首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >Neutralisation of venom-induced haemorrhage by IgG from camels and llamas immunised with viper venom and also by endogenous, non-IgG components in camelid sera
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Neutralisation of venom-induced haemorrhage by IgG from camels and llamas immunised with viper venom and also by endogenous, non-IgG components in camelid sera

机译:IgG中和毒蛇毒后骆驼和美洲驼免疫的骆驼和美洲驼中毒,以及骆驼血清中的内源性非IgG成分中和

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摘要

Envenoming by snakes results in severe systemic and local pathology. Intravenous administration of antivenom, prepared from IgG of venom immunised horses or sheep, is the only effective treatment of systemic envenoming. Conventional antivenoms, formulated as intact IgG, papain-cleaved (Fab) or pepsin-cleaved F(ab')2 fragments, are however ineffective against the local venom effects because of their inability to penetrate the blood/tissue barrier. We have embarked on a new research program to examine (i) whether the unusually small (15 kDa) antigen-binding fragment of camelid heavy chain IgG (V(H)H) can be exploited to neutralise the local effects of envenoming and (ii) whether a novel antivenom to treat both the systemic and local effects of envenoming can be formulated by combining anti-snake venom V(H)H and conventional F(ab')2. In this preliminary study, we demonstrate that camels and llamas respond to immunisation with Echis ocellatus venom with high antibody titres and broad antigen specificity. These encouraging immunological results were matched by the successful elimination of venom-induced haemorrhage by IgG from the venom-immunised camels and llamas. Unexpectedly, we report for the first time that camelid serum contains a non-IgG, highly potent inhibitor of venom-induced haemorrhage.
机译:蛇毒会导致严重的全身和局部病变。静脉注射抗蛇毒血清(由经毒液免疫的马或羊的IgG制备)是唯一有效的全身性毒液治疗方法。然而,配制为完整IgG,木瓜蛋白酶切割的(Fab)或胃蛋白酶切割的F(ab')2片段的常规抗氧化剂,由于不能穿透血液/组织屏障而不能有效抵抗局部毒液。我们已着手进行一项新的研究计划,以检查(i)骆驼科重链IgG(V(H)H)的异常小(15 kDa)抗原结合片段是否可用于中和毒蛇毒的局部作用和(ii )是否可以通过组合抗蛇毒V(H)H和常规F(ab')2来制定治疗蛇毒的全身和局部作用的新型抗蛇毒素。在这项初步研究中,我们证明了骆驼和美洲驼对具有高抗体滴度和宽泛抗原特异性的棘球E蛇毒的免疫反应。这些令人鼓舞的免疫学结果与IgG成功消除了由毒液免疫的骆驼和美洲驼所产生的由毒液引起的出血相匹配。出乎意料的是,我们首次报道了骆驼科动物血清中含有一种非IgG的高效毒液诱导的出血抑制剂。

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