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1.
Ann Noninvasive Electrocardiol ; 29(3): e13120, 2024 May.
Article in English | MEDLINE | ID: mdl-38706219

ABSTRACT

BACKGROUND: Early detection of patients concomitant with left main and/or three-vessel disease (LM/3VD) and high SYNTAX score (SS) is crucial for determining the most effective revascularization options regarding the use of antiplatelet medications and prognosis risk stratification. However, there is a lack of study for predictors of LM/3VD with SS in patients with non-ST-segment elevation myocardial infarction (NSTEMI). We aimed to identify potential factors that could predict LM/3VD with high SS (SS > 22) in patients with NSTEMI. METHODS: This dual-center retrospective study included a total of 481 patients diagnosed with NSTEMI who performed coronary angiography procedures. Clinical factors on admission were collected. The patients were divided into non-LM/3VD, Nonsevere LM/3VD (SS ≤ 22), and Severe LM/3VD (SS > 22) groups. To identify independent predictors, Univariate and logistic regression analyses were conducted on the clinical parameters. RESULTS: A total of 481 patients were included, with an average age of 60.9 years and 75.9% being male. Among these patients, 108 individuals had severe LM/3VD. Based on the findings of a multivariate logistic regression analysis, the extent of ST-segment elevation observed in lead aVR (OR: 7.431, 95% CI: 3.862-14.301, p < .001) and age (OR: 1.050, 95% CI: 1.029-1.071, p < .001) were identified as independent predictors of severe LM/3VD. CONCLUSION: This study indicated that the age of patients and the extent of ST-segment elevation observed in lead aVR on initial electrocardiogram were the independent predictive factors of LM/3VD with high SS in patients with NSTEMI.


Subject(s)
Coronary Angiography , Non-ST Elevated Myocardial Infarction , Severity of Illness Index , Humans , Male , Female , Retrospective Studies , Non-ST Elevated Myocardial Infarction/physiopathology , Non-ST Elevated Myocardial Infarction/diagnostic imaging , Non-ST Elevated Myocardial Infarction/complications , Middle Aged , Coronary Angiography/methods , Aged , Coronary Artery Disease/complications , Coronary Artery Disease/diagnostic imaging , Coronary Artery Disease/physiopathology , Electrocardiography/methods , Predictive Value of Tests , Risk Assessment/methods , Prognosis
3.
Mol Hortic ; 4(1): 12, 2024 Apr 02.
Article in English | MEDLINE | ID: mdl-38561782

ABSTRACT

Although there is increasing evidence suggesting that DNA methylation regulates seed development, the underlying mechanisms remain poorly understood. Therefore, we aimed to shed light on this by conducting whole-genome bisulfite sequencing using seeds from the large-seeded cultivar 'HZ' and the abortive-seeded cultivar 'NMC'. Our analysis revealed that the 'HZ' seeds exhibited a hypermethylation level compared to the 'NMC' seeds. Furthermore, we found that the genes associated with differentially methylated regions (DMRs) and differentially expressed genes (DEGs) were mainly enriched in the reactive oxygen species (ROS) metabolic pathway. To investigate this further, we conducted nitroblue tetrazolium (NBT) and 2,7-Dichlorodihydrofluorescein (DCF) staining, which demonstrated a significantly higher amount of ROS in the 'NMC' seeds compared to the 'HZ' seeds. Moreover, we identified that the gene LcGPX6, involved in ROS scavenging, exhibited hypermethylation levels and parallelly lower expression levels in 'NMC' seeds compared to 'HZ' seeds. Interestingly, the ectopic expression of LcGPX6 in Arabidopsis enhanced ROS scavenging and resulted in lower seed production. Together, we suggest that DNA methylation-mediated ROS production plays a significant role in seed development in litchi, during which hypermethylation levels of LcGPX6 might repress its expression, resulting in the accumulation of excessive ROS and ultimately leading to seed abortion.

4.
J Integr Plant Biol ; 2024 Mar 22.
Article in English | MEDLINE | ID: mdl-38517216

ABSTRACT

At the physiological level, the interplay between auxin and ethylene has long been recognized as crucial for the regulation of organ abscission in plants. However, the underlying molecular mechanisms remain unknown. Here, we identified transcription factors involved in indoleacetic acid (IAA) and ethylene (ET) signaling that directly regulate the expression of INFLORESCENCE DEFICIENT IN ABSCISSION (IDA) and its receptor HAESA (HAE), which are key components initiating abscission. Specifically, litchi IDA-like 1 (LcIDL1) interacts with the receptor HAESA-like 2 (LcHSL2). Through in vitro and in vivo experiments, we determined that the auxin response factor LcARF5 directly binds and activates both LcIDL1 and LcHSL2. Furthermore, we found that the ETHYLENE INSENSITIVE 3-like transcription factor LcEIL3 directly binds and activates LcIDL1. The expression of IDA and HSL2 homologs was enhanced in LcARF5 and LcEIL3 transgenic Arabidopsis plants, but reduced in ein3 eil1 mutants. Consistently, the expressions of LcIDL1 and LcHSL2 were significantly decreased in LcARF5- and LcEIL3-silenced fruitlet abscission zones (FAZ), which correlated with a lower rate of fruitlet abscission. Depletion of auxin led to an increase in 1-aminocyclopropane-1-carboxylic acid (the precursor of ethylene) levels in the litchi FAZ, followed by abscission activation. Throughout this process, LcARF5 and LcEIL3 were induced in the FAZ. Collectively, our findings suggest that the molecular interactions between litchi AUXIN RESPONSE FACTOR 5 (LcARF5)-LcIDL1/LcHSL2 and LcEIL3-LcIDL1 signaling modules play a role in regulating fruitlet abscission in litchi and provide a long-sought mechanistic explanation for how the interplay between auxin and ethylene is translated into the molecular events that initiate abscission.

5.
Mediators Inflamm ; 2022: 4250621, 2022.
Article in English | MEDLINE | ID: mdl-35664920

ABSTRACT

Preeclampsia (PE) is a common pregnancy-related syndrome characterized by chronic immune activation. This study is aimed at exploring the role of miR-155 in the inflammatory pathogenesis of PE. Placental tissues and peripheral blood were collected from all subjects. BSP detection analysis was performed to evaluate miR-155 methylation levels. ELISA was performed to measure the levels of inflammatory cytokines and MMP2 in serum samples and cellular supernatants. HTR-8/SVneo and JEG-3 cells were transfected with miR-155 mimic and the inhibitor to establish the overexpressed miR-155 and silenced miR-155 cell models, respectively. Treatment with 5-Aza was performed to alter the DNA methylation level of miR-155. The PE rat model was established after subcutaneous injection of NG-nitro-L-arginine methyl ester. The CCK-8 assay, TUNEL staining, and Transwell assay were performed. Reverse transcription-quantitative PCR, Western blot analysis, and immunohistochemical assay were used to analyze related gene expression levels. The luciferase reporter assay was used to investigate the direct interaction between FOXO3 and miR-155. Results showed that miR-155 was remarkably upregulated and inversely correlated with the promoter methylation level in the placental tissue from PE patients. The in vitro experiments indicated that miR-155 decreased viability, migration, and invasion, but increased apoptosis in trophoblast cells. FOXO3 was confirmed as the target of miR-155. Transfection of the miR-155 inhibitor suppressed inflammation and oxidative stress, but elevated proliferation, migration, and invasion of trophoblast cells, which were abolished by 5-Aza treatment or cotransfection with si-FOXO3. In summary, our data suggested that methylation-mediated silencing of miR-155 can inhibit the apoptosis, inflammation, and oxidative stress of trophoblast cells by upregulating FOXO3.


Subject(s)
MicroRNAs , Pre-Eclampsia , Animals , Cell Line, Tumor , Cell Movement/genetics , Cell Proliferation/genetics , Female , Forkhead Box Protein O3/genetics , Forkhead Box Protein O3/metabolism , Humans , Inflammation/metabolism , Methylation , MicroRNAs/genetics , MicroRNAs/metabolism , Placenta/metabolism , Pre-Eclampsia/metabolism , Pregnancy , Rats , Trophoblasts/metabolism
6.
Ginekol Pol ; 93(12): 987-992, 2022.
Article in English | MEDLINE | ID: mdl-35072242

ABSTRACT

OBJECTIVES: Investigating the expression levels of plasma protein Z (PZ) and protein Z-dependent protease inhibitor (ZPI) in fetal growth restriction (FGR) and to explore their diagnostic value in FGR. MATERIAL AND METHODS: In this study, the number of pregnant women with FGR, healthy pregnant women (Healthy Control, HC), and childbearing-age women without pregnancy (Blank Control, BC) is 79, 79, and 60, respectively; their plasma PZ and ZPI levels in each group are determined by ELISAs. Then, the correlations between these indices and FGR were assessed using Spearman analysis. Moreover, these indices' diagnostic values for FGR are evaluated using the receiver operating characteristics (ROC) curves. RESULTS: The plasma levels of PZ and ZPI are significantly decreased in the HC and FGR groups compared against the BC group (P < 0.001), whilst the levels of PZ and ZPI in the FGR groups are lower than those in the HC group (P < 0.01) notably. PZ plasma concentration has positive relationship with ZPI concentrations in the HC and FGR groups. The combination of PZ and ZPI, with the Area under the Curve (AUC) 0.92 (95% CI = 0.88-0.96), the sensitivity 0.82, and the specificity 0.88, outperforms everyone. CONCLUSIONS: Plasma PZ and ZPI are significantly decreased in pregnant women with FGR, which can be used for pregnant women's FGR screening.


Subject(s)
Protease Inhibitors , Serpins , Female , Humans , Pregnancy , Blood Proteins , Fetal Growth Retardation/diagnosis , Protease Inhibitors/metabolism
7.
Bioresour Technol ; 346: 126648, 2022 Feb.
Article in English | MEDLINE | ID: mdl-34974105

ABSTRACT

This study examined the performance and microbial community dynamics of an anaerobic volatile fatty acid (VFA) production reactor for treating fruit waste by stepwise increasing organic loading rates (OLRs) from 8 to 24 g volatile total solids (VTS)/(L·d). Results showed that higher VFA concentrations of 52.25-61.90 g chemical oxygen demand (COD)/L can be maintained at each OLR, thereby resulting to a production of 0.70-0.76 g chemical oxygen demand (COD)VFA/g VTS. Notably, an increase in OLR from 8 to 14 g VTS/(L·d) was beneficial for achieving higher VFA concentrations and yields. Moreover, an increase in OLR affected the VFA distribution significantly; acetate and butyrate became dominant in the fermentation liquid at OLRs ≥ 14 g VTS/(L·d). Microbial community dynamics analysis revealed that phyla Firmicutes and Actinobacteriota were predominant at each OLR, and the genera Lactobacillus, Clostridium_sensu_stricto_12, and Caproiciproducens were closely related to anaerobic VFA production.


Subject(s)
Bioreactors , Microbiota , Anaerobiosis , Fatty Acids, Volatile , Fruit , Methane
8.
Appl Biochem Biotechnol ; 184(2): 685-702, 2018 Feb.
Article in English | MEDLINE | ID: mdl-28840458

ABSTRACT

Distilled grain waste (DGW) eluted from the Chinese liquor making process poses potential serious environmental problems. The objective of this study is to evaluate the feasibility of converting DGW to biogas by thermophilic dry anaerobic digestion. To improve biogas production, the effects of dilute H2SO4 and thermal pretreatment on DGW were evaluated by biochemical methane potential (BMP) tests. The results indicate that 90 °C thermal pretreatment provided the highest methane production at 212.7 mL/g-VTSadd. The long-term thermophilic dry anaerobic digestion process was conducted in a 5-L separable flask for more than 3 years at a volatile total solid (VTS) loading rate of 1 g/kg-sludge/d, using synthetic waste, untreated and 90 °C thermal pretreated DGW as the feedstock, respectively. A higher methane production, 451.6 mL/g-VTSadd, was obtained when synthetic waste was used; the methane production decreased to 139.4 mL/g-VTSadd when the untreated DGW was used. The 90 °C thermal pretreated DGW increased the methane production to 190.5 mL/g-VTSadd, showing an increase of 36.7% in methane production compared with that using untreated DGW. The microbial community structure analysis indicates that the microbial community in the thermophilic dry anaerobic digestion system maintained a similar structure when untreated or pretreated DGW was used, whereas the structure differed significantly when synthetic waste was used as the feedstock.


Subject(s)
Biofuels , Bioreactors/microbiology , Hot Temperature , Medical Waste Disposal/methods , Methane/metabolism , Anaerobiosis , Medical Waste Disposal/instrumentation , Sulfuric Acids/chemistry
9.
Waste Manag ; 61: 206-212, 2017 Mar.
Article in English | MEDLINE | ID: mdl-28089402

ABSTRACT

Digested residue remained at the end of a process for the production of fuel ethanol and methane from kitchen garbage. To develop a zero-emission process, the compostability of the digested residue was assessed to obtain an added-value fertilizer. Composting of the digested residue by adding matured compost and a bulking agent was performed using a lab-scale composting reactor. The composting process showed that volatile total solid (VTS) degradation mainly occurred during the first 13days, and the highest VTS degradation efficiency was about 27% at the end. The raw material was not suitable as a fertilizer due to its high NH4+ and volatile fatty acids (VFAs) concentration. However, the composting process produced remarkable results; the physicochemical properties indicated that highly matured compost was obtained within 62days of the composting process, and the final N concentration, NO3- concentration, and the germination index (GI) at the end of the composting process was 16.4gkg-1-TS, 9.7gkg-1-TS, and 151%, respectively. Real-time quantitative PCR (qPCR) analysis of ammonia oxidizers indicated that the occurrence of nitrification during the composting of digested residue was attributed to the activity of ammonia-oxidizing bacteria (AOB).


Subject(s)
Methane/biosynthesis , Soil , Aerobiosis , Ammonia/metabolism , Fatty Acids, Volatile/metabolism , Fermentation , Fertilizers , Microbial Consortia/genetics , Microbial Consortia/physiology , Nitrates/metabolism , Nitrification , Real-Time Polymerase Chain Reaction , Soil Microbiology , Temperature , Waste Products
10.
Appl Biochem Biotechnol ; 181(1): 125-141, 2017 Jan.
Article in English | MEDLINE | ID: mdl-27526112

ABSTRACT

Thermophilic dry methane fermentation is advantageous for feedstock with high solid content. Distillation residue with 65.1 % moisture content was eluted from ethanol fermentation of kitchen waste and subjected to thermophilic dry methane fermentation, after adjusting the moisture content to 75 %. The effect of carbon to nitrogen (C/N) ratio on thermophilic dry methane fermentation was investigated. Results showed that thermophilic dry methane fermentation could not be stably performed for >10 weeks at a C/N ratio of 12.6 and a volatile total solid (VTS) loading rate of 1 g/kg sludge/d; however, it was stably performed at a C/N ratio of 19.8 and a VTS loading rate of 3 g/kg sludge/d with 83.4 % energy recovery efficiency. Quantitative PCR analysis revealed that the number of bacteria and archaea decreased by two orders of magnitude at a C/N ratio of 12.6, whereas they were not influenced at a C/N ratio of 19.8. Microbial community analysis revealed that the relative abundance of protein-degrading bacteria increased and that of organic acid-oxidizing bacteria and acetic acid-oxidizing bacteria decreased at a C/N ratio of 12.6. Therefore, there was accumulation of NH4+ and acetic acid, which inhibited thermophilic dry methane fermentation.


Subject(s)
Archaea/metabolism , Bacteria/metabolism , Methane/metabolism , Solid Waste , Anaerobiosis , Archaea/chemistry , Bacteria/chemistry , Biodegradation, Environmental , Bioreactors , Carbon/chemistry , Ethanol/chemistry , Fermentation , Methane/chemistry , Nitrogen/chemistry , Refuse Disposal/methods , Sewage/chemistry , Temperature
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