| Literature DB >> 23882269 |
Marieke Roemeling-van Rhijn1, Fane K F Mensah, Sander S Korevaar, Maarten J Leijs, Gerjo J V M van Osch, Jan N M Ijzermans, Michiel G H Betjes, Carla C Baan, Willem Weimar, Martin J Hoogduijn.
Abstract
Adipose tissue-derived mesenchymal stem cells (ASC) are of great interest as a cellular therapeutic agent for regenerative and immunomodulatory purposes. The function of ASC adapts to environmental conditions, such as oxygen tension. Oxygen levels within tissues are typically much lower than under standard culture conditions and ASC used for therapy therefore encounter a change from normoxic to hypoxic conditions. The effect of hypoxia on the regenerative potential of ASC has been investigated in a number of studies. The effect of hypoxia on the immunomodulatory function of ASC, however, remains to be determined. In the present study the effect of hypoxic (1% oxygen) culture conditions on human ASC was examined. ASC showed no signs of toxicity under low oxygen levels and no major immunophenotypical changes were observed, apart from a down regulation of the marker CD105. Oxygen tension had no effect on the proliferation of ASC and colony forming unit efficiency remained the same under 1 and 20% oxygen. Under both oxygen levels ASC were capable of strong upregulation of the immunomodulatory molecules indoleamine 2,3-dioxygenase (IDO) and programed death ligand-1 upon stimulation with IFN-γ and TNF-α, and, in addition, IDO activity as measured by the accumulation of l-kynurenine was not affected under hypoxia. The ability of ASC to inhibit anti-CD3/CD28 stimulated CD4(+) and CD8(+) T cell proliferation was not hampered by hypoxia. The results of the present study demonstrate that the immunosuppressive capacity of ASC is maintained under hypoxic conditions. These findings are important for the therapeutic use of ASC and may be applied for the in vitro generation of ASC with improved functionality for therapeutic use.Entities:
Keywords: cell therapy; hypoxia; immune modulation; mesenchymal stem cells; oxygen level
Year: 2013 PMID: 23882269 PMCID: PMC3714546 DOI: 10.3389/fimmu.2013.00203
Source DB: PubMed Journal: Front Immunol ISSN: 1664-3224 Impact factor: 7.561
Figure 1(A) Lactate production by ASC. ASC were cultured under 20 or 1% O2 for 3 days and medium collected for lactate measurements. Mean with SEM of three experiments is shown. (B) Effect of hypoxia on gene expression of hypoxia-inducible genes; mRNA expression of HIF1-α and HIF2-α by ASC after 24 h culture under normoxic (20% O2) and hypoxic (1% O2) conditions. Mean with SD of four different experiments is shown. (C) mRNA expression of VEGF, downstream of HIF1-α under normoxia and hypoxia. Mean with SD of four different ASC cultures, *Indicatesp < 0.05.
Figure 2Effect of hypoxia on ASC characteristics. (A) ASC metabolic activity measured by MTT assay. Mean with SEM of three different ASC cultures shown. (B) Cumulative population doublings of ASC cultured under normoxic and hypoxic conditions. (C) CFU efficiency of ASC. Mean with SEM of four different ASC cultures shown. (D) Immunophenotype of ASC after culturing for 10 days under normoxic and hypoxic conditions. Filled histogram; unstained ASC, solid line; ASC cultured under 20% O2, dotted line; ASC cultured under 1% O2. *Indicatesp < 0.05.
Figure 3Effect of hypoxia on the induction of PD-L1 (A), CXCL-10 (B), and IDO (C); mRNA expression in ASC after IFN-γ/TNF-α stimulation. ASC were cultured under 20 or 1% O2 for 6, 24, or 72 h with or without 50 ng/ml IFN-γ and 20 ng/ml TNF-α. Every data point represents a distinct ASC culture (n = 4 different ASC cultures). (D,E) IDO activity determined by accumulation of l-kynurenine in ASC conditioned medium in the absence and presence of TNF and IFN [24 h (D) and 72 h (E)]. Means of five ASC cultures with SEM shown.
Figure 4(A–D) PBMC were labeled with PKH and stimulated with anti-CD3/CD28 antibodies. On day 3, the proliferation of CD4+ and CD8+ T cells was analyzed by flow cytometry. (A,B) percentage proliferating cells shown. (C,D) percentage inhibition of proliferation shown, compared to the condition without ASC. Mean with SEM of three experiments with different ASC cultures shown, *p-value < 0.05.