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两种棘头虫寄生虫中间宿主甲壳类动物的脑部化学物质的对比变化。

Contrasting alterations in brain chemistry in a crustacean intermediate host of two acanthocephalan parasites.

机构信息

Biogéosciences, UMR 6282 CNRS Université de Bourgogne, 6 Boulevard Gabriel, 21000, Dijon, France.

Centre de Recherche en Neurosciences de Lyon, Neurodialytics Facility, Université Claude Bernard Lyon 1, INSERM, U1028, CNRS, UMR 5292, Bron, France.

出版信息

Exp Parasitol. 2024 Oct;265:108821. doi: 10.1016/j.exppara.2024.108821. Epub 2024 Aug 9.

Abstract

The dynamic properties of neural systems throughout life can be hijacked by so-called manipulative parasites. This study investigated changes in the brain chemistry of the amphipod Gammarus fossarum in response to infection with two trophically-transmitted helminth parasites known to induce distinct behavioral alterations: the bird acanthocephalan Polymorphus minutus and the fish acanthocephalan Pomphorhynchus tereticollis. We quantified brain antioxidant capacity as a common marker of homeostasis and neuroprotection, and brain total protein, on 72 pools of six brains. We analyzed the concentration of serotonin (5HT), dopamine (DA) and tyramine in 52 pools of six brains, by using ultrafast high performance liquid chromatography with electrochemical detection (UHPLC-ECD). Brain total protein concentration scaled hypo-allometrically to dry body weight, and was increased in infected gammarids compared to uninfected ones. The brain of gammarids infected with P. minutus had significantly lower total antioxidant capacity relative to total proteins. Infection with P. tereticollis impacted DA level compared to uninfected ones, and in opposite direction between spring and summer. Brain 5HT level was higher in summer compared to spring independently of infection status, and was decreased by infection after correcting for brain total protein concentration estimated from dry whole-body weight. The potential implication of 5HT/DA balance in parasite manipulation, as a major modulator of the reward-punishment axis, is discussed. Taken together, these findings highlight the need to consider both brain homeostatic and/or structural changes (antioxidant and total protein content) together with neurotransmission balance and flexibility, in studies investigating the impact of parasites on brain and behavior.

摘要

在整个生命周期中,神经系统的动态特性可能会被所谓的操纵性寄生虫劫持。本研究调查了两种通过营养传播的寄生虫感染后,十足目甲壳动物卤虫大脑化学物质的变化,这两种寄生虫已知会引起明显的行为改变:鸟类刺头虫 Polymorphus minutus 和鱼类刺头虫 Pomphorhynchus tereticollis。我们量化了大脑抗氧化能力作为体内平衡和神经保护的常见标志物,并对 72 个由 6 个大脑组成的样本中的大脑总蛋白进行了分析。我们使用超快速高效液相色谱电化学检测(UHPLC-ECD),对 52 个由 6 个大脑组成的样本中的 5-羟色胺(5HT)、多巴胺(DA)和酪胺浓度进行了分析。大脑总蛋白浓度与干体重呈亚线性比例,感染卤虫的大脑总蛋白浓度高于未感染的大脑。与未感染的卤虫相比,感染 P. minutus 的卤虫大脑总抗氧化能力显著降低。与未感染的卤虫相比,感染 P. tereticollis 会影响 DA 水平,而且在春季和夏季的方向相反。与感染状况无关,夏季大脑 5HT 水平高于春季,并且在扣除根据干体全重估计的大脑总蛋白浓度后,感染会降低 5HT 水平。讨论了 5HT/DA 平衡作为奖励惩罚轴的主要调节剂在寄生虫操纵中的潜在意义。总之,这些发现强调了在研究寄生虫对大脑和行为的影响时,需要考虑大脑的体内平衡和/或结构变化(抗氧化和总蛋白含量)以及神经传递的平衡和灵活性。

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