Thrombin Differentially Modulates the Acute Inflammatory Response to E. coli and S. aureus in Human Whole Blood
Basic science published in J Immunol (2022)
Abstract
Thrombin plays a central role in thromboinflammatory responses, but its activity is blocked in the common ex vivo human whole blood models, making an ex vivo study of thrombin effects on thromboinflammatory responses unfeasible. In this study, we exploited the anticoagulant peptide Gly-Pro-Arg-Pro (GPRP) that blocks fibrin polymerization to study the effects of thrombin on acute inflammation in response to Escherichia coli and Staphylococcus aureus Human blood was anticoagulated with either GPRP or the thrombin inhibitor lepirudin and incubated with either E. coli or S. aureus for up to 4 h at 37°C. In GPRP-anticoagulated blood, there were spontaneous elevations in thrombin levels and platelet activation, which further increased in the presence of bacteria. Complement activation and the expression of activation markers on monocytes and granulocytes increased to the same extent in both blood models in response to bacteria. Most cytokines were not elevated in response to thrombin alone, but thrombin presence substantially and heterogeneously modulated several cytokines that increased in response to bacterial incubations. Bacterial-induced releases of IL-8, MIP-1α, and MIP-1β were potentiated in the thrombin-active GPRP model, whereas the levels of IP-10, TNF, IL-6, and IL-1β were elevated in the thrombin-inactive lepirudin model. Complement C5-blockade, combined with CD14 inhibition, reduced the overall cytokine release significantly, both in thrombin-active and thrombin-inactive models. Our data support that thrombin itself marginally induces leukocyte-dependent cytokine release in this isolated human whole blood but is a significant modulator of bacteria-induced inflammation by a differential effect on cytokine patterns.
Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.
Summary
GPRP-based ex vivo model compared with lepirudin model reveals thrombin differentially modulates bacterial-induced inflammation: enhances IL-8, MIP-1alpha, MIP-1beta in GPRP, elevates IP-10/TNF/IL-6/IL-1beta in lepirudin model.
Why This Matters for Hirudotherapy
This study examined how thrombin modulates acute inflammatory responses to Escherichia coli and Staphylococcus aureus in human whole blood. The researchers compared blood anticoagulated with Gly-Pro-Arg-Pro (GPRP) to blood anticoagulated with the thrombin inhibitor lepirudin to isolate and study thrombin's role in thromboinflammation. Although lepirudin is externally recognized as a leech-derived recombinant protein, the abstract does not state this origin or mention leeches and hirudotherapy. Thus, based strictly on the abstract, there is no explicit link to the leech secretome. The focus is entirely on thrombin's modulation of bacterial inflammation.
Citation
Thrombin Differentially Modulates the Acute Inflammatory Response to E. coli and S. aureus in Human Whole Blood.
Johnson C et al. · Journal of immunology, 2022
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