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肺部暴露于不同尺寸和封端剂的金核银纳米颗粒对心血管损伤的影响。

Impact of pulmonary exposure to gold core silver nanoparticles of different size and capping agents on cardiovascular injury.

作者信息

Holland Nathan A, Thompson Leslie C, Vidanapathirana Achini K, Urankar Rahkee N, Lust Robert M, Fennell Timothy R, Wingard Christopher J

机构信息

Department of Physiology, Brody School of Medicine at East Carolina University, Greenville, NC, 27834, USA.

RTI International, Discovery Sciences, Research Triangle Park, NC, 27709, USA.

出版信息

Part Fibre Toxicol. 2016 Aug 24;13(1):48. doi: 10.1186/s12989-016-0159-z.

Abstract

BACKGROUND

The uses of engineered nanomaterials have expanded in biomedical technology and consumer manufacturing. Furthermore, pulmonary exposure to various engineered nanomaterials has, likewise, demonstrated the ability to exacerbate cardiac ischemia reperfusion (I/R) injury. However, the influence of particle size or capping agent remains unclear. In an effort to address these influences we explored response to 2 different size gold core nanosilver particles (AgNP) with two different capping agents at 2 different time points. We hypothesized that a pulmonary exposure to AgNP induces cardiovascular toxicity influenced by inflammation and vascular dysfunction resulting in expansion of cardiac I/R Injury that is sensitive to particle size and the capping agent.

METHODS

Male Sprague-Dawley rats were exposed to 200 μg of 20 or 110 nm polyvinylprryolidone (PVP) or citrate capped AgNP. One and 7 days following intratracheal instillation serum was analyzed for concentrations of selected cytokines; cardiac I/R injury and isolated coronary artery and aorta segment were assessed for constrictor responses and endothelial dependent relaxation and endothelial independent nitric oxide dependent relaxation.

RESULTS

AgNP instillation resulted in modest increase in selected serum cytokines with elevations in IL-2, IL-18, and IL-6. Instillation resulted in a derangement of vascular responses to constrictors serotonin or phenylephrine, as well as endothelial dependent relaxations with acetylcholine or endothelial independent relaxations by sodium nitroprusside in a capping and size dependent manner. Exposure to both 20 and 110 nm AgNP resulted in exacerbation cardiac I/R injury 1 day following IT instillation independent of capping agent with 20 nm AgNP inducing marginally greater injury. Seven days following IT instillation the expansion of I/R injury persisted but the greatest injury was associated with exposure to 110 nm PVP capped AgNP resulted in nearly a two-fold larger infarct size compared to naïve.

CONCLUSIONS

Exposure to AgNP may result in vascular dysfunction, a potentially maladaptive sensitization of the immune system to respond to a secondary insult (e.g., cardiac I/R) which may drive expansion of I/R injury at 1 and 7 days following IT instillation where the extent of injury could be correlated with capping agents and AgNP size.

摘要

背景

工程纳米材料在生物医学技术和消费品制造中的应用不断扩大。此外,肺部暴露于各种工程纳米材料同样显示出加剧心脏缺血再灌注(I/R)损伤的能力。然而,粒径或封端剂的影响仍不清楚。为了探究这些影响,我们在两个不同时间点研究了两种不同粒径且带有两种不同封端剂的金核纳米银颗粒(AgNP)的反应。我们假设肺部暴露于AgNP会诱发受炎症和血管功能障碍影响的心血管毒性,从而导致对粒径和封端剂敏感的心脏I/R损伤扩大。

方法

将雄性Sprague-Dawley大鼠暴露于200μg的20或110nm聚乙烯吡咯烷酮(PVP)或柠檬酸盐封端的AgNP。气管内滴注后1天和7天,分析血清中选定细胞因子的浓度;评估心脏I/R损伤以及分离的冠状动脉和主动脉段的收缩反应、内皮依赖性舒张和非内皮依赖性一氧化氮依赖性舒张。

结果

滴注AgNP导致选定血清细胞因子适度增加,IL-2、IL-18和IL-6升高。滴注导致血管对收缩剂5-羟色胺或去氧肾上腺素的反应紊乱,以及对乙酰胆碱的内皮依赖性舒张或硝普钠的非内皮依赖性舒张出现紊乱,且呈封端剂和粒径依赖性。气管内滴注后1天,暴露于20和110nm的AgNP均导致心脏I/R损伤加剧,与封端剂无关,20nm的AgNP造成的损伤略大。气管内滴注7天后,I/R损伤扩大持续存在,但最大损伤与暴露于110nm PVP封端的AgNP有关,与未处理组相比,梗死面积几乎增大了两倍。

结论

暴露于AgNP可能导致血管功能障碍,这是免疫系统对二次损伤(如心脏I/R)产生的一种潜在适应不良的致敏反应,可能在气管内滴注后1天和7天推动I/R损伤扩大,损伤程度可能与封端剂和AgNP粒径相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f6d/4997661/644d3a5714a2/12989_2016_159_Fig1_HTML.jpg

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