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The genetic transcription profile of brain ischemic and reperfusion injury remains elusive. To address this, we used an integrative analysis approach including differentially expressed gene (DEG) analysis, weighted-gene co-expression network analysis (WGCNA), and pathway and biological process analysis to analyze data from the microarray studies of nine mice and five rats after middle cerebral artery occlusion (MCAO) and six primary cell transcriptional datasets in the Gene Expression Omnibus (GEO). (1) We identified 58 upregulated DEGs with more than 2-fold increase, and adj. p < 0.05 in mouse datasets. Among them, Atf3, Timp1, Cd14, Lgals3, Hmox1, Ccl2, Emp1, Ch25h, Hspb1, Adamts1, Cd44, Icam1, Anxa2, Rgs1, and Vim showed significant increases in both mouse and rat datasets. (2) Ischemic treatment and reperfusion time were the main confounding factors in gene profile changes, while sampling site and ischemic time were not. (3) WGCNA identified a reperfusion-time irrelevant and inflammation-related module and a reperfusion-time relevant and thrombo-inflammation related module. Astrocytes and microglia were the main contributors of the gene changes in these two modules. (4) Forty-four module core hub genes were identified. We validated the expression of unreported stroke-associated core hubs or human stroke-associated core hubs. Zfp36 mRNA was upregulated in permanent MCAO; Rhoj, Nfkbiz, Ms4a6d, Serpina3n, Adamts-1, Lgals3, and Spp1 mRNAs were upregulated in both transient MCAO and permanent MCAO; and NFKBIZ, ZFP3636, and MAFF proteins, unreported core hubs implicated in negative regulation of inflammation, were upregulated in permanent MCAO, but not in transient MCAO. Collectively, these results expand our knowledge of the genetic profile involved in brain ischemia and reperfusion, highlighting the crucial role of inflammatory disequilibrium in brain ischemia.
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http://dx.doi.org/10.1007/s12035-023-03275-1 | DOI Listing |
Medicine (Baltimore)
September 2025
Dongzhimen Hospital, Beijing University of Chinese Medicine, Beijing, China.
Epigallocatechin-3-gallate (EGCG), the predominant bioactive compound in green tea, has shown promise in lung cancer treatment; however, its molecular targets and antitumor mechanisms remain unclear. In this study, the therapeutic potential of EGCG against non-small cell lung (NSCLC) was evaluated, core targets were prioritized via network pharmacology, and molecular docking were employed to decipher the potential mechanism of action. Using bioinformatics, molecular docking, and functional enrichment analyses, 224 NSCLC-related targets were identified, with TP53, STAT3, AKT1, IL6, HSP90AA1, and JUN emerging as central hubs.
View Article and Find Full Text PDFCell
September 2025
Molecular Systems Biology Unit, European Molecular Biology Laboratory, Heidelberg, Baden-Württemberg 69117, Germany; Department of Pharmacology, University of California, San Diego, La Jolla, CA 92093, USA; Metabolomics Core Facility, European Molecular Biology Laboratory, Heidelberg, Baden-Württe
Single-cell metabolomics (SCM) promises to reveal metabolism in its complexity and heterogeneity, yet current methods struggle with detecting small-molecule metabolites, throughput, and reproducibility. Addressing these gaps, we developed HT SpaceM, a high-throughput SCM method combining cell preparation on custom glass slides, small-molecule matrix-assisted laser desorption ionization (MALDI) imaging mass spectrometry (MS), and batch processing. We propose a unified framework covering quality control, characterization, structural validation, and differential and functional analyses.
View Article and Find Full Text PDFWorld J Methodol
December 2025
Medical School, Hunan Vocational and Technical College of Environmental Biology, Hengyang 421005, Hunan Province, China.
Hengyang City faces challenges from rapid aging, including weakened family care and a shortage of resources. The "three social linkage" mechanism integrates community of practice, social organizations, and professional support to improve health services for the aged. However, issues like low smart device use and talent shortages persist.
View Article and Find Full Text PDFJ Dent Educ
September 2025
State Key Laboratory of Oral Diseases& National Center For Stomatology & National Clinical Research Center for Oral Diseases, West China Hospital of Stomatology, Sichuan University, Chengdu, China.
Background: The integration of artificial intelligence (AI), virtual reality (VR), augmented reality (AR), and other digital technologies in dental education has gained significant attention, revolutionizing teaching methodologies, clinical training, and student assessment. However, despite the growing body of literature, there is no comprehensive bibliometric analysis mapping influential studies, research trends, and emerging topics in this field. This study aims to analyze the structure, hotspots, and evolution of digital technology research in dental education through bibliometric methods.
View Article and Find Full Text PDFFront Immunol
September 2025
The Seventh Clinical College of Guangzhou University of Chinese Medicine, Shenzhen, Guangdong, China.
Super-enhancers (SEs) are dynamic chromatin structures that function as epigenetic hubs, orchestrating cell-type-specific transcriptional programs crucial for immune cell differentiation, functional specialization, and adaptive responses. These enhancer clusters integrate transcription factor (TF) networks, chromatin-modifying signals, and three-dimensional genome organization to govern lineage commitment, effector function acquisition, and metabolic reprogramming while enabling plasticity in response to environmental cues. SEs exhibit spatiotemporal regulatory properties, such as chromatin looping, phase-separated condensate formation, and stimulus-driven enhancer-promoter rewiring, all of which stabilize transcriptional outputs vital for immune homeostasis.
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