| Literature DB >> 28202079 |
Shuo Wang1,2, Chao Zhang1,2, Sidikejiang Niyazi1,2, Long Zheng1,2, Jiawei Li1,2, Weitao Zhang1,2, Ming Xu1,2, Ruiming Rong1,2,3, Cheng Yang4,5, Tongyu Zhu6,7,8.
Abstract
BACKGROUND: Mesenchymal stem cell (MSC) has been widely explored in the past decade as a cell-based treatment for various diseases. However, poor survival of adaptively transferred MSCs limits their clinical therapeutic potentials, which is largely ascribed to the nutrient starvation. In this study, we determined whether a novel kidney protective peptide CHBP could protect MSCs against starvation and invested the underlying mechanisms.Entities:
Keywords: Cyclic helix B peptide; FoxO3a; Mesenchymal stem cell; Nrf2; Sirt3; Starvation
Mesh:
Substances:
Year: 2017 PMID: 28202079 PMCID: PMC5309997 DOI: 10.1186/s12967-017-1144-5
Source DB: PubMed Journal: J Transl Med ISSN: 1479-5876 Impact factor: 5.531
Fig. 1CHBP preserved the viability of MSCs during starvation. a MSCs were seeded in 96-well plates at a density of 1 × 104 cells/well and subjected to starvation. CHBP was administered at indicated concentrations. Scrambled peptide was also used as a control. Cell viability was determined by CCK-8. b MSCs seeded in 6-well plates at 1 × 106 cells/well were incubated in serum-free medium for 24 h in the absence or presence of CHBP and harvested for Trypan blue staining. c Effect of CHBP on the proliferation of MSCs under normal conditions was measured by CCK-8. Experiments were performed in triplicate. Data are expressed as mean ± standard deviation. *P < 0.05, **P < 0.01, ***P < 0.001
Fig. 2CHBP suppressed apoptosis induced by serum deprivation. MSCs were seeded in 6-well plates at a concentration of 1 × 106/well and incubated in serum-free medium for indicated time. The protective effect of CHBP against apoptosis was evaluated by Annexin V/PI asaay and Hoechst 33258 staining. a Annexin V/PI asaay was performed by flow cytometry. Annexin V−/PI− represents live cells; Annexin V+/PI− or Annexin V−/PI+ represents early or late apoptosis phase respectively; Annexin V+/PI+ reflects necrosis. Fragmentation and condensation of the nucleus were recognized as the characteristics of apoptotic cells. Experiments were performed in triplicate. Data are expressed as mean ± standard deviation. *P < 0.05 compared with control. **P < 0.01 compared with control
Fig. 3CHBP suppressed apoptosis induced by serum deprivation. MSCs were seeded in 6-well plates at a concentration of 1 × 106/well and incubated in serum-free medium for indicated time. The protective effect of CHBP against apoptosis was evaluated by Annexin V/PI asaay and Hoechst 33258 staining. a Quantification analysis of flow cytometry results was performed and demonstrated. b Hoechst 33258 staining was observed under fluorescence microscopy at ×100 magnification. Fragmentation and condensation of the nucleus were recognized as the characteristics of apoptotic cells. Experiments were performed in triplicate. Data are expressed as mean ± standard deviation. *P < 0.05 compared with control. **P < 0.01 compared with control
Fig. 4CHBP prevented mitochondrial dysfunction. MSCs were seeded in 6-well plates at a concentration of 1 × 106/well and incubated in serum-free medium for 24 h with or without 10 nmol/L CHBP. MSCs cultured in complete medium were used as control. a To detect of mitochondria-derived ROS, cells were incubated with MitoSOX reagent (2.5 mmol/L) for 30 min and analyzed by flow cytometry. b To measure mitochondrial membrane potential, cells were incubated with JC-1 reagent (5 mg/mL) for 30 min and analyzed by flow cytometry. c Cytochrome c was labeled by FITC and mitochondria were stained by MitoRed (50 nmol/L). Cells were observed by fluorescence microscopy under ×200 magnification. d For detection of mitochondrial mass, cells were incubated with MitoRed (50 nmol/L) for 30 min and analyzed by flow cytometry. Experiments were performed in triplicate. Data are expressed as mean ± standard deviation. *P < 0.05, **P < 0.01
Fig. 5Nrf2/Sirt3/FoxO3a pathway participated in the protective mechanism of CHBP against starvation. a MSCs were treated with siRNA targeting Sirt3 and then subjected to starvation with CHBP (10 nmol/L). Total protein was prepared from cultured cells. Expressions of Nrf2, Sirt3, total FoxO3a and p-FoxO3a were analyzed by western blotting. b Sirt3 siRNA treated MSCs were subjected to serum deprivation and apoptosis was detected by Annexin V/PI asaay. Experiments were performed in triplicate. Data are expressed as mean ± standard deviation. *P < 0.05, **P < 0.01
Fig. 6CHBP preconditioning rendered MSCs more resistant to starvation. a MSCs were preconditioned with CHBP at a concentration of 10 nmol/L and then subjected to serum starvation. Apoptosis was detected by Annexin V/PI asaay. b Quantification analysis of flow cytometry results was performed and demonstrated. Experiments were performed in triplicate. Data are expressed as mean ± standard deviation
Fig. 7CHBP had no impact on the differential and self-renewal capacity of MSCs. MSCs were incubated with CHBP at a concentration of 10 nmol/L for 3 days and then harvested for a adipogenic differentiation, b osteogenic differentiation, and c Colony forming unit assay. Photographs are representatives of three independent experiments. Data are expressed as mean ± standard deviation