Impact of Ammonia Exposure on the Enteric Nervous System in the Ileum of Pigs From Birth.

IF 2.9 3区 医学 Q1 CLINICAL NEUROLOGY
Valentina Rafaela Herrera Millar, Mirko Sergio, Katarzyna Palus, Giorgio Mirra, Chiara Cialini, Margherita Pallaoro, Lucia Aidos, Laura Mangiavini, Chiara Bazzocchi, Eleonora Buoio, Annamaria Costa, Silvia Clotilde Bianca Modina, Alessia Di Giancamillo
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Abstract

Background: Best Available Techniques have been introduced in the EU to counteract pollution related to intensive farming and its effect on the health of animals and workers. It is known that high levels of ammonia (NH3) worsen the productive performance of animals, but the exact mechanism of interaction with the intestine is still unknown. Therefore, this study aimed to investigate the effect of NH3 on the gut of pigs exposed to different levels since birth.

Methods: Two farms with different manure removal systems were considered (Recirculation and Vacuum), where two different NH3 levels were detected: high and low ammonia (recirculating slurry system, RS, and vacuum slurry system, VS, respectively). The entire production cycle was considered, and a fecal score and microbiological analyses of the feces were performed. After slaughtering, the ileum of 12 animals was sampled to evaluate ileum morphology and the expression of some neurotransmitters.

Key results: No differences were found in Peyer's patches morphology. The mucus layer thickness was higher, and the acidic mucins were lower in the RS animals. Results revealed changes in the number and area of neuronal and glial cells, and an upregulation of choline acetyltransferase (ChAT) and galanin (GAL) genes was observed.

Conclusions and inferences: The alteration of the Enteric Nervous System (ENS) highlighted a connection between high levels of environmental NH3 and neuroplasticity. Furthermore, the upregulation of ChAT and GAL genes suggests a key role in visceral pain, creating a link between peristalsis and chronic diarrhea observed in healthy pigs. Lastly, these findings are important for both animal health and human workplace safety.

氨暴露对猪出生后回肠肠神经系统的影响。
背景:欧盟引进了最佳可用技术,以抵消与集约化农业有关的污染及其对动物和工人健康的影响。众所周知,高水平的氨(NH3)会降低动物的生产性能,但其与肠道相互作用的确切机制尚不清楚。因此,本研究旨在探讨猪出生后暴露于不同水平NH3对肠道的影响。方法:选取两个采用不同排粪系统(循环和真空)的猪场,分别检测高氨和低氨两种不同水平(循环料浆系统RS和真空料浆系统VS)。考虑了整个生产周期,并对粪便进行了粪便评分和微生物分析。屠宰后取12只动物回肠标本,观察回肠形态及部分神经递质的表达。关键结果:两组Peyer’s斑块形态无明显差异。RS动物黏液层厚度较高,酸性黏液蛋白含量较低。结果显示神经元和胶质细胞数量和面积发生变化,胆碱乙酰转移酶(ChAT)和甘丙氨酸(GAL)基因上调。结论和推论:肠神经系统(ENS)的改变突出了高水平的环境NH3与神经可塑性之间的联系。此外,ChAT和GAL基因的上调表明在内脏疼痛中起关键作用,在健康猪中观察到的蠕动和慢性腹泻之间建立了联系。最后,这些发现对动物健康和人类工作场所安全都很重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Neurogastroenterology and Motility
Neurogastroenterology and Motility 医学-临床神经学
CiteScore
7.80
自引率
8.60%
发文量
178
审稿时长
3-6 weeks
期刊介绍: Neurogastroenterology & Motility (NMO) is the official Journal of the European Society of Neurogastroenterology & Motility (ESNM) and the American Neurogastroenterology and Motility Society (ANMS). It is edited by James Galligan, Albert Bredenoord, and Stephen Vanner. The editorial and peer review process is independent of the societies affiliated to the journal and publisher: Neither the ANMS, the ESNM or the Publisher have editorial decision-making power. Whenever these are relevant to the content being considered or published, the editors, journal management committee and editorial board declare their interests and affiliations.
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