Evaluating prodrug characteristics of a novel anticoagulant fusion protein neorudin, a prodrug targeting release of hirudin variant 2-Lys47 at the thrombosis site
Drug-development study published in European Journal of Pharmaceutical Sciences (2018)
Abstract
Recombinant neorudin (EPR-hirudin, EH), a low-bleeding anticoagulant fusion protein, is an inactive prodrug designed to be converted to the active metabolite, hirudin variant 2-Lys47 (HV2), locally at the thrombus site by FXa and/or FXIa, following activation of the coagulation system. Our aim was to evaluate the prodrug characteristics of EH by comparing the biotransformation of EH and HV2 in biological matrices, including rat blood, liver, and kidney homogenates, demonstrating the cleavage of EH to HV2 by FXa and FXIa, and comparing the conversion of EH to HV2 between fresh whole blood and whole-blood clot homogenate, using ultra-performance liquid chromatography-mass spectrometry (UPLC-MS/MS). Both EH and HV2 were stable in blood and unstable in the liver and kidney homogenates. Eight EH metabolites and eight HV2 metabolites identified as N-terminal fragments were found in the liver and kidney. C-terminal proteolysis is therefore the major metabolic pathway, with serine/cysteine carboxypeptidases and metallocarboxypeptidases being responsible for the degradation of EH and HV2 in the liver and kidney, respectively. EH was cleaved to release HV2 by FXIa. Higher levels of HV2 were produced from EH in the whole-blood clot homogenate, in which the coagulation system was activated compared with those in fresh whole blood. In conclusion, the metabolism of EH and HV2 shares the same cleavage pattern, and EH is transformed into HV2 when the coagulation system is activated, where FXIa is a specific enzyme. Our in vitro study revealed the anticipated prodrug characteristics of EH newly designed as an inactive prodrug of hirudin.
Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.
Zusammenfassung
Mechanism study demonstrating neorudin is a thrombosis-activated prodrug releasing hirudin variant 2-Lys47 selectively at clot site via thrombin cleavage — improves bleeding-risk profile.
Warum dies für die Hirudotherapie relevant ist
Diese Studie untersuchte die Prodrug-Eigenschaften von rekombinantem Neorudin (EPR-hirudin, EH), das im Abstract als ‚Low-bleeding-Antikoagulans-Fusionsprotein' und inaktive Prodrug beschrieben wird, die den aktiven Metaboliten Hirudin-Variante 2-Lys47 (HV2) am Thrombusort lokal über FXa- und/oder FXIa-Spaltung freisetzen soll. Unter Verwendung von Rattenblut-, Leber- und Nierenhomogenaten sowie UPLC-MS/MS zeigten die Autoren, dass EH und HV2 ein gemeinsames C-terminales Spaltungsmuster aufweisen, EH zu HV2 umgewandelt wird, wenn die Gerinnung aktiviert ist (speziell durch FXIa), und in Clot-Homogenat höhere HV2-Spiegel erzeugt wurden als in frischem Vollblut. Das Abstract verweist explizit auf Hirudin und ist damit für das ASH-Gebiet relevant. EINSCHRÄNKUNG: Es handelt sich um eine In-vitro-Studie mit Rattengeweben ohne In-vivo- oder klinische Ergebnisse; sie betrifft eine rekombinante pharmazeutische Prodrug und nicht die Blutegeltherapie oder das rohe Blutegelsekretom.
Zitation
Evaluating prodrug characteristics of a novel anticoagulant fusion protein neorudin, a prodrug targeting release of hirudin variant 2-Lys47 at the thrombosis site.
Dong X et al. · European journal of pharmaceutical sciences, 2018
Verwandter klinischer Kontext
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