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Background: Global warming exacerbates heatstroke, increasing its severity and associated health risks, including fatal kidney damage. Predicting post-heatstroke organ injury remains difficult, delaying timely medical intervention. This study aims to identify potential blood biomarkers that reflect organ stress and recovery status following heatstroke.
Methods: Plasma samples (n = 12) from clinically diagnosed classical (non-exertional) heatstroke patients were collected at diagnosis and recovery. Two-dimensional gel electrophoresis was used to analyze protein expression, identifying 359 protein spots. Selected proteins showing differential expression were validated by Western blotting.
Results: Here, five proteins-alpha-1 antitrypsin, alpha-1 microglobulin/bikunin precursor, apolipoprotein A-IV, clusterin, and complement component 2-show significant changes between the two timepoints. These proteins are linked to inflammatory, coagulation, and lipid metabolism pathways. Alpha-1 antitrypsin, alpha-1 microglobulin, and complement component 2 may reflect the resolution of inflammation, while apolipoprotein A-IV and clusterin indicate renal stress. The alpha-1 microglobulin-IgA complex may exert anti-inflammatory effects. Complement component 2, an initiator of the complement cascade, has not been previously reported to be associated with heat stress.
Conclusions: The findings suggest that these proteins may serve as blood biomarkers to assess heatstroke severity and monitor recovery. Their clinical application could improve early detection of organ damage and guide intervention strategies.
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http://dx.doi.org/10.1038/s43856-025-01075-3 | DOI Listing |
Mol Ther
September 2025
Department of Health Management & Institute of Health Management, Sichuan Provincial People's Hospital, University of Electronic Science and Technology of China, Chengdu 610054, China; Laboratory of Aging Research, School of Medicine, University of Electronic Science and Technology of China, Chengdu
Brain aging is a major risk factor for cognitive decline and neurodegenerative diseases, driven by synaptic loss, reduced synaptic function, and inflammation. However, the molecular mechanisms underlying these dysfunctions remain unclear. Here, we conducted comparative transcriptomic analyses of brain regions (cortex and hippocampus) and kidney tissues, a peripheral organ with documented age-related dysfunction.
View Article and Find Full Text PDFCancer Immunol Immunother
September 2025
Department of Medical Oncology, University Medical Center Groningen, University of Groningen, Groningen, The Netherlands.
Whole blood (WB) transcriptomics offers a minimal-invasive method to assess patients' immune system. This study aimed to identify transcriptional patterns in WB associated with clinical outcomes in patients treated with immune checkpoint inhibitors (ICIs). We performed RNA-sequencing on pre-treatment WB samples from 145 patients with advanced cancer.
View Article and Find Full Text PDFNucl Med Biol
September 2025
The Russell H. Morgan Department of Radiology and Radiological Science, Johns Hopkins University, Baltimore, MD, USA. Electronic address:
Background: Positron-emission tomography (PET) imaging of the complement system could advance understanding of the innate immune system in central nervous system (CNS) diseases and development of new drugs. The goal of this study was to develop a PET radiotracer targeting the C3a receptor (C3aR) of the complement system.
Methods: C3aR radiotracer [F]1 was synthesized in one step.
Background: Transforming Clinical Practice Guideline (CPG) recommendations into computer readable language is a complex and ongoing process that requires significant resources, including time, expertise, and funds. The objective is to provide an extension of the widely used GIN-McMaster Guideline Development Checklist (GDC) and Tool for the development of computable guidelines (CGs).
Methods: Based on an outcome from the Human Centered Design (HCD) workshop hosted by the Guidelines International Network North America (GIN-NA), a team was formed to develop the checklist extension.
Neuropsychopharmacology
September 2025
Neuroscience Center, HiLIFE, University of Helsinki, Helsinki, Finland.
Chronic treatment with fluoxetine, a widely prescribed selective serotonin reuptake inhibitor (SSRI), is known to promote neural plasticity. The role of fluoxetine in plasticity has been particularly tied to parvalbumin-positive interneurons, a key population of GABAergic neurons that regulate inhibitory tone and network stability. While our previous studies have highlighted fluoxetine-induced plasticity in the visual cortex and hippocampus, its cell-type-specific effects in the prefrontal cortex (PFC) remain unclear.
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