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Cross-Neutralisation of In Vitro Neurotoxicity of Asian and Australian Snake Neurotoxins and Venoms by Different Antivenoms

机译:亚洲和澳大利亚蛇神经毒素和毒液通过不同抗毒剂的体外神经毒性的交叉中和

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摘要

There is limited information on the cross-neutralisation of neurotoxic venoms with antivenoms. Cross-neutralisation of the in vitro neurotoxicity of four Asian and four Australian snake venoms, four post-synaptic neurotoxins (α-bungarotoxin, α-elapitoxin-Nk2a, α-elapitoxin-Ppr1 and α-scutoxin; 100 nM) and one pre-synaptic neurotoxin (taipoxin; 100 nM) was studied with five antivenoms: Thai cobra antivenom (TCAV), death adder antivenom (DAAV), Thai neuro polyvalent antivenom (TNPAV), Indian Polyvalent antivenom (IPAV) and Australian polyvalent antivenom (APAV). The chick biventer cervicis nerve-muscle preparation was used for this study. Antivenom was added to the organ bath 20 min prior to venom. Pre- and post-synaptic neurotoxicity of Bungarus caeruleus and Bungarus fasciatus venoms was neutralised by all antivenoms except TCAV, which did not neutralise pre-synaptic activity. Post-synaptic neurotoxicity of Ophiophagus hannah was neutralised by all antivenoms, and Naja kaouthia by all antivenoms except IPAV. Pre- and post-synaptic neurotoxicity of Notechis scutatus was neutralised by all antivenoms, except TCAV, which only partially neutralised pre-synaptic activity. Pre- and post-synaptic neurotoxicity of Oxyuranus scutellatus was neutralised by TNPAV and APAV, but TCAV and IPAV only neutralised post-synaptic neurotoxicity. Post-synaptic neurotoxicity of Acanthophis antarcticus was neutralised by all antivenoms except IPAV. Pseudonaja textillis post-synaptic neurotoxicity was only neutralised by APAV. The α-neurotoxins were neutralised by TNPAV and APAV, and taipoxin by all antivenoms except IPAV. Antivenoms raised against venoms with post-synaptic neurotoxic activity (TCAV) cross-neutralised the post-synaptic activity of multiple snake venoms. Antivenoms raised against pre- and post-synaptic neurotoxic venoms (TNPAV, IPAV, APAV) cross-neutralised both activities of Asian and Australian venoms. While acknowledging the limitations of adding antivenom prior to venom in an in vitro preparation, cross-neutralization of neurotoxicity means that antivenoms from one region may be effective in other regions which do not have effective antivenoms. TCAV only neutralized post-synaptic neurotoxicity and is potentially useful in distinguishing pre-synaptic and post-synaptic effects in the chick biventer cervicis preparation.
机译:关于神经毒性毒液与抗蛇毒血清的交叉中和作用的信息有限。交叉中和四种亚洲和四种澳大利亚蛇毒,四种突触后神经毒素(α-邦加毒素,α-elapitoxin-Nk2a,α-elapitoxin-Ppr1和α-scutoxin; 100 nM)和一种前突触神经毒素(taipoxin; 100 nM)与5种抗蛇毒素进行了研究:泰国眼镜蛇抗蛇毒(TCAV),死亡加法抗蛇毒(DAAV),泰国神经多价抗蛇毒(TNPAV),印度多价抗蛇毒(IPAV)和澳大利亚多价抗蛇毒(APAV)。这项研究使用了小鸡biventer宫颈神经肌肉制剂。在毒液发生20分钟之前,将抗毒液添加到器官浴中。除TCAV外,所有抗蛇毒动物均中和了蓝藻和筋膜蛇毒的突触前后神经毒性。除IPAV外,所有抗蛇毒血清均消除了Ophiophagus hannah的突触后神经毒性,而所有抗蛇毒血清均消除了Naja kaouthia的突触后神经毒性。除TCAV以外,所有抗蛇毒血清均对Notechis scutatus突触前后的神经毒性进行了中和,而TCAV仅部分中和了突触前的活性。 TNPAV和APAV可中和盾s的突触前和后神经毒性,但TCAV和IPAV仅中和突触后的神经毒性。南极棘突棘的神经毒性被除IPAV外的所有抗蛇毒血清中和。假单胞菌突触后神经毒性仅被APAV中和。 α-神经毒素被TNPAV和APAV所中和,天粉毒素被IPAV以外的所有抗蛇毒血清所中和。针对具有突触后神经毒性活性(TCAV)的毒液产生的抗毒液交叉中和了多种蛇毒的突触后活性。针对突触前后神经毒性毒液(TNPAV,IPAV,APAV)产生的抗毒液交叉中和了亚洲和澳大利亚毒液的活性。尽管认识到在体外制备中在毒液之前添加抗蛇毒血清的局限性,但神经毒性的交叉中和意味着来自一个区域的抗蛇毒血清可能在没有有效抗蛇毒血清的其他区域有效。 TCAV仅中和突触后的神经毒性,并且在区分雏鸡biventer子宫颈制剂中的突触前和突触后作用中可能有用。

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