4.7 Article

Immunomodulatory effect of human umbilical cord mesenchymal stem cells on T lymphocytes in rheumatoid arthritis

Journal

INTERNATIONAL IMMUNOPHARMACOLOGY
Volume 74, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.intimp.2019.105687

Keywords

Mesenchymal stem cells; Extracellular vesicles; Rheumatoid arthritis; Collagen-induced arthritis; Immunoregulation; T lymphocytes

Funding

  1. National Natural Science Foundation of China [81202356, 81771768]
  2. applied basic research project of Shanxi Science and Technology Department [201803D31136, 201801D221381]

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Rheumatoid arthritis (RA) is an autoimmune disease which is lack of effective therapies. Abnormal activation, proliferation, and differentiation of T lymphocytes are closely related to RA. Mesenchymal stem cells (MSCs) can be used for RA treatment due to their immunoregulatory effects. However, the specific molecular mechanisms have not been fully elucidated and the therapeutic effect has been inconsistent. This study investigated the immunomodulatory effect of human umbilical cord MSCs (hUCMSCs) on T lymphocytes in collagen-induced arthritis (CIA) rats and RA patients to clarify the possible mechanism of hUCMSCs in RA treatment. The effects of hUCMSCs on arthritis index, radiological and synovial pathological changes, T lymphocyte proliferation and apoptosis, ROR gamma t and Foxp3 expression, Th17 and Treg cell ratios, and IL-17 and TGF-beta levels were assessed in CIA rats. Further, we verified the effect of hUCMSCs in RA patients, and compared the effect of hUCMSCs with that of hUCMSC derived extracellular vesicles (EVs). The results showed that hUCMSCs inhibited the proliferation and promoted apoptosis in T lymphocytes, downregulated ROR gamma t mRNA and protein expression, decreased Th17 cell ratio, upregulated Foxp3 mRNA and protein expression, and increased Treg cell ratio in the spleen. Furthermore, they downregulated ROR gamma t and Foxp3 expression in the joints, and inhibited IL-17 and promoted TGF-beta expression in the serum, thereby improving arthritis, delaying radiological progression, and inhibiting synovial hyperplasia in CIA rats. In vitro the effects of hUCMSCs and EVs were consistent with those in vivo. Therefore, hUCMSCs may be expected to serve as a new therapy for RA.

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