丙烯酰胺暴露时通过激活 miRNA-223-3p 和 miRNA-325-3p 炎症体/变态反应和纤维化信号通路诱导肺损伤:一种绿色合成提取物的新机理方法

IF 4.8 3区 医学 Q1 PHARMACOLOGY & PHARMACY Toxicology Pub Date : 2024-06-21 DOI:10.1016/j.tox.2024.153869
Amirah Albaqami , Manal E. Alosaimi , Ibrahim Jafri , Amany Abdel-Rahman Mohamed , Yasmina M. Abd El-Hakim , Tarek Khamis , Sara T. Elazab , Ahmed E. Noreldin , Moustafa Elhamouly , Ali H. El-Far , Areej A. Eskandrani , Badriyah S. Alotaibi , Hanim M.abdelnour , Ayman A. Saleh
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引用次数: 0

摘要

接触丙烯酰胺(AD)可能会对健康造成不良影响,因此引起了全世界的关注,世界卫生组织也呼吁加强对相关风险的研究。尽管如此,人们对口服丙烯酰胺(AD)暴露与肺功能障碍之间的关系仍然知之甚少。我们的研究旨在调查体内口服暴露于丙烯酰胺与肺功能下降之间的相关性,同时探索潜在的介导因素,如组织炎症、氧化应激、热凋亡和细胞凋亡。此外,我们还旨在评估氧化锌纳米颗粒绿色合成的辣木提取物(ZNO-MONPs)(10 mg/kg b.wt)对 ACR 毒性的潜在保护作用,并进行了全面的 miRNA 表达谱分析,以发现 AD 毒性的新靶点和机制(miRNA 223-3 P 和 miRNA 325-3 P)。此外,我们还采用了计算技术来预测丙烯酸酰胺和/或 MO 提取物成分与组织蛋白质之间的相互作用。我们利用大鼠模型,让动物口服丙烯酰胺(20 毫克/千克体重,持续 2 个月)。我们的研究结果表明,丙烯酰胺能明显下调分别靶向 NLRP-3 & 和 GSDMD 的 miRNA 223-3 P 和 miRNA 325-3 P 的表达,这表明丙烯酰胺能通过炎症小体激活途径诱导肺组织中的热蛋白沉积。此外,AD暴露还导致脂质过氧化损伤以及GPX、CAT、GSH和GSSG水平的降低。值得注意的是,暴露于AD会上调凋亡、热凋亡和炎症基因,并伴随着肺组织的组织病理学损伤。免疫组化和免疫荧光技术检测到包括波形蛋白和 4HNE 在内的指示性有害蛋白水平升高。相反,同时服用 ZNO-MONPs 和 AD 能显著提高 miRNA 223-3 P 和 miRNA 325-3 P 的表达,从而保护大鼠肺部免受氧化应激、细胞凋亡、化脓、炎症和纤维化的影响。总之,我们的研究强调了 ZNO-MONPs NPs 在保护肺组织免受食源性毒素 AD 的有害影响方面的功效。
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Pulmonary damage induction upon Acrylic amide exposure via activating miRNA-223–3p and miRNA-325–3p inflammasome/pyroptosis and fibrosis signaling pathway: New mechanistic approaches of A green-synthesized extract

Exposure to acrylic amide (AD) has garnered worldwide attention due to its potential adverse health effects, prompting calls from the World Health Organization for intensified research into associated risks. Despite this, the relationship between oral acrylic amide (acrylamide) (AD) exposure and pulmonary dysfunction remains poorly understood. Our study aimed to investigate the correlation between internal oral exposure to AD and the decline in lung function, while exploring potential mediating factors such as tissue inflammation, oxidative stress, pyroptosis, and apoptosis. Additionally, we aimed to evaluate the potential protective effect of zinc oxide nanoparticles green-synthesized moringa extract (ZNO-MONPs) (10 mg/kg b.wt) against ACR toxicity and conducted comprehensive miRNA expression profiling to uncover novel targets and mechanisms of AD toxicity (miRNA 223–3 P and miRNA 325–3 P). Furthermore, we employed computational techniques to predict the interactions between acrylic amide and/or MO-extract components and tissue proteins. Using a rat model, we exposed animals to oral acrylamide (20 mg/kg b.wt for 2 months). Our findings revealed that AD significantly downregulated the expression of miRNA 223–3 P and miRNA 325–3 P, targeting NLRP-3 & GSDMD, respectively, indicating the induction of pyroptosis in pulmonary tissue via an inflammasome activating pathway. Moreover, AD exposure resulted in lipid peroxidative damage and reduced levels of GPX, CAT, GSH, and GSSG. Notably, AD exposure upregulated apoptotic, pyroptotic, and inflammatory genes, accompanied by histopathological damage in lung tissue. Immunohistochemical and immunofluorescence techniques detected elevated levels of indicative harmful proteins including vimentin and 4HNE. Conversely, concurrent administration of ZNO-MONPs with AD significantly elevated the expression of miRNA 223–3 P and miRNA 325–3 P, protecting against oxidative stress, apoptosis, pyroptosis, inflammation, and fibrosis in rat lungs. In conclusion, our study highlights the efficacy of ZNO-MONPs NPs in protecting pulmonary tissue against the detrimental impacts of foodborne toxin AD.

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来源期刊
Toxicology
Toxicology 医学-毒理学
CiteScore
7.80
自引率
4.40%
发文量
222
审稿时长
23 days
期刊介绍: Toxicology is an international, peer-reviewed journal that publishes only the highest quality original scientific research and critical reviews describing hypothesis-based investigations into mechanisms of toxicity associated with exposures to xenobiotic chemicals, particularly as it relates to human health. In this respect "mechanisms" is defined on both the macro (e.g. physiological, biological, kinetic, species, sex, etc.) and molecular (genomic, transcriptomic, metabolic, etc.) scale. Emphasis is placed on findings that identify novel hazards and that can be extrapolated to exposures and mechanisms that are relevant to estimating human risk. Toxicology also publishes brief communications, personal commentaries and opinion articles, as well as concise expert reviews on contemporary topics. All research and review articles published in Toxicology are subject to rigorous peer review. Authors are asked to contact the Editor-in-Chief prior to submitting review articles or commentaries for consideration for publication in Toxicology.
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