| Literature DB >> 31464653 |
Guoju Hong1,2, Xiaoming He2, Yingshan Shen2, Xiaojun Chen2, Fang Yang2, Peng Yang2, Fengxiang Pang2, Xiaorui Han3, Wei He4,5, Qiushi Wei6,7.
Abstract
<span class="abstract_title">BACKGROUND: <span class="Chemical">Chrysosplenetin is an O-methylated flavonol compound isolated from the plant Chamomilla recutita and Laggera pterodonta. The aim of our research is to evaluate the function of Chrysosplenetin on osteogenesis of human-derived bone marrow stromal cells (hBMSCs) and inhibition of estrogen deficiency-induced osteoporosis via the Wnt/β-catenin signaling pathway.Entities:
Keywords: BMSC; Chrysosplenetin; DKK1; Noggin; Osteoblast; Wnt/β-catenin
Mesh:
Substances:
Year: 2019 PMID: 31464653 PMCID: PMC6716882 DOI: 10.1186/s13287-019-1375-x
Source DB: PubMed Journal: Stem Cell Res Ther ISSN: 1757-6512 Impact factor: 6.832
Fig. 1Chemical structure of Chrysosplenetin (cited from PubChem substance CID 5281608)
Fig. 2Differentiation and identification of human mesenchymal stem cells (hBMSCs). a Representative images demonstrate that primary hBMSCs were incubated and reached 90% confluence at day 7 while cells at passages 1 and 2 at day 3. Scale bar = 100 μm. b Flow cytometry was taken to measure the levels of the specific biomarkers CD73, CD14, CD44, CD45, CD106, CD105, CD29, CD11b, CD34, and Human Leukocyte Antigen-DR isotype (HLA-DR) in hBMSCs
Fig. 3Chrysosplenetin improves proliferation and osteogenic differentiation of hBMSCs. a MTT assay was undertaken to measure the proliferation of hBMSCs. hBMSCs were cultured with osteogenic induction medium (OIM) and various concentrations of Chrysosplenetin for 1, 2, 3, 7, and 14 days (*p < 0.05 relative to OIM-stimulated controls). b Representative images demonstrated that mineral deposit of hBMSCs treated by Chrysosplenetin (10 μM) was tested by Alizarin red. c Analysis of alkaline phosphatase (ALP) activity in hBMSCs treated with Chrysosplenetin (0, 5, 10, 20 μM) (*p < 0.05 relative to OIM-stimulated controls at the same time point). d RT-pPCR was used to evaluate the expression of osteogenic genes in hBMSCs cells planted with OIM in the presence or absence of Chrysosplenetin at 5, 10, and 20 μM. Gene expression was normalized to GAPDH (Runt Related Transcription Factor 2 (RUNX2); Osteocalcin (BGLAP); β-catenin (CTNNB1); Bone Morphogenetic Protein 2 (BMP2), *p < 0.05 relative to OIM-stimulated controls; #p < 0.01 relative to 10 μM group; &p < 0.01 relative to 30 μM group)
Fig. 4Chrysosplenetin increases Wnt/β-catenin pathway target gene expression in hBMSCs. RT-pPCR was performed to assess the expressions of target genes of Wnt/β-catenin pathway. hBMSCs cells were seeded with OIM and Chrysosplenetin (10 μM) in the presence or absence of Noggin (10 μg/ml) or DKK1 (0.5 μg/ml) for 3, 7, and 14 days. Gene expression was normalized to GAPDH; a CTNNB1; b Transcription Factor 7 (TCF7); c Lymphoid Enhancer Binding Factor 1 (LEF1); d MYC (C-MYC); e cyclin D (CCND1); f c-JUN (JUN) (*p < 0.05, **p < 0.01, ***p < 0.001 relative to Chrysosplenetin treating group)
Fig. 5Chrysosplenetin promotes osteogenic gene expression in hBMSCs. RT-pPCR was utilized to evaluate the expression of osteogenic genes. hBMSCs cells were planted and added with OIM and Chrysosplenetin (10 μM) in the presence or absence of Noggin (10 μg/ml) or DKK1 (0.5 μg/ml) for 3, 7, and 14 days. Gene expression was normalized to GAPDH; a RUNX2; b Distal-less Homeobox 5 (DLX5); c Osteopontin (SPP1); d Collagen type I (COL1); e BGLAP; f BMP2 (*p < 0.05, **p < 0.01, ***p < 0.001 relative to Chrysosplenetin treating group)
Fig. 6The effect of Chrysosplenetin on total and phosphorylation of β-catenin. Protein lysates from OIM-induced hBMSCs were pre-treated with Chrysosplenetin (10 μM), which were added with Noggin (10 μg/ml) or DKK1 (0.5 μg/ml) at days 3, 7, and 14. The protein expressions of β-catenin (a) and p-β-catenin (b) were tested by Western blot assay with specific antibodies. Relative results were expressed by the ratio of the amount of β-catenin/β-actin (c) and p-β-catenin/β-actin (d) determined by Image J (*p < 0.05, **p < 0.01, ***p < 0.001 relative to Chrysosplenetin-treated group)
Fig. 7Chrysosplenetin activates the nuclear translocation of β-catenin in hBMSCs. Scale bar (white line): 100μM
Fig. 8Chrysosplenetin inhibit ovariectomy estrogen deficiency-induced bone resorption. a Representative 3D reconstruction image and micro-CT analysis of trabecular bone microarchitecture from the femur of sham mice, OVX mice, and test group treated with Chrysosplenetin at 3 mg/kg. The result shows the potential protective effect of Chrysosplenetin in OVX-induced osteoporosis. b Quantitative analyses of bone volume/total volume (BV/TV), trabecular number (Tb.N*), trabecular thickness (Tb.Th*), and trabecular separation (Tb.Sp*) (n = 6) (CHR Chrysosplenetin; *p < 0.05, **p < 0.01 relative to OVX untreated controls)
Fig. 9Chrysosplenetin prevents OVX mouse model from bone loss via promoting osteoblast activity. a Representative images of decalcified bone stained with H&E and immunochemically stained with Bglap on sham mice, OVX mice, and test group treated with 3 mg/kg Chrysosplenetin. Red arrow indicates high expression of Bglap; scale bar: 100 μm; TB, Trabecula. b Quantitative analyses of N.Ob/B.Pm (/mm) (osteoblasts number/bone perimeter) and Ob.S/BS(%) (osteoblast surfaces/bone surface) of mice. Relative Bgalp expression in mouse femurs (n = 6). c Quantitative analyses of Osteocalcin/Bone Gla Protein (Ot/Bgp), Bone Alkaline Phosphatase (Balp), and Calcitonin (Ct) in the serum of mice (n = 6) (*p < 0.05 and **p < 0.01 relative to OVX untreated controls)
Fig. 10Hypothetical scheme helps in understanding the mechanism of Chrysosplenetin in Wnt/β-catenin pathway. (DKK1, Dickkopf-related protein 1; CHR, Chrysosplenetin; RUNX2, Runt Related Transcription Factor 2; BGLAP, Osteocalcin; CTNNB1, β-catenin; BMP2, Bone Morphogenetic Protein 2; DLX5, Distal-less Homeobox 5; SPP1, Osteopontin; COL1, Collagen type I; TCF7, Transcription Factor 7; LEF1, Lymphoid Enhancer Binding Factor 1; C-MYC, MYC; CCND1, cyclin D; JUN, c-JUN)