Amerikanische Gesellschaft für Hirudotherapie

A novel protease-activated receptor 1 inhibitor from the leech Whitmania pigra

Discovery study published in Chin J Nat Med (2019)

Zuletzt aktualisiert: June 18, 2026Geprüft von: ASH Editorial Board
Research article — evidence reviewArticle reference
Evidence: Preclinical (animal)ArzneimittelentwicklungSpeichel-PharmakologieRen SH et al. · Chinese journal of natural medicines, 2019

Abstract

Whitmania pigra has been used as a traditional Chinese medicine (TCM) for promoting blood circulation, alleviating blood coagulation, activating meridians and relieving stasis for several hundred years. However, the therapeutic components of this species, especially proteins and peptides were poorly exploited. Until now only a few of them were obtained by using chromatographic isolation and purification. In recent decade, transcriptome techniques were rapidly developed, and have been used to fully reveal the functional components of many animal venoms. In the present study, the cDNA of the salivary gland of Whitmania pigra was sequenced by illumina and the transcriptome was assembled by using Trinity. The proteome were analysed by LC-MS/MS. Based on the data of the transcriptome and the proteome, a potential antiplatelet protein named pigrin was found. Pigrin was cloned and expressed using P. pastoris GS115. The antiplatelet andantithrombotic bioactivities of pigrin were tested by using aggregometer and the rat arterio-venous shunt thrombosis model, respectively. Thebleeding time of pigrin was measured by a mice tail cutting method. The docking of pigrin and protease-activated receptor 1 (PAR1) or collagen were conducted using the ZDOCK Server. Pigrin was able to selectively inhibit platelet aggregation stimulated by PAR1 agonist and collagen. Pigrin attenuated thrombotic formation in vivo in rat, while did not prolong bleeding time at its effective dosage. There are significant differences in the key residues participating in binding of Pigrin-Collagen complex from Pigrin-PAR1 complex. In conclusion,a novel PAR1 inhibitor pigrin was found from the leech Whitmania pigra. This study helped to elucidate the mechanism of the leech for the treatment of cardiovascular disorder.

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

Publication typeJournal Article
Indexed MeSH termsAmino Acid SequenceAnimalsDisease Models, AnimalFibrinolytic AgentsGene Expression ProfilingLeechesMice, Inbred ICRModels, MolecularPlatelet AggregationPlatelet Aggregation InhibitorsProteomicsRats, Sprague-Dawley

Zusammenfassung

Discovery of pigrin, a novel PAR1 inhibitor from Whitmania pigra leech salivary gland via transcriptomic and proteomic profiling, with antithrombotic activity in vivo without prolonging bleeding time.

Warum dies für die Hirudotherapie relevant ist

This study used transcriptomic (Illumina/Trinity) and proteomic (LC-MS/MS) analysis of Whitmania pigra salivary glands to identify a potential antiplatelet protein, pigrin, which was cloned and expressed in Pichia pastoris; pigrin selectively inhibited PAR1-agonist- and collagen-stimulated platelet aggregation, attenuated thrombosis in a rat arteriovenous shunt model, and did not prolong bleeding time in mice at effective doses. For ASH, this is relevant because it functionally characterizes a novel leech-derived PAR1 inhibitor with antithrombotic activity, expanding the known repertoire of bioactive leech-secretome proteins. Honest caveat: findings are preclinical (in-vitro and rodent models), involve a species used in traditional Chinese medicine rather than Hirudo, and do not establish clinical efficacy or safety in humans.

Zitation

A novel protease-activated receptor 1 inhibitor from the leech Whitmania pigra.

Ren SH et al. · Chinese journal of natural medicines, 2019

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