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Vascular endothelial growth factor-C (VEGF-C) acts primarily on endothelial cells, but also on non-vascular targets, for example in the CNS and immune system. Here we describe a novel, unique VEGF-C form in the human reproductive system produced via cleavage by kallikrein-related peptidase 3 (KLK3), aka prostate-specific antigen (PSA). KLK3 activated VEGF-C specifically and efficiently through cleavage at a novel N-terminal site. We detected VEGF-C in seminal plasma, and sperm liquefaction occurred concurrently with VEGF-C activation, which was enhanced by collagen and calcium binding EGF domains 1 (CCBE1). After plasmin and ADAMTS3, KLK3 is the third protease shown to activate VEGF-C. Since differently activated VEGF-Cs are characterized by successively shorter N-terminal helices, we created an even shorter hypothetical form, which showed preferential binding to VEGFR-3. Using mass spectrometric analysis of the isolated VEGF-C-cleaving activity from human saliva, we identified cathepsin D as a protease that can activate VEGF-C as well as VEGF-D.
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http://dx.doi.org/10.7554/eLife.44478 | DOI Listing |
Adv Sci (Weinh)
September 2025
Department of Pharmaceutics, Shandong Key Laboratory of Targeted Drug Delivery and Advanced Pharmaceutics, NMPA Key Laboratory for Technology Research and Evaluation of Drug Products, Key Laboratory of Chemical Biology (Ministry of Education), State Key Laboratory of Discovery and Utilization of Fun
The effectiveness of antitumor immunotherapy is limited to immune cell infiltration into solid tumors, primarily via T-cell migration through tumor blood vessels. This study introduces a multifunctional nitric oxide (NO)-driven hollow gold Janus nanomotor (HAM) designed to promote tumor blood vessel normalization and increase T-cell infiltration, thereby enhancing the immune response against tumors. It is revealed that self-generated NO facilitates the penetration of HAM into tumors and increases pericyte coverage of blood vessels, thereby enhancing intratumoral T-cell infiltration.
View Article and Find Full Text PDFNeuropharmacology
September 2025
Department of Anesthesiology, Hebei Medical University Third Hospital, Shijiazhuang, 050051, Hebei Province, PR China. Electronic address:
Postoperative cognitive dysfunction (POCD) occurs in elderly surgical patients as a common complication and manifests as cognitive decline. It is associated with neuroinflammation, microglial activation, and impaired metabolic waste clearance-key mechanisms underlying POCD. Meningeal lymphatic vessels (MLVs) facilitate the drainage of cerebrospinal fluid (CSF) and interstitial fluid (IF), regulating brain immune responses and clearing metabolic waste, immune cells, and antigens, thus modulating neuroinflammation.
View Article and Find Full Text PDFFront Immunol
August 2025
Department of General Surgery, Shanghai Ninth People's Hospital, Shanghai Jiaotong University School of Medicine, Shanghai, China.
Introduction: Formononetin regulates intrahepatic fibrogenesis and macrophage polarization to improve portal pressure and liver function in rats with cirrhotic PHT through SMAD3, STAT1, STAT3 and GSK-3β signaling pathways, and modulates lymphangiogenesis through direct action and macrophage polarization-mediated indirect effects. Formononetin has the potential function of treating cirrhotic PHT.
Background And Aims: Formononetin (FN) has been reported to have anti-fibrotic effects in the kidneys and anti-M1 polarization effects on macrophages.
Mediators Inflamm
August 2025
Department of Anesthesiology, Jiangsu Province Hospital, The First Affiliated Hospital of Nanjing Medical University, Nanjing 210029, China.
The role of meningeal lymphatic vessels (mLVs) in neurodegenerative diseases has been increasingly recognized. However, their involvement in lipopolysaccharide (LPS)-induced neuroinflammation and associated depression-like behaviors remains poorly understood. Given that impaired clearance of neurotoxic substances can prolong central nervous system (CNS) inflammation, investigating the function of mLVs in this context may offer new insights into the mechanisms underlying acute neuroinflammation and provide potential therapeutic targets.
View Article and Find Full Text PDFInt J Mol Sci
July 2025
Department of Biochemistry, Showa Medical University Graduate School of Medicine, Tokyo 142-8555, Japan.
Recent advances have highlighted the multifaceted roles of the lymphatic vasculature in immune cell trafficking, immunomodulation, nutrient transport, and fluid homeostasis. Beyond these physiological functions, lymphatic vessels are critically involved in pathologies such as cancer metastasis and lymphedema, rendering their structural and functional regulation of major interest. Emerging evidence suggests that limited proteolysis is a key regulatory mechanism for lymphatic vascular function.
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