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钝叶决明凝集素增强了对抗多药耐药菌株的抗生素活性,并抑制了捻转血矛线虫的发育。

Parkia platycephala lectin enhances the antibiotic activity against multi-resistant bacterial strains and inhibits the development of Haemonchus contortus.

机构信息

Centro de Ciências Agrárias e Ambientais, Universidade Federal do Maranhão, Chapadinha, Maranhão, Brazil.

Departamento de Patologia, Universidade Federal do Maranhão, São Luís, Maranhão, Brazil.

出版信息

Microb Pathog. 2019 Oct;135:103629. doi: 10.1016/j.micpath.2019.103629. Epub 2019 Jul 17.

Abstract

Lectins have been studied in the past few years as an alternative to inhibit the development of pathogenic bacteria and gastrointestinal nematodes of small ruminants. The development of new antibacterial and anthelmintic compounds is necessary owing to the increase in drug resistance among important pathogens. Therefore, this study aimed to evaluate the capacity of a glucose/mannose-binding lectin from Parkia platycephala seeds (PPL) to inhibit the development of Haemonchus contortus and to modulate antibiotic activity against multi-resistant bacterial strains, thereby confirming its efficacy when used in combination with gentamicin. PPL at the concentration of 1.2 mg/mL did not show inhibitory activity on H. contortus in the egg hatch test or the exsheathment assay. However, it did show significant inhibition of H. contortus larval development with an IC of 0.31 mg/mL. The minimum inhibitory concentration (MIC) obtained for PPL against all tested bacterial strains was not clinically relevant (MIC ≥ 1024 μg/mL). However, when PPL was combined with gentamicin, a significant increase in antibiotic activity was observed against S. aureus and E.coli multi-resistant strains. The inhibition of hemagglutinating activity by gentamicin (MIC = 50 mM) revealed that it may be interacting with the carbohydrate-binding site of PPL. It is this interaction between the antibiotic and lectin carbohydrate-binding site that may be responsible for the enhanced activity of gentamicin against multi-resistant strains. It can be concluded that PPL showed selective anthelmintic effect, inhibiting the development of H. contortus larvae and that it increased the effect of the antibiotic gentamicin against multi-resistant bacterial strains, thus constituting a potential therapeutic resource against resistant bacterial strains and H. contortus.

摘要

过去几年,人们一直在研究凝集素,以期抑制小反刍动物的致病性细菌和胃肠道线虫的发展。由于重要病原体的耐药性增加,因此需要开发新的抗菌和驱虫化合物。因此,本研究旨在评估来自 Parkia platycephala 种子的葡萄糖/甘露糖结合凝集素(PPL)抑制 Haemonchus contortus 发育的能力,并调节其对多耐药菌株的抗生素活性,从而确认其与庆大霉素联合使用的功效。在卵孵化试验或脱鞘试验中,浓度为 1.2mg/mL 的 PPL 对 H. contortus 没有抑制活性。然而,它确实显示出对 H. contortus 幼虫发育的显著抑制作用,IC 为 0.31mg/mL。PPL 对所有测试的细菌菌株的最小抑菌浓度(MIC)没有临床意义(MIC≥1024μg/mL)。然而,当 PPL 与庆大霉素联合使用时,对金黄色葡萄球菌和大肠杆菌多耐药菌株的抗生素活性显著增加。庆大霉素(MIC=50mM)对血凝活性的抑制表明,它可能与 PPL 的碳水化合物结合位点相互作用。正是抗生素和凝集素碳水化合物结合位点之间的这种相互作用可能导致庆大霉素对多耐药菌株的活性增强。可以得出结论,PPL 表现出选择性驱虫作用,抑制 H. contortus 幼虫的发育,并且增加了抗生素庆大霉素对多耐药细菌菌株的作用,因此构成了针对耐药细菌菌株和 H. contortus 的潜在治疗资源。

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