首页> 外文期刊>Scientific reports. >Soluble P-selectin rescues viper venom–induced mortality through anti-inflammatory properties and PSGL-1 pathway-mediated correction of hemostasis
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Soluble P-selectin rescues viper venom–induced mortality through anti-inflammatory properties and PSGL-1 pathway-mediated correction of hemostasis

机译:可溶性P-选择素通过抗炎特性和PSGL-1途径介导的止血纠正,挽救vi蛇毒引起的死亡

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Venomous snakebites are lethal and occur frequently worldwide each year, and receiving the antivenom antibody is currently the most effective treatment. However, the specific antivenom might be unavailable in remote areas. Snakebites by Viperidae usually lead to hemorrhage and mortality if untreated. In the present study, challenges of rattlesnake (Crotalus atrox) venom markedly increased the circulating soluble P-selectin (sP-sel) level, but not P-selectin (P-sel, Selp(-/-)) mutants, in wild-type mice. Because sP-sel enhances coagulation through the P-selectin ligand 1 (PSGL-1, Selplg) pathway to produce tissue factor-positive microparticles, we hypothesized that increasing the plasma sP-sel level can be a self-rescue response in hosts against snake venom-mediated suppression of the coagulation system. Confirming our hypothesis, our results indicated that compared with wild-type mice, Selp(-/-) and Selplg(-/-) mice were more sensitive to rattlesnake venom. Additionally, administration of recombinant sP-sel could effectively reduce the mortality rate of mice challenged with venoms from three other Viperidae snakes. The antivenom property of sP-sel is associated with improved coagulation activity in vivo. Our data suggest that the elevation of endogenous sP-sel level is a self-protective response against venom-suppressed coagulation. The administration of recombinant sP-sel may be developed as a new strategy to treat Viperidae snakebites.
机译:毒蛇咬伤是致死性的,每年在世界范围内频繁发生,目前接受抗蛇毒抗体是最有效的治疗方法。但是,特定抗蛇毒血清可能在偏远地区不可用。如果不加以治疗,蛇毒蛇咬伤通常会导致出血和死亡。在本研究中,在野生动物中,响尾蛇(Crotalus atrox)毒液的攻击显着增加了循环可溶性P-选择素(sP-sel)水平,但没有增加P-选择素(P-sel,Selp(-/-))突变体。型小鼠。因为sP-sel通过P-选择蛋白配体1(PSGL-1,Selplg)途径增强凝血以产生组织因子阳性微粒,所以我们假设增加血浆sP-sel水平可以是宿主对蛇的自救反应毒液介导的凝血系统抑制。证实我们的假设,我们的结果表明,与野生型小鼠相比,Selp(-/-)和Selplg(-/-)小鼠对响尾蛇毒液更为敏感。此外,施用重组sP-sel可以有效降低被另外三只蛇蝎蛇毒攻击的小鼠的死亡率。 sP-sel的抗肿瘤性质与体内凝血活性的改善有关。我们的数据表明内源性sP-sel水平的升高是针对毒液抑制的凝血的自我保护反应。重组sP-sel的施用可能被开发为治疗蛇毒蛇咬伤的新策略。

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