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1.
Front Cell Dev Biol ; 8: 618574, 2020.
Article in English | MEDLINE | ID: mdl-33681183

ABSTRACT

Myocardial infarction (MI) is the most prevalent cardiac disease with high mortality, leading to severe heart injury. Circular RNAs (circRNAs) are a new type of regulatory RNAs and participate in multiple pathological cardiac progressions. However, the role of circRNAs Postn (circPostn) in MI modulation remains unclear. Here, we aimed to explore the effect of circPostn on MI-induced myocardial injury and cardiac remodeling. We identified that the expression of circPostn was elevated in the plasma of MI patients, MI mouse model, and hypoxia and reoxygenation (H/R)-treated human cardiomyocytes. The depletion of circPostn significantly attenuated MI-related myocardium injury and reduced the infarct size in MI mouse model. The circPostn knockdown obviously enhanced left ventricular ejection fraction (LVEF) and left ventricular fraction shortening (LVFS) and inhibited left ventricular anterior wall thickness at diastole (LVAWd) and left ventricular posterior wall thickness at diastole (LVPWd). The depletion of circPostn was able to decrease MI-induced expression of collagen 1α1 and collagen 3α1 in the ventricular tissues of mice. The protein expression of collagen and α-smooth muscle actin (SMA) was up-regulated in MI mice and was inhibited by circPostn knockdown. Meanwhile, the expression of atrial natriuretic peptide (ANP) and brain natriuretic peptide (BNP) was repressed by circPostn depletion in the ventricular tissues of MI mice. Besides, the circPostn depletion attenuated cardiomyocyte apoptosis in mice. Mechanically, circPostn served as a miR-96-5p sponge and miR-96-5p-targeted BNIP3 in human cardiomyocytes, in which circPostn up-regulated BNIP3 expression by targeting miR-96-5p. circPostn promoted H/R-induced cardiomyocyte injury by modulating miR-96-5p/BNIP3 axis. Thus, we conclude that circPostn contributes to MI-induced myocardial injury and cardiac remodeling by regulating miR-96-5p/BNIP3 axis. Our finding provides new insight into the mechanism by which circPostn regulates MI-related cardiac dysfunction. circPostn, miR-96-5p, and BNIP3 are potential targets for the treatment of MI-caused heart injury.

2.
Fitoterapia ; 125: 111-116, 2018 Mar.
Article in English | MEDLINE | ID: mdl-29289635

ABSTRACT

Five new compounds, including four new isocoumarin derivatives [orychophramarin A-D (1-4)] and a new monoterpene glycoside [orychovioside A (5)], together with fourteen known compounds were isolated from the seeds of Orychophragmus violaceus. Their structures were established on the basis of chemical evidence and spectroscopic analysis. Compound 1 showed significant cytotoxicity against HCT-116 and Hela cell lines compared with the positive control group (Cisplatin) with IC50 values of 5.10 and 8.91µM, respectively. Compound 1 exhibited evident cell cycle retardation that arrested HCT-116 cells at G2 phase and induced apoptosis in HCT-116 cells in the further mechanism study.


Subject(s)
Antineoplastic Agents, Phytogenic/isolation & purification , Brassicaceae/chemistry , Glycosides/isolation & purification , Isocoumarins/isolation & purification , Monoterpenes/isolation & purification , Apoptosis/drug effects , Cell Cycle Checkpoints/drug effects , HCT116 Cells , HeLa Cells , Humans , Molecular Structure , Seeds/chemistry
3.
Org Lett ; 20(3): 656-659, 2018 02 02.
Article in English | MEDLINE | ID: mdl-29338252

ABSTRACT

Orychophragines A-C (1-3), three new alkaloids with an novel 2-piperazinone-fused 2,4-dioxohexahydro-1,3,5-triazine skeleton, were isolated from the seeds of Orychophragmus violaceus. Their structures were established on the basis of spectroscopic analysis and X-ray crystallographic analysis. Orychophragines A (1) exhibited remarkable cytotoxicity against HepG2, A549, Hela, and HCT-116 cells with IC50 values of 7.73, 10.79, 11.91, and 9.93 µM, respectively. Orychophragines C (3) showed moderate 60Co γ radiation protection activity in HUVEC cells. A plausible biosynthetic pathway for 1-3 was proposed.


Subject(s)
Brassicaceae , Alkaloids , Cell Line, Tumor , Humans , Molecular Structure
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