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Giant cell arteritis (GCA) is a complex inflammatory disease affecting individuals over 50 suggesting a strong link with aging-related immune and vascular changes. However, the precise mechanisms underlying this age-related susceptibility remain poorly understood. Considering the relevance of aging in GCA, genetic factors influencing biological aging markers, such as telomere shortening and epigenetic age acceleration (EAA), might also contribute to its development. This study investigated the shared genetic basis between GCA and these markers to enhance understanding of the role of aging in this vasculitis. Data from approximately 6.6 million variants obtained from previously published genome-wide association studies (GWASs) of GCA (3,498 cases and 15,550 controls), telomere length (472,174 individuals), and EAA (34,710 individuals) were meta-analysed using ASSET. Significant variants (p<5×10) were functionally annotated, and causal genes were prioritized using FUMA. Potential therapeutic candidates were identified through drug repurposing. This study identified 21 genetic variants shared between GCA and at least one aging marker. Two pleiotropic signals were annotated at PTPN22 and PLG, known risk factors for GCA, whereas the remainder represent potentially new susceptibility loci for this vasculitis. Several prioritized causal genes, such as SERPING1, SAR1B, SESN1, and SMC4, are involved in both inflammation and senescence, shedding light on the molecular pathways linking aging and GCA. Interestingly, expression levels of some of the prioritized genes PDE1B, ATXN2, and CNEP1R1, were dysregulated in immune cells from active patients. Drug repurposing analysis highlighted promising therapeutic candidates for GCA, including sulfasalazine, an anti-inflammatory agent, and investigational drugs targeting inflammatory pathways like NF-κB. These findings uncover significant genetic overlap between GCA and aging markers, offering insights into shared molecular pathways and potential new therapies targeting both inflammation and cellular senescence.
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http://dx.doi.org/10.14336/AD.2025.0609 | DOI Listing |
Cancer Lett
September 2025
Cancer Center, Shanghai General Hospital of Nanjing Medical University, Shanghai, China; Shanghai Key Laboratory for Pancreatic Diseases and Cancer Center, Shanghai, China. Electronic address:
Radiotherapy, a pivotal treatment for colorectal cancer, is compromised by tumor repopulation, which is characterized by accelerated growth and increased treatment resistance. Although radiation-induced DNA breaks eliminate most cells, a subset of polyploid giant cancer cells (PGCCs) evade death through massive genomic amplification, subsequently undergoing depolyploidization via a viral budding-like process to generate proliferative progeny. Critically, these PGCCs drive tumor repopulation and underpin therapeutic failure.
View Article and Find Full Text PDFBiophys J
September 2025
Department of Bionanoscience and Kavli Institute of Nanoscience Delft, Delft University of Technology, Delft, 2629 HZ, The Netherlands. Electronic address:
Plectin is a giant protein of the plakin family that crosslinks the cytoskeleton of mammalian cells. It is expressed in virtually all tissues and its dysfunction is associated with various diseases such as skin blistering. There is evidence that plectin regulates the mechanical integrity of the cytoskeleton in diverse cell and tissue types.
View Article and Find Full Text PDFJ Cell Mol Med
September 2025
Department of Stomatology, Liaocheng People's Hospital, Liaocheng, Shandong, People's Republic of China.
The important role of the EphrinB2-EphB4 signalling pathway in bone remodelling has been demonstrated, while its effect on inflammatory bone defect regeneration remains poorly understood. This study was to assess the effect of EphB4-EphrinB2 signalling on inflammation-mediated bone defect repair in murine models. The modelling method of inflammation-mediated bone defect in mice was established by intraperitoneally injecting different concentrations of TNF-α.
View Article and Find Full Text PDFCell Death Dis
September 2025
CAS Key Laboratory of Tissue Microenvironment and Tumor, Shanghai Institute of Nutrition and Health, University of Chinese Academy of Sciences, Chinese Academy of Sciences, Shanghai, China.
Cancer Lett
September 2025
Fox Chase Cancer Center, Protocol Support Laboratory, 333 Cottman Ave., Philadelphia, PA 19111, USA.
Historically, polyploid giant cancer cells (PGCCs) within tumors have been ignored as superfluous inflammatory refuse with no intrinsic clinical or biological relevance. However recently, multiple studies have described the existence PGCCs in solid tumor masses that appear to correlate with tumor progression, and can also appear in blood circulation as cancer associated macrophage like cells (CAMLs). In an effort to understand the clinical and biological role of CAMLs (i.
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