首页> 外文期刊>Journal of Pharmacological and Toxicological Methods >A cell-based assay for screening of antidotes to, and antivenom against Chironex fleckeri (box jellyfish) venom.
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A cell-based assay for screening of antidotes to, and antivenom against Chironex fleckeri (box jellyfish) venom.

机译:一种基于细胞的检测方法,用于筛选针对Chironex fleckeri(箱形水母)毒液的解毒剂和抗蛇毒剂。

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INTRODUCTION: Chironex fleckeri is a large box jellyfish that has been labelled the 'most venomous animal' in the world. We have recently shown that the primary effect of C. fleckeri venom in vivo is cardiovascular collapse. This study utilised a cell-based assay to examine the effects of C. fleckeri venom on the proliferation of a rat aortic smooth muscle cell line. In addition, the ability of CSL box jellyfish antivenom and/or various potential treatment strategies to neutralise the effects of the venom was examined. METHODS: A7r5 cells were cultured in media containing venom. The effect of CSL box jellyfish antivenom (5 U/mL), CSL polyvalent snake antivenom (5 U/mL), lanthanum (5 microM), MgSO(4) (50 mM), verapamil (5 microM) or felodipine (5 microM) was examined. Cell viability was determined using a Cell titer 96 AQueous One Solution cell proliferation assay. RESULTS: Incubation of A7r5 cells with serially diluted venom (2-0.004 microg/mL) caused a concentration-dependent inhibition of cell proliferation with an IC(50) value of 0.056 microg/mL. This response was not affected by the absence of calcium or the presence of lanthanum in the media. Box jellyfish antivenom (5 U/mL) prevented the inhibition of cell proliferation caused by the venom. Verapamil (5 microM) had no significant effect on the inhibition. In contrast, felodipine (5 microM) or MgSO(4) (50 mM) potentiated the effects of the venom and partially negated the protective effect of the antivenom. DISCUSSION: This study displayed the ability to utilise a cell-based assay to determine the effects of C. fleckeri venom on vascular cell viability. It showed that CSL box jellyfish can neutralise the effects of the venom but only if added prior to the venom. In addition, potential adjunct therapies verapamil, felodipine and MgSO(4) were found to be ineffective, with felodipine and MgSO(4) potentiating the detrimental effects of the venom.
机译:简介:Chironex fleckeri是一种大型箱状水母,被标记为世界上“最有毒的动物”。最近,我们显示了体内C. fleckeri毒液的主要作用是心血管衰竭。这项研究利用基于细胞的分析方法来检查弗雷克斯梭菌毒液对大鼠主动脉平滑肌细胞系增殖的影响。此外,还检查了CSL盒水母无公害和/或各种潜在治疗策略中和毒液作用的能力。方法:在含有毒液的培养基中培养A7r5细胞。 CSL盒水母抗蛇毒(5 U / mL),CSL多价蛇抗蛇毒(5 U / mL),镧(5 microM),MgSO(4)(50 mM),维拉帕米(5 microM)或非洛地平(5 microM)的作用)进行了检查。使用细胞效价96 AQueous One Solution细胞增殖测定法测定细胞活力。结果:将A7r5细胞与连续稀释的毒液(2-0.004 microg / mL)一起孵育会引起浓度依赖性的细胞增殖抑制作用,IC(50)值为0.056 microg / mL。该反应不受培养基中钙的缺乏或镧的影响。箱形水母抗蛇毒(5 U / mL)阻止了毒液对细胞增殖的抑制作用。维拉帕米(5 microM)对抑制作用无明显影响。相反,非洛地平(5 microM)或MgSO(4)(50 mM)增强了毒液的作用,而部分抵消了抗毒液的保护作用。讨论:这项研究显示了利用基于细胞的测定法来确定弗雷克氏杆菌毒液对血管细胞活力的影响的能力。结果表明,CSL箱状水母可以中和毒液,但必须在毒液之前添加。此外,发现潜在的辅助疗法维拉帕米,非洛地平和MgSO(4)无效,非洛地平和MgSO(4)增强了毒液的有害作用。

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