Objective: Thrombin is generated in significant quantities during cardiopulmonary bypass and mediates adverse events, such as platelet aggregation and proinflammatory responses, through activation of the high-affinity thrombin receptor protease-activated receptor 1, which is expressed on platelets and endothelium. Thus antagonism of protease-activated receptor 1 might have broad therapeutic significance. Aprotinin, used clinically to reduce transfusion requirements and the inflammatory response to bypass, has been shown to inhibit protease-activated receptor 1 on platelets in vitro and in vivo. Here we have examined whether aprotinin inhibits endothelial protease-activated receptor 1 activation and resulting proinflammatory responses induced by thrombin.

Methods: Protease-activated receptor 1 expression and function were examined in cultured human umbilical vein endothelial cells after treatment with alpha-thrombin at 0.02 to 0.15 U/mL in the presence or absence of aprotinin (200-1600 kallikrein inhibitory units/mL). Protease-activated receptor 1 activation was assessed by using an antibody, SPAN-12, which detects only the unactivated receptor, and thrombin-mediated calcium fluxes. Other thrombin-dependent inflammatory pathways investigated were phosphorylation of the p42/44 mitogen-activated protein kinase, upregulation of the early growth response 1 transcription factor, and production of the proinflammatory cytokine interleukin 6.

Results: Pretreatment of cultured endothelial cells with aprotinin significantly spared protease-activated receptor 1 receptor cleavage (P < .0001) and abrogated calcium fluxes caused by thrombin. Aprotinin inhibited intracellular signaling through p42/44 mitogen-activated protein kinase (P < .05) and early growth response 1 transcription factor (P < .05), as well as interleukin 6 secretion caused by thrombin (P < .005).

Conclusions: This study demonstrates that endothelial cell activation by thrombin and downstream inflammatory responses can be inhibited by aprotinin in vitro through blockade of protease-activated receptor 1. Our results provide a new molecular basis to help explain the anti-inflammatory properties of aprotinin reported clinically.

Download full-text PDF

Source
http://dx.doi.org/10.1016/j.jtcvs.2005.08.050DOI Listing

Publication Analysis

Top Keywords

protease-activated receptor
36
endothelial cells
12
receptor
12
protease-activated
9
aprotinin
8
aprotinin inhibits
8
proinflammatory responses
8
receptor activation
8
calcium fluxes
8
p42/44 mitogen-activated
8

Similar Publications

USP34 regulates endothelial PAR1 mRNA transcript expression and cellular signaling.

Mol Biol Cell

December 2024

Department of Pharmacology, School of Medicine, University of California, San Diego, La Jolla, CA, 92093.

Signaling by G protein-coupled receptors (GPCRs) is regulated by temporally distinct processes including receptor desensitization, internalization, and lysosomal sorting, and are tightly controlled by post-translational modifications. While the role of phosphorylation in regulating GPCR signaling is well studied and established, the mechanisms by which other post-translational modifications, such as ubiquitination, regulate GPCR signaling are not clearly defined. We hypothesize that GPCR ubiquitination and deubiquitination is critical for proper signaling and cellular responses.

View Article and Find Full Text PDF

aPKC/Par3/Par6 polarity complexes regulate podocyte motility and crescent formation in the progression of ANCA-associated vasculitis.

Rheumatology (Oxford)

December 2024

Renal Division, Department of Medicine, Peking University First Hospital, Peking University Institute of Nephrology, Key Laboratory of Renal Disease, Ministry of Health of China, Key Laboratory of Chronic Kidney Disease Prevention and Treatment (Peking University), Ministry of Education, State Key Laboratory of Vascular Homeostasis and Remodeling, Peking University, Beijing, China.

Objectives: Podocyte bridging may be a key initial event occurring early in crescent formation. This study aims to probe the underlying mechanism of atypical protein kinase C (aPKC)/protease-activated receptor 3(Par3)/Par6 polarity complexes on podocyte motility and crescent formation during the progression of antineutrophil cytoplasmic antibody (ANCA)-associated vasculitis (AAV).

Methods: The effects of anti-TNF-α monoclonal antibody (mAb) on the crescent formation, localization and expression of aPKC/Par3/Par6 polarity complexes, and activities of small GTPases (Rho/Rac1/Cdc42) were explored in an AAV mouse model.

View Article and Find Full Text PDF

Quantitative transcriptomics offers a new way to obtain a detailed picture of freshly isolated cells. By direct isolation, the cells are unaffected by in vitro culture, and the isolation at cold temperatures maintains the cells relatively unaltered in phenotype by avoiding activation through receptor cross-linking or plastic adherence. Simultaneous analysis of several cell types provides the opportunity to obtain detailed pictures of transcriptomic differences between them.

View Article and Find Full Text PDF

Background: Treatment of breast cancers with immunotherapy has so far achieved limited success. Traditional immunotherapies focusing on cytotoxic T cells have attained modest success, while the approval of phagocytic checkpoint blockers is still pending. Coagulation proteases are crucial elements pertaining to cancer growth and proliferation, but their relevance in altering the immunological topography in tumours remain largely uncharted.

View Article and Find Full Text PDF

Tissue factor (TF) and protease-activated receptor 2 (PAR2) have been associated with the progression of cancer, while integrins are essential for the adhesion and migration of cancer cells. This study aimed to explore the cross-talk between the TF:FVIIa complex, PAR2 signaling, and the expression of integrin α1 in cervical cancer cells. Utilizing data from The Cancer Genome Atlas (TCGA), the research examined the relationship between the TF and PAR2 genes and the integrin α1 gene (ITGA1) in reproductive cancers, revealing a positive correlation between integrin α1 expression and both TF and PAR2 genes.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!