首页> 美国卫生研究院文献>PLoS Neglected Tropical Diseases >Insects in anthelminthics research: Lady beetle-derived harmonine affects survival reproduction and stem cell proliferation of Schistosoma mansoni
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Insects in anthelminthics research: Lady beetle-derived harmonine affects survival reproduction and stem cell proliferation of Schistosoma mansoni

机译:驱虫药研究中的昆虫:甲虫瓢虫衍生的谐和影响曼氏血吸虫的存活繁殖和干细胞增殖

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摘要

Natural products have moved into the spotlight as possible sources for new drugs in the treatment of helminth infections including schistosomiasis. Surprisingly, insect-derived compounds have largely been neglected so far in the search for novel anthelminthics, despite the generally recognized high potential of insect biotechnology for drug discovery. This motivated us to assess the antischistosomal capacity of harmonine, an antimicrobial alkaloid from the harlequin ladybird Harmonia axyridis that raised high interest in insect biotechnology in recent years. We observed remarkably pleiotropic effects of harmonine on physiological, cellular, and molecular processes in adult male and female Schistosoma mansoni at concentrations as low as 5 μM in vitro. This included tegumental damage, gut dilatation, dysplasia of gonads, a complete stop of egg production at 10 μM, and increased production of abnormally shaped eggs at 5 μM. Motility was reduced with an EC50 of 8.8 μM and lethal effects occurred at 10–20 μM within 3 days of culture. Enzyme inhibition assays revealed acetylcholinesterase (AChE) as one potential target of harmonine. To assess possible effects on stem cells, which represent attractive anthelminthic targets, we developed a novel in silico 3D reconstruction of gonads based on confocal laser scanning microscopy of worms after EdU incorporation to allow for quantification of proliferating stem cells per organ. Harmonine significantly reduced the number of proliferating stem cells in testes, ovaries, and also the number of proliferating parenchymal neoblasts. This was further supported by a downregulated expression of the stem cell markers nanos-1 and nanos-2 in harmonine-treated worms revealed by quantitative real-time PCR. Our data demonstrate a multifaceted antischistosomal activity of the lady beetle-derived compound harmonine, and suggest AChE and stem cell genes as possible targets. Harmonine is the first animal-derived alkaloid detected to have antischistosomal capacity. This study highlights the potential of exploiting insects as a source for the discovery of anthelminthics.
机译:在治疗包括血吸虫病在内的蠕虫感染中,天然产物已成为新药的可能来源。令人惊讶的是,尽管人们普遍认为昆虫生物技术在药物开发中具有很高的潜力,但在寻找新型驱虫药方面,迄今为止,昆虫衍生的化合物已被很大程度上忽略。这促使我们评估谐和碱的抗血吸虫病能力,谐和碱是一种来自丑角瓢虫Harmonia axyridis的抗菌生物碱,近年来引起了昆虫生物技术的高度关注。我们观察到,在体外浓度低至5μM的男性和女性曼氏血吸虫中,甜菜碱对生理,细胞和分子过程的显着多效作用。这包括皮膜损伤,肠道扩张,性腺发育不良,以10μM的速度完全停止产卵,以及以5μM的速度产生异常形卵。运动能力降低,EC50为8.8μM,在培养3天之内以10–20μM发生致死作用。酶抑制分析显示乙酰胆碱酯酶(AChE)是谐和的潜在目标之一。为了评估对代表有吸引力的驱虫靶标的干细胞的可能影响,我们在掺入EdU之后基于共聚焦激光扫描线虫显微镜开发了一种新型的性腺计算机3D重建计算机,以定量每个器官中增殖的干细胞。谐波显着减少了睾丸,卵巢中增殖性干细胞的数量,以及实质性成神经细胞的数量。定量实时PCR揭示了在经谐和处理的蠕虫中干细胞标志物nanos-1和nanos-2的表达下调进一步支持了这一点。我们的数据证明了瓢虫衍生的化合物harmonine的多方面抗血吸虫活性,并建议将AChE和干细胞基因作为可能的靶标。谐波是第一个被发现具有抗血吸虫病能力的动物生物碱。这项研究强调了利用昆虫作为驱虫药来源的潜力。

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