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Multi-dimensional evaluation of cardiotoxicity in mice following respiratory exposure to polystyrene nanoplastics

Particle and Fibre Toxicology 2023 36 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 60 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Yiling Ge, Sheng Yang, Sheng Yang, Yiling Ge, Yiling Ge, Yiling Ge, Sheng Yang, Sheng Yang, Tianyi Zhang, Sheng Yang, Cheng Yan-ping, Sheng Yang, Cheng Yan-ping, Cheng Yan-ping, Sheng Yang, Jie Li, Saisai Gong, Sheng Yang, Sheng Yang, Sheng Yang, Sheng Yang, Sheng Yang, Sheng Yang, Yiling Ge, Xin Wan, Zaozao Chen, Xin Wan, Tianyi Zhang, Yiling Ge, Sheng Yang, Yiling Ge, Yiling Ge, Yiling Ge, Yiling Ge, Yiling Ge, Yiling Ge, Yiling Ge, Lihong Yin, Xin Wan, Cheng Yan-ping, Jie Li, Yuepu Pu, Saisai Gong, Lihong Yin, Saisai Gong, Lihong Yin, Xin Wan, Xin Wan, Cheng Yan-ping, Yuepu Pu, Geyu Liang Yuepu Pu, Saisai Gong, Yuepu Pu, Yuxin Zhu, Yuxin Zhu, Lihong Yin, Saisai Gong, Xin Wan, Yuxin Zhu, Yuxin Zhu, Yuxin Zhu, Lihong Yin, Fei Yang, Yuepu Pu, Yuepu Pu, Yuepu Pu, Zaozao Chen, Yuepu Pu, Geyu Liang Fei Yang, Fei Yang, Fei Yang, Yuxin Zhu, Yuxin Zhu, Zaozao Chen, Geyu Liang Geyu Liang Geyu Liang Jie Li, Yuepu Pu, Lihong Yin, Zaozao Chen, Lihong Yin, Zaozao Chen, Jie Li, Fei Yang, Fei Yang, Geyu Liang Chengyu Hu, Geyu Liang Yuepu Pu, Yuepu Pu, Yuepu Pu, Yuepu Pu, Geyu Liang Saisai Gong, Saisai Gong, Fei Yang, Cheng Yan-ping, Geyu Liang Geyu Liang Yuepu Pu, Fei Yang, Fei Yang, Fei Yang, Yuepu Pu, Lihong Yin, Chengyu Hu, Zaozao Chen, Yuepu Pu, Zaozao Chen, Yuepu Pu, Geyu Liang Lihong Yin, Yuepu Pu, Zaozao Chen, Geyu Liang Yuepu Pu, Geyu Liang

Summary

Researchers exposed mice to polystyrene nanoplastics through inhalation and found that even short-term breathing exposure caused heart damage, including inflammation and weakened heart function. The damage got worse with higher doses and longer exposure times, with energy production in heart cells being disrupted through mitochondrial damage. This is one of the first studies to show that breathing in nanoplastics can directly harm the heart, raising concerns about airborne plastic particle exposure in humans.

BACKGROUND: Nanoplastics (NPs) could be released into environment through the degradation of plastic products, and their content in the air cannot be ignored. To date, no studies have focused on the cardiac injury effects and underlying mechanisms induced by respiratory exposure to NPs. RESULTS: Here, we systematically investigated the cardiotoxicity of 40 nm polystyrene nanoplastics (PS-NPs) in mice exposed via inhalation. Four exposure concentrations (0 µg/day, 16 µg/day, 40 µg/day and 100 µg/day) and three exposure durations (1 week, 4 weeks, 12 weeks) were set for more comprehensive information and RNA-seq was performed to reveal the potential mechanisms of cardiotoxicity after acute, subacute and subchronic exposure. PS-NPs induced cardiac injury in a dose-dependent and time-dependent manner. Acute, subacute and subchronic exposure increased the levels of injury biomarkers and inflammation and disturbed the equilibrium between oxidase and antioxidase activity. Subacute and subchronic exposure dampened the cardiac systolic function and contributed to structural and ultrastructural damage in heart. Mechanistically, violent inflammatory and immune responses were evoked after acute exposure. Moreover, disturbed energy metabolism, especially the TCA cycle, in the myocardium caused by mitochondria damage may be the latent mechanism of PS-NPs-induced cardiac injury after subacute and subchronic exposure. CONCLUSION: The present study evaluated the cardiotoxicity induced by respiratory exposure to PS-NPs from multiple dimensions, including the accumulation of PS-NPs, cardiac functional assessment, histology observation, biomarkers detection and transcriptomic study. PS-NPs resulted in cardiac injury structurally and functionally in a dose-dependent and time-dependent manner, and mitochondria damage of myocardium induced by PS-NPs may be the potential mechanism for its cardiotoxicity.

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