American Society of Hirudotherapy

The leech product saratin is a potent inhibitor of platelet integrin alpha2beta1 and von Willebrand factor binding to collagen

Research article published in FEBS J (2007)

Last Updated: June 18, 2026Reviewed by: ASH Editorial Board
Research article — evidence reviewArticle reference
Evidence: Preclinical (animal)Salivary PharmacologyDrug DevelopmentWhite TC et al. · FEBS J, 2007

Abstract

Subendothelial collagen plays an important role, via both direct and indirect mechanisms, in the initiation of thrombus formation at sites of vascular injury. Collagen binds plasma von Willebrand factor, which mediates platelet recruitment to collagen under high shear. Subsequently, the direct binding of the platelet receptors glycoprotein VI and alpha2beta1 to collagen is critical for platelet activation and stable adhesion. Leeches, have evolved a number of inhibitors directed towards platelet-collagen interactions so as to prevent hemostasis in the host during hematophagy. In this article, we describe the molecular mechanisms underlying the ability of the leech product saratin to inhibit platelet binding to collagen. In the presence of inhibitors of ADP and thromboxane A2, both saratin and 6F1, a blocking alpha2beta1 mAb, abrogated platelet adhesion to fibrillar and soluble collagen. Additionally, saratin eliminated alpha2beta1-dependent platelet adhesion to soluble collagen in the presence of an Src kinase inhibitor. Moreover, saratin prevented platelet-rich plasma adhesion to fibrillar collagen, a process dependent upon both alpha2beta1 and von Willebrand factor binding to collagen. Furthermore, saratin specifically inhibited the binding of the alpha2 integrin subunit I domain to collagen, and prevented platelet adhesion to collagen under flow to the same extent as observed in the presence of a combination of mAbs to glycoprotein Ib and alpha2beta1. These results demonstrate that saratin interferes with integrin alpha2beta1 binding to collagen in addition to inhibiting von Willebrand factor-collagen binding, presumably by binding to an overlapping epitope on collagen. This has significant implications for the use of saratin as a tool to inhibit platelet-collagen interactions.

Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.

Publication typeJournal ArticleResearch Support, Non-U.S. Gov't
Indexed MeSH termsAnimalsBlood PlateletsCell AdhesionCollagenIntegrin alpha2beta1LeechesProtein BindingSalivary Proteins and Peptidesvon Willebrand Factor

Summary

Subendothelial collagen plays an important role, via both direct and indirect mechanisms, in the initiation of thrombus formation at sites of vascular injury.

Why This Matters for Hirudotherapy

This study characterizes the molecular mechanisms by which saratin, a leech salivary product, inhibits platelet-collagen interactions. Using platelet adhesion assays, the authors show that saratin abrogated alpha2beta1 integrin-dependent platelet adhesion to fibrillar and soluble collagen, prevented platelet-rich plasma adhesion to fibrillar collagen, specifically inhibited binding of the alpha2 integrin I domain to collagen, and blocked platelet adhesion under flow similarly to combined antibodies against glycoprotein Ib and alpha2beta1. Saratin also inhibited von Willebrand factor-collagen binding. This is directly relevant to ASH's domain as a mechanistic study of a defined leech secretome component. The caveat is that this is preclinical in-vitro research; no live leeches, hirudotherapy, or clinical outcomes are involved.

Citation

The leech product saratin is a potent inhibitor of platelet integrin alpha2beta1 and von Willebrand factor binding to collagen.

White TC et al. · FEBS J, 2007

Added to ASH library: May 27, 2026 · Site last updated: June 18, 2026

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