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Energetics and Metabolism: Maternal-engineered nanomaterial exposure disrupts progeny cardiac function and bioenergetics

机译:能量和代谢:母亲设计的纳米材料暴露会破坏后代的心脏功能和生物能量

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摘要

Nanomaterial production is expanding as new industrial and consumer applications are introduced. Nevertheless, the impacts of exposure to these compounds are not fully realized. The present study was designed to determine whether gestational nano-sized titanium dioxide exposure impacts cardiac and metabolic function of developing progeny. Pregnant Sprague-Dawley rats were exposed to nano-aerosols (~10 mg/m3, 130- to 150-nm count median aerodynamic diameter) for 7–8 nonconsecutive days, beginning at gestational day 5–6. Physiological and bioenergetic effects on heart function and cardiomyocytes across three time points, fetal (gestational day 20), neonatal (4–10 days), and young adult (6–12 wk), were evaluated. Functional analysis utilizing echocardiography, speckle-tracking based strain, and cardiomyocyte contractility, coupled with mitochondrial energetics, revealed effects of nano-exposure. Maternal exposed progeny demonstrated a decrease in E- and A-wave velocities, with a 15% higher E-to-A ratio than controls. Myocytes isolated from exposed animals exhibited ~30% decrease in total contractility, departure velocity, and area of contraction. Bioenergetic analysis revealed a significant increase in proton leak across all ages, accompanied by decreases in metabolic function, including basal respiration, maximal respiration, and spare capacity. Finally, electron transport chain complex I and IV activities were negatively impacted in the exposed group, which may be linked to a metabolic shift. Molecular data suggest that an increase in fatty acid metabolism, uncoupling, and cellular stress proteins may be associated with functional deficits of the heart. In conclusion, gestational nano-exposure significantly impairs the functional capabilities of the heart through cardiomyocyte impairment, which is associated with mitochondrial dysfunction.>NEW & NOTEWORTHY Cardiac function is evaluated, for the first time, in progeny following maternal nanomaterial inhalation. The findings indicate that exposure to nano-sized titanium dioxide (nano-TiO2) during gestation negatively impacts cardiac function and mitochondrial respiration and bioenergetics. We conclude that maternal nano-TiO2 inhalation contributes to adverse cardiovascular health effects, lasting into adulthood.Listen to this article's corresponding podcast at .
机译:随着新的工业和消费者应用的引入,纳米材料的生产正在扩大。尽管如此,接触这些化合物的影响尚未完全实现。本研究旨在确定妊娠纳米二氧化钛暴露量是否影响发育后代的心脏和代谢功能。从妊娠第5天开始,连续7到8天内,将怀孕的Sprague-Dawley大鼠暴露于纳米气溶胶(〜10 mg / m 3 ,空气动力学直径中位数为130-150 nm)。 6。评估了三个时间点(胎儿(妊娠第20天),新生儿(4-10天)和年轻人(6-12周))对心脏功能和心肌细胞的生理和生物能量作用。利用超声心动图,基于斑点追踪的应变和心肌细胞收缩力以及线粒体能量学的功能分析揭示了纳米暴露的影响。母体暴露的后代表现出E波和A波速度降低,E对A比率比对照组高15%。从裸露的动物中分离出的心肌细胞在总收缩力,离开速度和收缩面积方面降低了约30%。生物能分析表明,各个年龄段的质子泄漏均显着增加,伴随着代谢功能的下降,包括基础呼吸,最大呼吸和剩余能力。最后,电子传输链复合体的I和IV活性在暴露组中受到负面影响,这可能与代谢变化有关。分子数据表明,脂肪酸代谢,解偶联和细胞应激蛋白的增加可能与心脏的功能缺陷有关。总之,妊娠性纳米暴露会通过心肌细胞损伤(与线粒体功能障碍有关)而严重损害心脏的功能。> NEW&NOTEWORTHY 首次评估母体后代的心脏功能纳米材料吸入。研究结果表明,妊娠期间接触纳米级二氧化钛(nano-TiO2)会对心功能,线粒体呼吸和生物能产生负面影响。我们得出的结论是,孕妇吸入纳米TiO2会对心血管健康产生不良影响,并持续到成年期。请参见本文相应的播客。

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