中美洲跳pitvipers Metlapilcoatlus属(蝰蛇科:响尾蛇科)的毒液成分、毒性和PoliVal-ICP抗毒血清的交叉中和作用。

IF 1.9 4区 医学 Q3 PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH Transactions of The Royal Society of Tropical Medicine and Hygiene Pub Date : 2025-01-03 DOI:10.1093/trstmh/trae120
Adriana Alfaro-Chinchilla, Bruno Lomonte, Luis Zúniga, Manuel Acevedo, Edgar Neri-Castro, Alejandro Alagón, Fabian Bonilla, Cecilia Diaz, Mahmood Sasa
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引用次数: 0

摘要

背景:Metlapilcoatlus属最近被建立起来,包括六种粗壮的毒蛇,被称为跳跃pitvipers,它们栖息在中美洲的山区。这一类群与另一种在哥斯达黎加和巴拿马分布有限的跳跃pitvii Atropoides picadoi保持着亲缘关系。虽然a . picadoi和几个Metlapilcoatlus物种的毒液已经被表征,但对构成该属的其他物种的种间和种内变异知之甚少。在这项工作中,我们对组成Metlapilcoatlus属的六种中的五种毒液进行了表征:Metlapilcoatlus indomitus, Metlapilcoatlus mexicanus, Metlapilcoatlus nummifer, Metlapilcoatlus occiduus和Metlapilcoatlus olmec,并对其中三种毒液的组成是否发生了个体发生变化进行了分析。此外,我们评估了抗蛇毒血清PoliVal-ICP在中美洲国家用于治疗毒蛇中毒的交叉中和能力。方法:采用十二烷基硫酸钠-聚丙烯酰胺凝胶电泳和反相高效液相色谱法对毒液进行表征。毒素鉴定采用自底向上鸟枪蛋白组学方法。我们还根据小鼠模型的平均致死率估计了毒液的毒性。评估了PoliVal-ICP对所有毒液的致死活性的中和能力。以墨西哥野鼠毒液为模型,测试了该抗蛇毒血清对出血、肌毒、蛋白水解、磷脂酶和凝血活性的中和能力。结果:我们的分析表明,跳蛇的毒液由大约8-17个家族的蛋白质组成,通常与其他crotalines共享。尽管有这些普遍的相似性,我们观察到在毒液成分和毒性的种内(包括个体发生)和种间水平上的差异。黄鳝毒液的色谱图谱在PLA2/PLA2样洗脱区显示出峰值,这可能是这些毒液具有肌毒活性的原因。相比之下,这些峰在A. picadoi的色谱图中几乎可以忽略不计,其毒液明显更容易出血性。在Metlapilcoatlus物种中,M. indomitus毒液与其他物种明显不同,也是最致命的。该抗蛇毒血清证明了其在中和所有测试毒液的致死活性方面的有效性,以及在墨西哥血吸虫毒液中研究的各种生物活性。结论:我们的临床前研究结果表明,PoliVal-ICP抗蛇毒血清有效地中和了所有中美洲跳蛇毒液中的毒素,尽管其免疫混合物中不包括任何跳蛇的毒液。这种交叉中和能力预测ICP抗蛇毒血清在治疗新热带地区蛇毒的有效性。
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Venom composition, toxicity and cross-neutralization by PoliVal-ICP antivenom, of Mesoamerican jumping pitvipers genus Metlapilcoatlus (Viperidae: Crotalinae).

Background: The genus Metlapilcoatlus was recently erected to include six species of stout venomous snakes, known as the jumping pitvipers, which inhabit mountainous areas of Mesoamerica. This group maintains affinity with Atropoides picadoi, another jumping pitviper with restricted distribution in Costa Rica and Panama. Although the venom of A. picadoi and a couple of Metlapilcoatlus species has previously been characterized, little is known about the interspecific and intraspecific variation of the other species that comprise the genus. In this work, we characterize the venoms of five out of the six species that make up the genus Metlapilcoatlus: Metlapilcoatlus indomitus, Metlapilcoatlus mexicanus, Metlapilcoatlus nummifer, Metlapilcoatlus occiduus and Metlapilcoatlus olmec, and for three of them, we analyze whether ontogenetic change occurs in the composition of their venoms. Additionally, we evaluated the cross-neutralizing capacity of the antivenom PoliVal-ICP used in Central American countries to treat viper envenomation.

Methods: We utilized sodium dodecyl sulfate-polyacrylamide gel electrophoresis and reverse-phase HPLC for venom characterization. Toxin identification was conducted using a bottom-up shotgun proteomic approach. We also estimated venom toxicity based on average lethality estimates in a murine model. The PoliVal-ICP neutralizing capacity on lethal activity was evaluated for all venoms. Using the venom of M. mexicanus as a model, we also tested the neutralizing capacity of this antivenom on hemorrhagic, myotoxic, proteolytic, phospholipase and coagulant activities.

Results: Our analysis revealed that the venoms of jumping vipers are composed of proteins belonging to approximately 8-17 families, typically shared with other crotalines. Despite these general similarities, we observed variations at both intraspecific, including ontogenetic, and interspecific levels in venom composition and toxicity. The chromatographic pattern of Metlapilcoatlus venom exhibited peaks in the PLA2/PLA2-like eluting region, likely responsible for the myotoxic activity of these venoms. By contrast, these peaks were almost negligible in the chromatogram of A. picadoi, whose venom is significantly more hemorrhagic. Among the Metlapilcoatlus species, M. indomitus venom stood out as notably different from the others, and it was also the most lethal. The antivenom demonstrated its effectiveness in neutralizing the lethal activity of all the venoms tested, as well as the various biological activities studied in the venom of M. mexicanus.

Conclusions: Beyond the scope of the variation revealed here, our preclinical results demonstrate that PoliVal-ICP antivenom effectively neutralizes toxins from the venom of all Mesoamerican jumping vipers, despite not including venom from any of them in its immunization mixture. This cross-neutralization capacity predicts ICP antivenom's effectiveness in treating snake envenoming in the Neotropical region.

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来源期刊
Transactions of The Royal Society of Tropical Medicine and Hygiene
Transactions of The Royal Society of Tropical Medicine and Hygiene 医学-公共卫生、环境卫生与职业卫生
CiteScore
4.00
自引率
9.10%
发文量
115
审稿时长
4-8 weeks
期刊介绍: Transactions of the Royal Society of Tropical Medicine and Hygiene publishes authoritative and impactful original, peer-reviewed articles and reviews on all aspects of tropical medicine.
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From relief to resistance: implications of self-medication practice for malaria elimination in India. Phototherapy in lymphoproliferative and inflammatory diseases associated with human T-lymphotropic virus. Diagnostic sensitivity of formalin-fixed faecal microscopy for the detection of soil-transmitted helminths. Impact of repeat testing in tuberculosis patients with a trace call on Xpert MTB/RIF Ultra: a retrospective cohort study. Special Issue Editorial: Sustainably reducing snakebite burden by prioritising research(ers) in high-risk areas.
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