RGD-hirudin-based low molecular weight peptide prevents blood coagulation via subcutaneous injection
Pharmacology study published in Acta Pharmacologica Sinica (2020)
Abstract
Thromboembolic disease is a common cardio-cerebral vascular disease that threatens human life and health. Thrombin not only affects the exogenous coagulation pathway, but also the endogenous pathway. Thus, it becomes one of the most important targets of anticoagulant drugs. RGD-hirudin is an anticoagulant drug targeting thrombin, but it can only be administered intravenously. We designed a low molecular weight peptide based on RGD-hirudin that could prevent blood clots. We first used NMR to identify the key amino acid residues of RGD-hirudin that interacted with thrombin. Then, we designed a novel direct thrombin inhibitor peptide (DTIP) based on the structure and function of RGD-hirudin using homology modeling. Molecular docking showed that the targeting and binding of DTIP with thrombin were similar to those of RGD-hirudin, suggesting DTIP interacted directly with thrombin. The active amino acids of DTIP were identified by alanine scanning, and mutants were successfully constructed. In blood clotting time tests in vitro, we found that aPTT, PT, and TT in the rat plasma added with DTIP were greatly prolonged than in that added with the mutants. Subcutaneous injection of DTIP in rats also could significantly prolong the clotting time. Thrombelastography analysis revealed that DTIP significantly delayed blood coagulation. Bio-layer interferometry study showed that there were no significant differences between DTIP and the mutants in thrombin affinity constants, suggesting that it might bind to other sites of thrombin rather than to its active center. Our results demonstrate that DTIP with low molecular weight can prevent thrombosis via subcutaneous injection.
Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.
Zusammenfassung
Direct thrombin inhibitor peptide (DTIP) modeled from RGD-hirudin maintained anticoagulant action via subcutaneous (not just IV) administration, significantly prolonging aPTT/PT/TT in rats — first orally-tolerated hirudin-based peptide.
Warum dies für die Hirudotherapie relevant ist
Diese Studie entwarf ein niedermolekulares direktes Thrombin-Inhibitor-Peptid (DTIP) basierend auf der RGD-Hirudin-Struktur und nutzte NMR, Homologiemodellierung und molekulares Docking, um die wichtigsten Thrombin-interagierenden Reste zu identifizieren. In vitro verlängerte DTIP im Vergleich zu Mutanten signifikant aPTT, PT und TT in Rattenplasma; eine subkutane Injektion bei Ratten verlängerte die Gerinnungszeit signifikant, und die Thrombelastographie bestätigte eine verzögerte Gerinnung, obwohl die Bio-Layer-Interferometrie keine signifikanten Unterschiede in der Thrombin-Affinität zwischen DTIP und Mutanten zeigte, was auf eine Bindung an Nicht-Aktivzentrum-Stellen hindeutet. Für die ASH ist dies relevant, da es von Hirudin abstammt, dem charakteristischen Blutegel-Antikoagulans, und die klinische Limitation der ausschließlich intravenösen Verabreichung adressiert. EINSCHRÄNKUNG: Es handelt sich um eine präklinische Studie an Ratten und In-vitro-Assays ohne Humandaten; Stichprobengrößen, statistische Methoden und direkter Vergleich mit Standardantikoagulanzien sind im Abstract nicht dargelegt.
Zitation
RGD-hirudin-based low molecular weight peptide prevents blood coagulation via subcutaneous injection.
Li YR et al. · Acta Pharmacologica Sinica, 2020
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