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Although lipid metabolism is a critical factor in the pathogenesis of diabetic retinopathy (DR), the connection between lipidome and DR is still a subject of debate. We aimed to demonstrate that lipidome could serve as novel biomarkers for DR and elucidate the mediating role of inflammatory factors. Data for our investigation are available from the GWAS catalogue and FinnGen Biobank. The bidirectional Mendelian randomization (MR) analyses were conducted to assess the "total effect" between lipidome and DR and its subtypes. Subsequently, the mediation analyses were performed to explore the involvement of circulating inflammatory proteins in mediating the connection between them. Mediation proportion was calculated to measure the contribution of inflammatory factors to the overall effect. Ultimately, a battery of sensitivity tests proceeded to examine the dependability of the findings. This study has revealed a causal relationship between lipidome and different stages of DR. Additionally, we have successfully discovered a range of new lipids that protect against DR and have the potential to serve as new markers. This study also highlights the important role of inflammatory factors in elucidating the protective mechanisms of lipids against DR and provides new perspectives on lipidomic-based treatments and cytokine-targeted interventions for DR.
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http://dx.doi.org/10.1111/jcmm.70614 | DOI Listing |
Apoptosis
September 2025
Key Laboratory of Emergency and Trauma of the Ministry of Education, Department of Interventional Radiology and Vascular Surgery, First Affiliated Hospital of Hainan Medical University, Hainan Medical University, 31 Longhua Road, Longhua District, Haikou City, Hainan Province, China.
The singular forms of programmed cell death (PCD), including pyroptosis, apoptosis, and necroptosis, are inadequate for comprehensively elucidating the complex pathological mechanisms underlying ischemic diseases. PANoptosis is a unique lytic, innate immune, and inflammatory cell death pathway, initiated by innate immune sensors and driven by caspases and RIPKs through PANoptosome complexes. In diseases like cerebral ischemia, retinal ischemia, myocardial ischemia, renal ischemia, and spinal cord ischemia, targeting key regulatory factors of PANoptosis can help mitigate tissue damage.
View Article and Find Full Text PDFFuture Sci OA
December 2025
Clinical Research Institute, National Hospital Organization Kyoto Medical Center, Kyoto, Japan.
Background: Smoking induces inflammation in the heart and intima layer of blood vessels by activating nuclear factor kappa B, which controls the transcription of immunoglobulin free light chain (FLC)-κ. FLC levels are indicative of higher mortality in the overall population and poorer prognoses in cardiovascular diseases. This study aimed to analyze the effect of smoking cessation (SC) on the levels of FLCs and markers of inflammation and heart failure.
View Article and Find Full Text PDFInflamm Bowel Dis
September 2025
Gut Microbes and Health Programme, Quadram Institute Bioscience, Norwich Research Park, Norwich, United Kingdom.
Background: Intestinal cells receive incoming signals from neighboring cells and microbial communities. Upstream signaling pathways transduce these signals to reach transcription factors (TFs) that regulate gene expression. In inflammatory bowel disease (IBD), most single nucleotide polymorphisms (SNPs) are in non-coding genomic regions containing TF binding sites.
View Article and Find Full Text PDFFarm Hosp
September 2025
Servicio de Farmacia, Hospital Universitario de Toledo, Toledo, Spain.
Objective: To standardize the drug dilutions administered intravenously in a Pediatric Intensive Care Unit and to characterize these dilutions based on their pH, osmolarity, and vesicant nature. This aims to guide the selection of the most appropriate vascular access device, minimizing associated complications, and preserving the patient's venous capital.
Methods: Through a consensus between Pharmacy and Pediatric Services, the most frequently administered intravenous drugs in the Pediatric Intensive Care Unit were selected.
J Allergy Clin Immunol
September 2025
National Heart and Lung Institute, Imperial College London, London, United Kingdom; Frankland and Kay Allergy Centre, UK NIHR Imperial Biomedical Research Centre, United Kingdom.
Recent advancements in genomics and "omic" technologies have ushered in a transformative era referred to as personalized or precision medicine. This innovative approach considers the unique genetic profiles of individuals, along with a range of variability factors, to devise tailored disease treatments and prevention strategies that cater to the distinct needs of each patient. Although the terms personalized medicine and precision medicine are frequently utilized interchangeably, it is essential to delineate the subtle distinctions between them.
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