| Literature DB >> 31781234 |
Xiaojun Huang1, Huan Chen1, Yunyi Xie1, Zeyuan Cao1, Xuefeng Lin1, Yan Wang1.
Abstract
Periodontitis is a chronic disease that includes the pathologic loss of periodontal tissue and alveolar bone. The inflammatory environment in periodontitis impairs the osteogenic differentiation potential and depresses the regeneration capacity of human periodontal ligament stem cells (hPDLSCs). Since Forkhead box protein O1 (FoxO1) plays an important role in redox balance and bone formation, we investigated the role of FoxO1 in oxidative stress resistance and osteogenic differentiation in an inflammatory environment by overexpressing FoxO1 in hPDLSCs. First, we found that FoxO1 overexpression reduced reactive oxygen species (ROS) accumulation, decreased malondialdehyde (MDA) levels, and elevated antioxidant potential under oxidative condition. Next, the overexpression of FoxO1 protected hPDLSCs against oxidative damage, which involved stabilization of the mitochondrial membrane potential. Third, overexpressed FoxO1 promoted extracellular matrix (ECM) mineralization and increased the expression of the osteogenic markers Runx2 and SP7 in the inflammatory environment. These results indicated that FoxO1 overexpression in hPDLSCs has an anti-inflammatory effect, increases antioxidative capacity, and positively regulates osteogenesis in a mimicked inflammatory environment.Entities:
Year: 2019 PMID: 31781234 PMCID: PMC6875375 DOI: 10.1155/2019/2120453
Source DB: PubMed Journal: Stem Cells Int Impact factor: 5.443
Figure 1FoxO1 overexpression increased the antioxidant potential of hPDLSCs. PDLSC-pMSCV-empty (NC) and PDLSC-pMSCV-FoxO1 (ov-FoxO1) were treated with 0 or 10 ng/mL TNF-α for 12 h. Cellular ROS generation following different treatments was measured by staining with DCFH-DA (a, b). MDA levels in hPDLSCs were determined by a Lipid Peroxidation MDA Assay Kit following treatment with α-MEM or TNF-α (10 ng/mL) for 72 h (c). The expression of MnSOD and catalase in hPDLSCs exposed to 0 or 10 ng/mL TNF-α for 72 h was determined by Western blotting (d). ∗p < 0.05; ∗∗p < 0.01; ∗∗∗p < 0.001.
Figure 2FoxO1 overexpression improved the mitochondrial membrane potential in hPDLSCs. PDLSC-pMSCV-empty (NC) and PDLSC-pMSCV-FoxO1 (ov-FoxO1) were labeled with JC-1 to determine their mitochondrial membrane potential following treatment with α-MEM or TNF-α (10 ng/mL) for 72 h (a). Quantification of depolarized cells presented as the percent of the total cells. Confocal microscopic images of hPDLSCs were labeled with JC-1 (b). JC-1 aggregates exhibited red fluorescence, and JC-1 monomers exhibited green fluorescence. ∗∗∗p < 0.001.
Figure 3FoxO1 overexpression reduced TNF-α-induced apoptosis in hPDLSCs. Apoptosis was detected in PDLSC-pMSCV-empty (NC) and PDLSC-pMSCV-FoxO1 (ov-FoxO1) by Annexin V/7-AAD flow cytometry following treatment with α-MEM or TNF-α (10 ng/mL) for 72 h (a). Quantification of apoptotic cells presented as the percentage of the total cells (b). Immunofluorescence images of hPDLSCs showing cleaved caspase-3 (green) and Hoechst (blue) (c). ∗p < 0.05; ∗∗p < 0.01.
Figure 4FoxO1 overexpression enhanced osteogenic differentiation in hPDLSCs. PDLSC-pMSCV-empty (NC) and PDLSC-pMSCV-FoxO1 (ov-FoxO1) were cultured in osteogenic induction medium containing 0 or 10 ng/mL TNF-α for 21 days. Western blot analysis of Runx2, SP7, and FoxO1 protein levels after 21 days of osteogenic induction, with β-actin used as a control (a). The level of mineralized nodule deposition in hPDLSCs was assessed by Alizarin red S staining (b) and quantified (c). ∗p < 0.05; ∗∗p < 0.01.