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Shuang Guo

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Open access Aug 2026

Identification of candidate macrophage-ferroptosis crosstalk genes associated with immune infiltration in myocardial infarction: A bioinformatics analysis

Globally, myocardial infarction (MI) remains a major cause of morbidity and mortality. Macrophage-mediated inflammation and ferroptosis-related stress responses have both been implicated in MI; however, transcriptomic identification of macrophage- and ferroptosis-related candidate genes requires rigorous control of false-positive findings. In this revised study, two peripheral blood transcriptomic datasets, GSE29532 and GSE48060, were integrated after probe annotation, independent normalization, merging based on common genes, and ComBat batch correction. Batch-correction quality was evaluated using both visualization and quantitative metrics. Differential expression analysis was performed using the limma package with adj.P.Val < 0.05 as the primary threshold. A total of 213 differentially expressed genes were identified, including 101 upregulated and 112 downregulated genes. Intersecting FDR-supported DEGs with macrophage-related and ferroptosis-related gene sets identified seven primary MFRDEGs: SMAD7, MMD, PTPN6, DDIT3, AKR1C3, PHF21A, and ACSL1. GO enrichment analysis was interpreted as exploratory functional annotation because of the small input gene set, whereas whole-ranked-gene GSEA highlighted TNFA/NF-kB inflammatory signaling, complement-related innate immune signaling, and reactive oxygen species-related transcriptional programs. Because the revised PPI analysis did not produce reliable interactions among the seven primary MFRDEGs, candidate gene prioritization was performed instead of defining interaction-derived hub genes. ssGSEA suggested a robust neutrophil-related alteration in MI, while macrophage- and monocyte-related signatures showed trend-level changes after FDR correction. Exploratory ROC analysis was performed for selected candidate genes. RT-qPCR validation further showed that SMAD7, PTPN6, DDIT3, PHF21A, and ACSL1 were increased, whereas MMD and AKR1C3 were decreased in AMI peripheral blood samples, consistent with the transcriptomic results. These findings provide FDR-supported candidate-level evidence linking macrophage- and ferroptosis-related transcriptional alterations to immune signatures in MI and warrant further validation in larger cohorts and mechanistic studies.

Guo-Qin Wang, Zhulin Zhang, Guan-Rui Yang et al. · 0 citations
Review Aug 2026

Advances in the Treatment of Diabetic Kidney Disease With Traditional Chinese Medicine.

Diabetic kidney disease (DKD) persists as the predominant etiology of end-stage renal disease globally. Despite advances in conventional pharmacotherapies, which primarily target single pathogenic pathways, a considerable residual risk of renal function decline and end-stage renal disease progression remains unresolved, highlighting the need for alternative therapeutic paradigms. This review involves dissecting and integrating mechanistic insights derived from preclinical investigations, including in vitro cellular models, in vivo animal models of DKD, and molecular biology-based analyses. It uses Tangshen formula, a classic traditional Chinese medicine (TCM) for DKD, to detail TCM's protective mechanisms and concisely summarizes the DKD-related preclinical progress of other TCMs over 5 years. Unlike monotarget strategies, TCM interventions exert synergistic effects across multiple organ systems: they reshape the renal microenvironment by mitigating oxidative stress and extracellular matrix accumulation, reprogram hepatic glucose and lipid metabolism to alleviate insulin resistance, and fortify the intestinal mucosal barrier to prevent endotoxemia-induced systemic inflammation. At the microscopic and molecular levels, these TCM-derived agents orchestrate coordinated crosstalk among key pathogenic cascades, including chronic inflammation, renal fibrosis, gut microbiota dysbiosis, metabolic flux dysregulation, microcirculatory impairment, and hypoxic injury. By targeting these interconnected pathways simultaneously, TCM facilitates the restoration of systemic homeostasis, thereby addressing the complex, multifactorial pathogenesis of DKD more comprehensively than pathway-specific interventions.

Li Jiang, Shuang Guo, Yufei Zhang et al. · 0 citations