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气管内给予聚乙二醇包覆的银纳米粒子对正常血压和高血压小鼠心脏的影响。

Impact of Intratracheal Administration of Polyethylene Glycol-Coated Silver Nanoparticles on the Heart of Normotensive and Hypertensive Mice.

机构信息

Department of Physiology, College of Medicine and Health Sciences, United Arab Emirates University, Al Ain P.O. Box 17666, United Arab Emirates.

Zayed Center for Health Sciences, United Arab Emirates University, Al Ain P.O. Box 17666, United Arab Emirates.

出版信息

Int J Mol Sci. 2023 May 17;24(10):8890. doi: 10.3390/ijms24108890.

Abstract

Silver nanoparticles are widely used in various industrial and biomedical applications; however, little is known about their potential cardiotoxicity after pulmonary exposure, particularly in hypertensive subjects. We assessed the cardiotoxicity of polyethylene glycol (PEG)-coated AgNPs in hypertensive (HT) mice. Saline (control) or PEG-AgNPs (0.5 mg/kg) were intratracheally (i.t.) instilled four times (on days 7, 14, 21, and 28 post-angiotensin II or vehicle [saline] infusion). On day 29, various cardiovascular parameters were evaluated. Systolic blood pressure and heart rate were higher in PEG-AgNPs-treated HT mice than in saline-treated HT or PEG-AgNPs-treated normotensive mice. The heart histology of PEG-AgNPs-treated HT mice had comparatively larger cardiomyocyte damage with fibrosis and inflammatory cells when compared with saline-treated HT mice. Similarly, the relative heart weight and the activities of lactate dehydrogenase and creatine kinase-MB and the concentration of brain natriuretic peptide concentration were significantly augmented in heart homogenates of HT mice treated with PEG-AgNPs compared with HT mice treated with saline or normotensive animals exposed to PEG-AgNPs. Similarly, the concentrations of endothelin-1, P-selectin, vascular cell adhesion molecule-1, and intercellular adhesion molecule-1 in heart homogenates were significantly higher than in the other two groups when HT mice were exposed to PEG-AgNPs. Markers of inflammation and oxidative and nitrosative stress were significantly elevated in heart homogenates of HT mice given PEG-AgNPs compared with HT mice treated with saline or normotensive animals exposed to PEG-AgNPs. The hearts of HT mice exposed to PEG-AgNPs had significantly increased DNA damage than those of HT mice treated with saline or normotensive mice treated with AgNPs. In conclusion, the cardiac injury caused by PEG-AgNPs was aggravated in hypertensive mice. The cardiotoxicity of PEG-AgNPs in HT mice highlights the importance of an in-depth assessment of their toxicity before using them in clinical settings, particularly in patients with pre-existing cardiovascular diseases.

摘要

纳米银颗粒广泛应用于各种工业和生物医学领域;然而,人们对其在肺部暴露后的潜在心脏毒性知之甚少,特别是在高血压患者中。我们评估了聚乙二醇(PEG)包裹的 AgNPs 在高血压(HT)小鼠中的心脏毒性。盐水(对照)或 PEG-AgNPs(0.5mg/kg)经气管内(i.t.)滴注四次(在血管紧张素 II 或载体[盐水]输注后第 7、14、21 和 28 天)。在第 29 天,评估了各种心血管参数。PEG-AgNPs 处理的 HT 小鼠的收缩压和心率高于盐水处理的 HT 或 PEG-AgNPs 处理的正常血压小鼠。与盐水处理的 HT 小鼠相比,PEG-AgNPs 处理的 HT 小鼠的心脏组织学具有更大的心肌损伤,伴有纤维化和炎症细胞。同样,与盐水处理的 HT 小鼠或暴露于 PEG-AgNPs 的正常血压动物相比,PEG-AgNPs 处理的 HT 小鼠的心脏匀浆中相对心脏重量以及乳酸脱氢酶和肌酸激酶-MB 的活性和脑利钠肽浓度显著增加。同样,当 HT 小鼠暴露于 PEG-AgNPs 时,心脏匀浆中内皮素-1、P-选择素、血管细胞黏附分子-1 和细胞间黏附分子-1 的浓度也明显高于其他两组。与盐水处理的 HT 小鼠或暴露于 PEG-AgNPs 的正常血压动物相比,PEG-AgNPs 处理的 HT 小鼠心脏匀浆中的炎症和氧化应激及硝化应激标志物显著升高。暴露于 PEG-AgNPs 的 HT 小鼠的心脏 DNA 损伤明显高于盐水处理的 HT 小鼠或暴露于 PEG-AgNPs 的正常血压小鼠。总之,PEG-AgNPs 引起的心脏损伤在高血压小鼠中加重。HT 小鼠中 PEG-AgNPs 的心脏毒性突出表明,在将其用于临床环境之前,特别是在患有先前存在的心血管疾病的患者中,需要对其毒性进行深入评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5514/10218879/1f4f26065cde/ijms-24-08890-g001.jpg

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