ArticleCellular & molecular biology letters2025
Tumor-derived exosomal KPNA2 activates fibroblasts and interacts with KIFC1 to promote bladder cancer progression, a process inhibited by miR-26b-5p.
Article in Cellular & molecular biology letters, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers, 1 of them a synthesis that pooled it.
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Who cites it
10 citing papers in PubMed, 1 synthesis or guideline pooled it.
- Tumor-derived extracellular vesicles and genitourinary cancers: from biological mechanisms to clinical applications.Frontiers in bioengineering and biotechnology · 2025Pooled it
- Unknotting the Role of circRNAs and IGF2BP3 in Alzheimer's Disease.Cellular and molecular neurobiology · 2026Review
- The role of KPNA3 in multiple myeloma: implications for targeting nuclear import.Apoptosis : an international journal on programmed cell death · 2026Article
- Inactivation of AXL in Cardiac Fibroblasts Alleviates Right Ventricular Remodeling in Pulmonary Hypertension.Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2026Article
- Decoding the role of exosomes in bladder cancer: focusing on tumor progression and immune microenvironment modulation.Frontiers in oncology · 2026Review
- Computational Analysis of Exosome-Derived Signature in TNBC: Integrating Single-Cell and Bulk Transcriptomics for Prognosis Prediction.Clinical and translational science · 2025Article
- Circulating Biomarkers for the Early Diagnosis of Alzheimer's Disease.International journal of molecular sciences · 2025Review
- Extracellular matrix dynamics in tumor immunoregulation: from tumor microenvironment to immunotherapy.Journal of hematology & oncology · 2025Review
- Identification of telomere maintenance-driven molecular subtypes in hepatocellular carcinoma: implications for prognosis and targeted therapy via KPNA2.Discover oncology · 2025Article
- LncRNAFrontiers in oncology · 2025Article
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Authors and funding
10 authors.
Funding
Abstract
backgroundRecent studies have illuminated the complexities of treating advanced bladder cancer (BCa), underscoring the importance of comprehending its molecular mechanisms for creating novel therapies. While the role of Karyopherin a2 (KPNA2) in promoting BCa growth is established, the precise mechanism remains elusive.
methodsTo investigate the regulatory role of KPNA2 in BCa, we employed a comprehensive approach integrating clinical case data and bioinformatics analysis to evaluate the expression of KPNA2 in BCa tissues. Mechanisms promoting cancer by KPNA2 were examined using both in vivo and in vitro models.
resultsOur research reveals that miR-26b-5p acts as an anticancer factor by targeting and inhibiting KPNA2 expression. Furthermore, we have observed that the interaction between KPNA2 and Kinesin Family Member C1 (KIFC1) facilitates the transition of BCa cells into the G2/M phase, thereby promoting tumor advancement via activation of the Phosphoinositide 3-kinase (PI3K)- Protein Kinase B (AKT) pathway. Importantly, this investigation is the first to identify KPNA2 expression in exosomes originating from BCa tissues. Plasma exosomes from patients with BCa exhibited notably increased levels of KPNA2 compared with healthy controls, suggesting KPNA2 as a potential new tumor indicator. Additionally, KPNA2 from BCa cells triggered the conversion of fibroblasts into cancer-associated fibroblasts (CAFs), which secreted elevated levels of interleukin-6 (IL-6), contributing to a tumor-supporting environment.
conclusionsThese findings suggest that KPNA2 is a key gene that promotes BCa progression, can potentially be a novel tumor marker, and may serve as a new therapeutic target for BCa.
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