Institute of Genetics and Biochemistry, Federal University of Uberlândia (UFU), Uberlândia, MG, Brazil.
Department of Clinical and Toxicological Analysis, School of Pharmaceutical Sciences, University of São Paulo (USP), São Paulo, SP, Brazil.
Comp Biochem Physiol C Toxicol Pharmacol. 2021 Jul;245:109028. doi: 10.1016/j.cbpc.2021.109028. Epub 2021 Mar 3.
We investigated the antiophidic properties of isohemigossypolone (ISO), a naphthoquinone isolated from the outer bark of the Pachira aquatic Aubl. The inhibition of phospholipase A, coagulant, fibrinogenolytic, hemorrhagic and myotoxic activities induced by Bothrops pauloensis venom (Pb) was investigated. For this, we use samples resulting from the incubation of Pb with ISO in different concentrations (1:1, 1:5 and 1:10 w/w), we also evaluated the condition of treatment using ISO after 15 min of venom inoculation. The activities of phospholipase A, coagulant, fibrinogenolytic, hemorrhagic and myotoxic induced by the B. pauloensis venom were significantly inhibited when the ISO was pre-incubated with the crude venom. For in vivo neutralization tests, the results were observed even when the ISO was applied after 15 min of inoculation of the venom or metalloprotease (BthMP). Also, to identify the inhibition mechanism, we performed in silico assays, across simulations of molecular coupling and molecular dynamics, it was possible to identify the modes of interaction between ISO and bothropic toxins BmooMPα-I, Jararacussin-I and BNSP-7. The present study shows that naphthoquinone isohemigossypolone isolated from the P. aquatica plant inhibited part of the local and systemic damage caused by venom proteins, demonstrating the pharmacological potential of this compound in neutralizing the harmful effects caused by snakebites.
我们研究了从水黄皮(Pachira aquatic Aubl.)外树皮中分离得到的萘醌isohemigossypolone(ISO)的抗蛇毒特性。研究了其对矛头蝮蛇(Bothrops pauloensis)毒液(Pb)诱导的磷脂酶 A、凝血酶、纤维蛋白溶酶、出血和肌毒性活性的抑制作用。为此,我们使用了在不同浓度(1:1、1:5 和 1:10 w/w)下与 ISO 孵育的 Pb 样品,还评估了在毒液接种 15 分钟后使用 ISO 进行治疗的情况。当 ISO 与粗毒液预孵育时,可显著抑制由 B. pauloensis 毒液引起的磷脂酶 A、凝血酶、纤维蛋白溶酶、出血和肌毒性活性。对于体内中和试验,即使在毒液或金属蛋白酶(BthMP)接种 15 分钟后应用 ISO,也观察到了结果。此外,为了确定抑制机制,我们进行了计算机模拟实验,通过分子偶联和分子动力学模拟,我们能够确定 ISO 与矛头蝮蛇毒素 BmooMPα-I、Jararacussin-I 和 BNSP-7 之间的相互作用模式。本研究表明,从水黄皮植物中分离得到的萘醌 isohemigossypolone 抑制了部分由毒液蛋白引起的局部和全身损伤,证明了该化合物在中和蛇咬伤引起的有害作用方面具有药理学潜力。