocytes, Regulatory immunology
T-Lymphocytes, Regulatory metabolism
Subjects
Details
- Language :
- English
- ISSN :
- 1664-3224
- Volume :
- 12
- Database :
- MEDLINE
- Journal :
- Frontiers in immunology
- Publication Type :
- Academic Journal
- Accession number :
- 34539651
- Full Text :
- https://doi.org/10.3389/fimmu.2021.716606