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Neutralization of the Principal Toxins from the Venoms of Thai Naja kaouthia and Malaysian Hydrophis schistosus : Insights into Toxin-Specific Neutralization by Two Different Antivenoms

机译:来自泰国眼镜蛇和马来西亚血吸虫的毒液中主要毒素的中和作用:两种不同抗毒剂对毒素特异性中和作用的见解

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Antivenom neutralization against cobra venoms is generally low in potency, presumably due to poor toxin-specific immunoreactivity. This study aimed to investigate the effectiveness of two elapid antivenoms to neutralize the principal toxins purified from the venoms of the Thai monocled cobra ( Naja kaouthia , Nk-T) and the Malaysian beaked sea snake ( Hydrophis schistosus , Hs-M). In mice, N. kaouthia Monovalent Antivenom (NKMAV) neutralization against Nk-T long neurotoxin (LNTX) and cytotoxin was moderate (potency of 2.89–6.44 mg toxin/g antivenom protein) but poor against the short neurotoxin (SNTX) (1.33 mg/g). Its cross-neutralization against Hs-M LNTX of Hs-M is compatible (0.18 mg/g) but much weaker against Hs-M SNTX (0.22 mg/g). Using CSL (Seqirus Limited) Sea Snake Antivenom (SSAV), we observed consistently weak neutralization of antivenom against SNTX of both species, suggesting that this is the limiting factor on the potency of antivenom neutralization against venoms containing SNTX. Nevertheless, SSAV outperformed NKMAV in neutralizing SNTXs of both species (0.61–2.49 mg/g). The superior efficacy of SSAV against SNTX is probably partly attributable to the high abundance of SNTX in sea snake venom used as immunogen in SSAV production. The findings indicate that improving the potency of cobra antivenom may be possible with a proper immunogen formulation that seeks to overcome the limitation on SNTX immunoreactivity.
机译:通常,由于不良的毒素特异性免疫反应性,针对眼镜蛇毒的抗毒中和作用通常较低。这项研究旨在调查两种弹性抗蛇毒草中和从泰国单眼眼镜蛇(Naja kaouthia,Nk-T)和马来西亚喙海蛇(Hydrophis schistosus,Hs-M)毒液中纯化出的主要毒素的有效性。在小鼠中,长叶猪笼草单价抗蛇毒(NKMAV)对Nk-T长神经毒素(LNTX)和细胞毒素的中度作用中等(效力为2.89–6.44 mg毒素/ g抗毒蛋白),但对短神经毒素(SNTX)(1.33 mg /G)。它对Hs-M的Hs-M LNTX的交叉中和作用是相容的(0.18 mg / g),但对Hs-M SNTX的交叉中和作用却弱得多(0.22 mg / g)。使用CSL(Seqirus Limited)海蛇抗毒液(SSAV),我们观察到抗毒液对两种物种的SNTX的弱中和作用一直很弱,表明这是对抗毒液对含有SNTX的毒液的中和力的限制因素。尽管如此,在中和两个物种的SNTX中,SSAV的表现都优于NKMAV(0.61-2.49 mg / g)。 SSAV对抗SNTX的优越功效可能部分归因于在SSAV生产中用作免疫原的海蛇毒中SNTX的丰富性。这些发现表明,通过寻求克服SNTX免疫反应性限制的适当免疫原制剂,可以提高眼镜蛇抗蛇毒药的效力。

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