The Potential Use of THP-1, a Monocytic Leukemia Cell Line, to Predict Immune-Suppressive Potency of Human Bone-Marrow Stromal Cells (BMSCs) In Vitro: A Pilot Study

Author:

Ren Jiaqiang1,Szombath Gergely23ORCID,Vitale-Cross Lynn4,Stroncek David F.1,Robey Pamela G.5ORCID,Hajdara Anna67,Szalayova Ildiko4,Mayer Balazs7,Martin Daniel8,Mezey Eva4,Nemeth Krisztian7

Affiliation:

1. Center for Cellular Engineering, National Institutes of Health, Bethesda, MD 20892, USA

2. Department of Internal Medicine and Hematology, Semmelweis University, 1085 Budapest, Hungary

3. Károly Rácz Doctoral School of Clinical Medicine, Semmelweis University, 1085 Budapest, Hungary

4. Adult Stem Cell Section, National Institutes of Dental and Craniofacial Research, National Institutes of Health, Bethesda, MD 20892, USA

5. Skeletal Biology Section, National Institute of Dental and Craniofacial Research, National Institutes of Health, Bethesda, MD 20892, USA

6. Roska Tamás Doctoral School of Sciences and Technology, Faculty of Information Technology and Bionics, Pázmány Péter Catholic University, 1083 Budapest, Hungary

7. Department of Dermatology, Venereology and Dermatooncology, Semmelweis University, 1085 Budapest, Hungary

8. Genomics and Computational Biology Core, NIDCR, National Institutes of Health, Bethesda, MD 20892, USA

Abstract

Adoptive transfer of cultured BMSCs was shown to be immune-suppressive in various inflammatory settings. Many factors play a role in the process, but no master regulator of BMSC-driven immunomodulation was identified. Consequently, an assay that might predict BMSC product efficacy is still unavailable. Below, we show that BMSC donor variability can be monitored by IL-10 production of monocytes/macrophages using THP-1 cells (immortalized monocytic leukemia cells) co-cultured with BMSCs. Using a mixed lymphocyte reaction (MLR) assay, we also compared the ability of the different donor BMSCs to suppress T-cell proliferation, another measure of their immune-suppressive ability. We found that the BMSCs from a donor that induced the most IL-10 production were also the most efficient in suppressing T-cell proliferation. Transcriptome studies showed that the most potent BMSC batch also had higher expression of several known key immunomodulatory molecules such as hepatocyte growth factor (HGF), PDL1, and numerous members of the PGE2 pathway, including PTGS1 and TLR4. Multiplex ELISA experiments revealed higher expression of HGF and IL6 by the most potent BMSC donor. Based on these findings, we propose that THP-1 cells may be used to assess BMSC immunosuppressive activity as a product characterization assay.

Funder

IRP (intramural research program) of NIDCR, NIH

Semmelweis University Medical School, Dean’s Research Fund

NIH Clinical Center project

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

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