4.7 Article

Comparing the immunomodulatory properties of equine BM-MSCs culture expanded in autologous platelet lysate, pooled platelet lysate, equine serum and fetal bovine serum supplemented culture media

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FRONTIERS IN VETERINARY SCIENCE
卷 9, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fvets.2022.958724

关键词

platelet lysate; immunomodulation; osteoarthritis; xenogen; mesenchymal stem cells

资金

  1. Raymond Firestone Trust
  2. Rakers/Tulleners Fund, University of Pennsylvania

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Joint injury often leads to cartilage damage and posttraumatic inflammation, which can eventually cause osteoarthritis. This study aims to compare the immunomodulatory properties of bone marrow-derived mesenchymal stem cells (BM-MSCs) culture-expanded in different media supplemented with xenogen-free substitutes. The findings suggest that BM-MSCs cultured in equine serum (ES) demonstrate enhanced immunomodulatory abilities, while media containing platelet lysate (PL) may have therapeutic potential due to higher concentrations of growth factors. Further research is needed to determine the optimal xenogen-free supplement for optimizing BM-MSC performance.
Joint injury often leads to cartilage damage and posttraumatic inflammation, which drives continued extracellular matrix degradation culminating in osteoarthritis. Mesenchymal stem cells (MSCs) have been proposed as a biotherapeutic to modulate inflammation within the joint. However, concerns have been raised regarding the immunogenicity of MSCs cultured in traditional fetal bovine serum (FBS) containing media, and the potential of xenogenic antigens to activate the immune system causing rejection and destruction of the MSCs. Xenogen-free alternatives to FBS have been proposed to decrease MSC immunogenicity, including platelet lysate (PL) and equine serum. The objective of this study was to compare the immunomodulatory properties of BM-MSCs culture-expanded in media supplemented with autologous PL (APL), pooled PL (PPL), equine serum (ES) or FBS. We hypothesized that BM-MSCs culture expanded in media with xenogen-free supplements would exhibit superior immunomodulatory properties to those cultured in FBS containing media. Bone marrow-derived MSCs (BM-MSCs) were isolated from six horses and culture expanded in each media type. Blood was collected from each horse to isolate platelet lysate. The immunomodulatory function of the BM-MSCs was assessed via a T cell proliferation assay and through multiplex immunoassay quantification of cytokines, including IL-1 beta, IL-6, IL-8, IL-10, and TNF alpha, following preconditioning of BM-MSCs with IL-1 beta. The concentration of platelet-derived growth factor BB (PDGF-BB), IL-10, and transforming growth factor-beta (TGF-beta) in each media was measured via immunoassay. BM-MSCs cultured in ES resulted in significant suppression of T cell proliferation (p = 0.02). Cell culture supernatant from preconditioned BM-MSCs cultured in ES had significantly higher levels of IL-6. PDGF-BB was significantly higher in APL media compared to FBS media (p = 0.016), while IL-10 was significantly higher in PPL media than ES and FBS (p = 0.04). TGF-beta was highest in APL media, with a significant difference in comparison to ES media (p = 0.03). In conclusion, expansion of equine BM-MSCs in ES may enhance their immunomodulatory abilities, while PL containing media may have some inherent therapeutic potential associated with higher concentrations of growth factors. Further studies are needed to elucidate which xenogen-free supplement optimizes BM-MSC performance.

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