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使用动态TIM-1胃肠道模型探索成人和婴儿消化物理化学参数对微小隐孢子虫病理生理学的影响。

Exploring the impact of digestive physicochemical parameters of adults and infants on the pathophysiology of Cryptosporidium parvum using the dynamic TIM-1 gastrointestinal model.

作者信息

Tottey Julie, Etienne-Mesmin Lucie, Chalançon Sandrine, Sausset Alix, Denis Sylvain, Mazal Carine, Blavignac Christelle, Sallé Guillaume, Laurent Fabrice, Blanquet-Diot Stéphanie, Lacroix-Lamandé Sonia

机构信息

UMR 1282 ISP, Infectiologie et Santé Publique, INRAE, Université de Tours, Nouzilly, France.

UMR 454 MEDIS, Microbiologie Environnement Digestif et Santé, Université Clermont Auvergne, INRAE, Clermont-Ferrand, France.

出版信息

Gut Pathog. 2024 Oct 1;16(1):55. doi: 10.1186/s13099-024-00648-2.

Abstract

BACKGROUND

Human cryptosporidiosis is distributed worldwide, and it is recognised as a leading cause of acute diarrhoea and death in infants in low- and middle-income countries. Besides immune status, the higher incidence and severity of this gastrointestinal disease in young children could also be attributed to the digestive environment. For instance, human gastrointestinal physiology undergoes significant changes with age, however the role this variability plays in Cryptosporidium parvum pathogenesis is not known. In this study, we analysed for the first time the impact of digestive physicochemical parameters on C. parvum infection in a human and age-dependent context using a dynamic in vitro gastrointestinal model.

RESULTS

Our results showed that the parasite excystation, releasing sporozoites from oocysts, occurs in the duodenum compartment after one hour of digestion in both child (from 6 months to 2 years) and adult experimental conditions. In the child small intestine, slightly less sporozoites were released from excystation compared to adult, however they exhibited a higher luciferase activity, suggesting a better physiological state. Sporozoites collected from the child jejunum compartment also showed a higher ability to invade human intestinal epithelial cells compared to the adult condition. Global analysis of the parasite transcriptome through RNA-sequencing demonstrated a more pronounced modulation in ileal effluents compared to gastric ones, albeit showing less susceptibility to age-related digestive condition. Further analysis of gene expression and enriched pathways showed that oocysts are highly active in protein synthesis in the stomach compartment, whereas sporozoites released in the ileum showed downregulation of glycolysis as well as strong modulation of genes potentially related to gliding motility and secreted effectors.

CONCLUSIONS

Digestion in a sophisticated in vitro gastrointestinal model revealed that invasive sporozoite stages are released in the small intestine, and are highly abundant and active in the ileum compartment, supporting reported C. parvum tissue tropism. Our comparative analysis suggests that physicochemical parameters encountered in the child digestive environment can influence the amount, physiological state and possibly invasiveness of sporozoites released in the small intestine, thus potentially contributing to the higher susceptibility of young individuals to cryptosporidiosis.

摘要

背景

人类隐孢子虫病在全球范围内均有分布,在低收入和中等收入国家,它被认为是导致婴儿急性腹泻和死亡的主要原因。除免疫状态外,幼儿中这种胃肠道疾病的较高发病率和严重程度也可能归因于消化环境。例如,人类胃肠道生理机能会随着年龄的增长发生显著变化,然而这种变化在微小隐孢子虫发病机制中所起的作用尚不清楚。在本研究中,我们首次使用动态体外胃肠道模型,在人类及年龄依赖性背景下分析了消化理化参数对微小隐孢子虫感染的影响。

结果

我们的结果表明,在儿童(6个月至2岁)和成人的实验条件下,消化1小时后,寄生虫在十二指肠部分发生脱囊,即从卵囊中释放出子孢子。在儿童小肠中,与成人相比,脱囊释放出的子孢子略少,但它们表现出更高的荧光素酶活性,表明生理状态更好。与成人情况相比,从儿童空肠部分收集的子孢子也显示出更高的侵袭人肠上皮细胞的能力。通过RNA测序对寄生虫转录组进行的全局分析表明,与胃液相比,回肠流出物中的调节更为明显,尽管对与年龄相关的消化状况的敏感性较低。对基因表达和富集途径的进一步分析表明,卵囊在胃部分的蛋白质合成中高度活跃,而在回肠中释放的子孢子显示糖酵解下调,以及与滑行运动和分泌效应器潜在相关的基因的强烈调节。

结论

在复杂的体外胃肠道模型中进行的消化实验表明,侵袭性子孢子阶段在小肠中释放,并且在回肠部分高度丰富且活跃,这支持了已报道的微小隐孢子虫的组织嗜性。我们的比较分析表明,儿童消化环境中遇到的理化参数可以影响小肠中释放的子孢子的数量、生理状态以及可能的侵袭性,从而可能导致幼儿对隐孢子虫病的易感性更高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b7da/11443851/392a84bd514a/13099_2024_648_Fig1_HTML.jpg

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