Literature DB >> 28713871

Immune dysfunctionality of replicative senescent mesenchymal stromal cells is corrected by IFNγ priming.

Raghavan Chinnadurai1, Devi Rajan2, Spencer Ng3, Kenneth McCullough4, Dalia Arafat5, Edmund K Waller3, Larry J Anderson2, Greg Gibson5, Jacques Galipeau1.   

Abstract

Industrial-scale expansion of mesenchymal stromal cells (MSCs) is often used in clinical trials, and the effect of replicative senescence on MSC functionality is of mechanistic interest. Senescent MSCs exhibit cell-cycle arrest, cellular hypertrophy, and express the senescent marker β-galactosidase. Although both fit and senescent MSCs display intact lung-homing properties in vivo, senescent MSCs acquire a significant defect in inhibiting T-cell proliferation and cytokine secretion in vitro. IFNγ does not upregulate HLA-DR on senescent MSCs, whereas its silencing did not reverse fit MSCs' immunosuppressive properties. Secretome analysis of MSC and activated peripheral blood mononuclear cell coculture demonstrate that senescent MSCs are significantly defective in up (vascular endothelial growth factor [VEGF], granulocyte colony-stimulating factor [GCSF], CXCL10, CCL2) or down (IL-1ra, IFNγ, IL-2r, CCL4, tumor necrosis factor-α, IL-5) regulating cytokines/chemokines. Unlike indoleamine 2,3 dioxygenase (IDO), silencing of CXCL9, CXCL10, CXCL11, GCSF, CCL2, and exogenous addition of VEGF, fibroblast growth factor-basic do not modulate MSCs' immunosuppressive properties. Kynurenine levels were downregulated in senescent MSC cocultures compared with fit MSC counterparts, and exogenous addition of kynurenine inhibits T-cell proliferation in the presence of senescent MSCs. IFNγ prelicensing activated several immunomodulatory genes including IDO in fit and senescent MSCs at comparable levels and significantly enhanced senescent MSCs' immunosuppressive effect on T-cell proliferation. Our results define immune functional defects acquired by senescent MSCs, which are reversible by IFNγ prelicensing.

Entities:  

Year:  2017        PMID: 28713871      PMCID: PMC5507374          DOI: 10.1182/bloodadvances.2017006205

Source DB:  PubMed          Journal:  Blood Adv        ISSN: 2473-9529


  59 in total

1.  Human MSC suppression correlates with cytokine induction of indoleamine 2,3-dioxygenase and bystander M2 macrophage differentiation.

Authors:  Moïra François; Raphaëlle Romieu-Mourez; Mengyang Li; Jacques Galipeau
Journal:  Mol Ther       Date:  2011-09-20       Impact factor: 11.454

2.  MSCs: science and trials.

Authors:  Donald G Phinney; Jacques Galipeau; Mauro Krampera; Ivan Martin; Yufang Shi; Luc Sensebe
Journal:  Nat Med       Date:  2013-07       Impact factor: 53.440

3.  Mesenchymal Stromal Cells Induce Peculiar Alternatively Activated Macrophages Capable of Dampening Both Innate and Adaptive Immune Responses.

Authors:  Laura Chiossone; Romana Conte; Grazia Maria Spaggiari; Martina Serra; Cristina Romei; Francesca Bellora; Flavio Becchetti; Antonio Andaloro; Lorenzo Moretta; Cristina Bottino
Journal:  Stem Cells       Date:  2016-04-14       Impact factor: 6.277

4.  Impaired metabolism of senescent muscle satellite cells is associated with oxidative modifications of glycolytic enzymes.

Authors:  Martin Baraibar; Janek Hyzewicz; Adelina Rogowska-Wrzesinska; Anne-Laure Bulteau; Carina Prip-Buus; Gillian Butler-Browne; Bertrand Friguet
Journal:  Free Radic Biol Med       Date:  2014-12-10       Impact factor: 7.376

5.  A biomarker that identifies senescent human cells in culture and in aging skin in vivo.

Authors:  G P Dimri; X Lee; G Basile; M Acosta; G Scott; C Roskelley; E E Medrano; M Linskens; I Rubelj; O Pereira-Smith
Journal:  Proc Natl Acad Sci U S A       Date:  1995-09-26       Impact factor: 11.205

Review 6.  Molecular and biophysical mechanisms regulating hypertrophic differentiation in chondrocytes and mesenchymal stem cells.

Authors:  Deborah Studer; Christopher Millan; Ece Öztürk; Katharina Maniura-Weber; Marcy Zenobi-Wong
Journal:  Eur Cell Mater       Date:  2012-07-24       Impact factor: 3.942

7.  Telomere shortening and oxidative stress in aged macrophages results in impaired STAT5a phosphorylation.

Authors:  Carlos Sebastián; Carmen Herrero; Maria Serra; Jorge Lloberas; María A Blasco; Antonio Celada
Journal:  J Immunol       Date:  2009-07-15       Impact factor: 5.422

8.  How to track cellular aging of mesenchymal stromal cells?

Authors:  Wolfgang Wagner; Simone Bork; Günther Lepperdinger; Sylvia Joussen; Nan Ma; Dirk Strunk; Carmen Koch
Journal:  Aging (Albany NY)       Date:  2010-04       Impact factor: 5.682

9.  Strategies to minimize hypertrophy in cartilage engineering and regeneration.

Authors:  Song Chen; Peiliang Fu; Ruijun Cong; HaiShan Wu; Ming Pei
Journal:  Genes Dis       Date:  2015-03-01

Review 10.  The Regulatory Role of Signaling Crosstalk in Hypertrophy of MSCs and Human Articular Chondrocytes.

Authors:  Leilei Zhong; Xiaobin Huang; Marcel Karperien; Janine N Post
Journal:  Int J Mol Sci       Date:  2015-08-14       Impact factor: 5.923

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  20 in total

Review 1.  Insights into inflammatory priming of mesenchymal stromal cells: functional biological impacts.

Authors:  Mehdi Najar; Mohammad Krayem; Makram Merimi; Arsène Burny; Nathalie Meuleman; Dominique Bron; Gordana Raicevic; Laurence Lagneaux
Journal:  Inflamm Res       Date:  2018-01-23       Impact factor: 4.575

2.  The influence of hypoxia and IFN-γ on the proteome and metabolome of therapeutic mesenchymal stem cells.

Authors:  Holly M Wobma; Manuel A Tamargo; Shahar Goeta; Lewis M Brown; Raimon Duran-Struuck; Gordana Vunjak-Novakovic
Journal:  Biomaterials       Date:  2018-03-15       Impact factor: 12.479

3.  Marrow-Derived Autologous Stromal Cells for the Restoration of Salivary Hypofunction (MARSH): Study protocol for a phase 1 dose-escalation trial of patients with xerostomia after radiation therapy for head and neck cancer: MARSH: Marrow-Derived Autologous Stromal Cells for the Restoration of Salivary Hypofunction.

Authors:  Grace C Blitzer; Nicole M Rogus-Pulia; Ryan J Mattison; Tomy Varghese; Olga Ganz; Richard Chappell; Jacques Galipeau; Kimberly A McDowell; Ross O Meyers; Tiffany A Glazer; Randall J Kimple
Journal:  Cytotherapy       Date:  2022-02-16       Impact factor: 5.414

4.  Enhancing Mesenchymal Stromal Cell Potency: Inflammatory Licensing via Mechanotransduction.

Authors:  Max A Skibber; Scott D Olson; Karthik S Prabhakara; Brijesh S Gill; Charles S Cox
Journal:  Front Immunol       Date:  2022-07-06       Impact factor: 8.786

5.  Dual IFN-γ/hypoxia priming enhances immunosuppression of mesenchymal stromal cells through regulatory proteins and metabolic mechanisms.

Authors:  Holly M Wobma; Mariko Kanai; Stephen P Ma; Ying Shih; Hao Wei Li; Raimon Duran-Struuck; Robert Winchester; Shahar Goeta; Lewis M Brown; Gordana Vunjak-Novakovic
Journal:  J Immunol Regen Med       Date:  2018-04-25

6.  Ruxolitinib Inhibits IFNγ Licensing of Human Bone Marrow Derived Mesenchymal Stromal Cells.

Authors:  Molly Mercedes Ryan; Mihir Patel; Keenan Hogan; Ariel Joy Lipat; Rafaela Scandolara; Rahul Das; Charles Bruker; Jacques Galipeau; Raghavan Chinnadurai
Journal:  Transplant Cell Ther       Date:  2021-02-04

7.  Mesenchymal stromal cell therapeutic potency is dependent upon viability, route of delivery, and immune match.

Authors:  Jayeeta Giri; Jacques Galipeau
Journal:  Blood Adv       Date:  2020-05-12

Review 8.  Mesenchymal Stromal Cell Therapeutic Delivery: Translational Challenges to Clinical Application.

Authors:  Henry Caplan; Scott D Olson; Akshita Kumar; Mitchell George; Karthik S Prabhakara; Pamela Wenzel; Supinder Bedi; Naama E Toledano-Furman; Fabio Triolo; Julian Kamhieh-Milz; Guido Moll; Charles S Cox
Journal:  Front Immunol       Date:  2019-07-31       Impact factor: 7.561

Review 9.  Mesenchymal Stromal Cells: What Is the Mechanism in Acute Graft-Versus-Host Disease?

Authors:  Neil Dunavin; Ajoy Dias; Meizhang Li; Joseph McGuirk
Journal:  Biomedicines       Date:  2017-07-01

10.  Interferon-Gamma Impairs Maintenance and Alters Hematopoietic Support of Bone Marrow Mesenchymal Stromal Cells.

Authors:  Marieke Goedhart; Anne S Cornelissen; Carlijn Kuijk; Sulima Geerman; Marion Kleijer; Jaap D van Buul; Stephan Huveneers; Marc H G P Raaijmakers; Howard A Young; Monika C Wolkers; Carlijn Voermans; Martijn A Nolte
Journal:  Stem Cells Dev       Date:  2018-04-16       Impact factor: 3.272

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