| Literature DB >> 28962638 |
Jingying Hou1,2, Lei Wang1,2, Huibao Long1,2, Hao Wu1,2, Quanhua Wu1,2, Tingting Zhong1,2, Xuxiang Chen1,2, Changqing Zhou1,2, Tianzhu Guo1,2, Tong Wang3,4,5.
Abstract
BACKGROUND: Cardiac stem cells (CSCs) transplantation has been regarded as an optimal therapeutic approach for cardiovascular disease. However, inferior survival and low differentiation efficiency of these cells in the local infarct site reduce their therapeutic efficacy. In this study, we investigated the influence of hypoxia preconditioning (HP) on CSCs survival and cardiogenic differentiation in vitro and explored the relevant mechanism.Entities:
Keywords: Apelin/APJ; Cardiac stem cells; Cardiogenic differentiation; HIF-1α; Hypoxia preconditioning; Survival
Mesh:
Substances:
Year: 2017 PMID: 28962638 PMCID: PMC5622481 DOI: 10.1186/s13287-017-0673-4
Source DB: PubMed Journal: Stem Cell Res Ther ISSN: 1757-6512 Impact factor: 6.832
Fig. 1CSCs proliferation at different time points after hypoxia exposure. a CSCs proliferation rate tested by MTS. b Detection of the proliferation rate at different time points. Proliferation rate = OD (optical density) values at other time points divided by OD value at the beginning (same sample) × 100%. **p < 0.01 vs normoxia
Fig. 2Hypoxia exposure for 24 h reduced the apoptosis of CSCs. (A) Apoptosis of CSCs was evaluated by flow cytometry: (a, b) apoptosis rate of CSCs that experienced 12 h normoxia or hypoxia exposure respectively; (c, d) apoptosis rate of CSCs that experienced 24 - normoxia or hypoxia exposure respectively. Quadrant cells were divided into four sections: Q1, Annexin V−FITC−PI+, mechanical error; Q2, Annexin V−FITC+PI+, late apoptosis or necrosis cells; Q3, Annexin V−FITC−PI−, viable cells; Q4, Annexin V−FITC+PI−, early apoptosis cells. (B) Comparison of apoptosis between normoxia and hypoxia groups at 12 and 24 h. n = 3, **p < 0.01 vs normoxia. FITC fluorescein isothiocyanate, PE phycoerythrin
Fig. 3Alterations of molecules in the HIF-1α/apelin/APJ axis after HP. Western blot analysis (a) and qRT-PCR (b) were used to detect alterations of molecules in the HIF-1α/apelin/APJ axis after HP. Comparisons were made between normoxia and HP groups. **p < 0.01 vs normoxia. HP: hypoxia preconditioning, HIF: hypoxia-inducible factor, apelin: ligand for putative receptor protein related to angiotensin receptor AT1, APJ: putative receptor protein related to angiotensin receptor AT1
Fig. 4Cardiogenic differentiation of CSCs. (A), (B), (C) Confocal microscopy of immunofluorescent staining of DAPI-labeled CSCs induced by 5-AZA after 14 days (400×). (A) Immunofluorescent staining of apelin: (a) cells stained with antibody to apelin appeared red; (b) cells derived from DAPI-labeled CSCs induced by 5-AZA displayed blue nuclei; (c) merged image of a and b. (B), (C) Immunofluorescent staining of α-SA and cTnT respectively: (a) cells stained with antibody to α-SA and cTnT appeared green; (b) cells derived from DAPI-labeled CSCs induced by 5-AZA displayed blue nuclei; (c) merged image of a and b. (D) Alterations of the protein expressions of cardiogenic differentiation specific genes. Western blot analysis to detect alterations of protein expressions of cardiogenic differentiation specific genes including α-SA and cTnT at different time points after induction of cardiogenic differentiation. Comparisons were made between normoxia and HP groups. **p < 0.01 vs normoxia. HP: hypoxia preconditioning
Fig. 5Alterations of molecules in the HIF-1α/apelin/APJ axis after the induction of cardiogenic differentiation. Western blot analysis (a) and qRT-PCR (b) were used to detect the expressions of molecules in the HIF-1α/apelin/APJ axis at different time points after the induction of cardiogenic differentiation. Comparisons were made between normoxia and HP groups. **p < 0.01 vs normoxia. HP hypoxia preconditioning, HIF: hypoxia-inducible factor, apelin: ligand for putative receptor protein related to angiotensin receptor AT1, APJ: putative receptor protein related to angiotensin receptor AT1
Fig. 6Alterations of molecules and specific markers of cardiogenic differentiation after inhibition of the HIF-1α/apelin/APJ axis. (a) Western blot and (b) qRT-PCR analysis of the molecules in the HIF-1α/apelin/APJ axis after relevant siRNA interference. c Changes of cardiogenic differentiation specific genes including α-SA and cTnT after the blockage of the HIF-1α/apelin/APJ axis. **p < 0.01 vs normoxia, ## p < 0.01 vs HP, ††p < 0.01 vs NC. HP: hypoxia preconditioning, HIF: hypoxia-inducible factor, apelin: ligand for putative receptor protein related to angiotensin receptor AT1, APJ: putative receptor protein related to angiotensin receptor AT1, NC negative control