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Effects of hemocoagulase agkistrodon on the coagulation factors and its procoagulant activities

纤维蛋白原 体内 凝结 化学 凝血酶原时间 凝血酶时间 药理学 体外 凝血酶 生物化学 血栓 凝胶电泳 聚丙烯酰胺凝胶电泳 止血 内科学 部分凝血活酶时间 医学 生物 血小板 生物技术
作者
Haixin Li,Ying Huang,Xian Wu,Ting Wu,Ying Cao,Qimei Wang,Qiu Yu-chang,Weiming Fu,Qun Zhang,Jianxin Pang
出处
期刊:Drug Design Development and Therapy [Dove Medical Press]
卷期号:Volume 12: 1385-1398 被引量:12
标识
DOI:10.2147/dddt.s159210
摘要

Objective: Hemocoagulase agkistrodon (HCA), a thrombin-like enzyme (TLE) from the venom of the Chinese moccasin snake ( Deinagkistrodon acutus ), has been used in clinical practice as a hemostatic compound. The aim of this study was to further investigate the pharmacological properties of HCA. Materials and methods: Sodium dodecyl sulfate or native polyacrylamide gel electrophoresis (SDS- or N-PAGE) as well as enzyme linked immunosorbent assays (ELISAs) were conducted to study the effects of HCA on the human plasma fibrinogen and prothrombin levels, as well as its in vitro interactions with some coagulation factors. In addition, the bleeding time effects of HCA in the mouse tail-bleeding model as well as its effects on the fibrinogen levels in rabbits were determined in vivo. Results: In vitro results revealed that HCA exerts its procoagulant activities by hydrolyzing fibrinogen into segments that are easier to be absorbed, reducing the risk of thrombus formation. Besides, HCA could significantly inhibit the activation of prothrombin at the concentration of 0.3 μM. Unexpectedly, we also found that HCA was able to strongly bind to factor X/Xa (in a ratio of 1:1) and thus inhibit the acceleration of active factor X to tissue plasminogen activator-catalyzed plasminogen activation, demonstrating that it could be less likely to lead to thrombus formation. Finally, in vivo results indicated that HCA could significantly shorten the bleeding time in the mouse tail-bleeding model and had no effect on the fibrinogen levels in rabbits. Conclusion: In summary, HCA, a unique and new family member of TLEs, may become a new clinical drug for the prevention and treatment of hemorrhage due to its unique and complex interactions with the blood system. Clarification of these features will enable us to further understand the mechanism of action of HCA and then promote its further application in clinical practice as a therapeutic drug. Keywords: thrombin-like enzymes, TLEs, coagulation factors, procoagulant activity, anticoagulant activity, FXa, t-PA

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