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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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http://dx.doi.org/10.1186/s12989-023-00557-3 | DOI Listing |
Ethnopharmacological Relevance: Heart failure (HF), the terminal stage of various cardiovascular diseases, represents a significant threat to global health. Fuxin Decoction (FXD), a classical Traditional Chinese Medicine (TCM) formula, has demonstrated therapeutic efficacy in HF treatment. However, its bioactive components and precise mechanisms remain to be elucidated.
View Article and Find Full Text PDFJACC Cardiovasc Interv
September 2025
CVPath Institute, Gaithersburg, Maryland, USA; University of Maryland, School of Medicine, Baltimore, Maryland, USA. Electronic address:
Background: Effective modification of heavily calcified coronary lesions is critical for successful percutaneous coronary intervention (PCI). Intravascular lithotripsy (IVL), cutting balloons (CBs), and ultra-high-pressure balloons (UHBs) are used commonly, yet data comparing their effectiveness and safety for calcified lesion modification remain unavailable.
Objectives: The aim of this study was to compare the effects of IVL, a CB, and a UHB on calcified coronary lesions in human cadaveric arteries, focusing on calcium fracture formation and vascular injury.
Heart Rhythm
September 2025
Molecular Pharmacology and Physiology, Morsani College of Medicine, University of South Florida, Tampa, FL, United States. Electronic address:
Background: Electronic nicotine delivery systems (ENDS) utilize "E-liquids" in order to generate "E-vapor", an inhalable aerosolized mixture containing nicotine and flavors. Flavored ENDS are very popular among teens who vape, however, the possible cardiac electrophysiological harm of inhalation exposure to flavored ENDS are not fully understood.
Objective: To test if inhalation exposure to flavoring carbonyls in e-liquids compromises mitochondrial integrity, increases oxidative stress, and leads to cardiac electrophysiological toxicity.
J Crit Care
September 2025
Neuro-Intensive Care Unit, Department of Neurosurgery, Clinical Medical College, Yangzhou University, Yangzhou, China; Neuro-intensive Care Unit, Department of Neurosurgery, Northern Jiangsu People's Hospital Affiliated to Yangzhou University, Yangzhou, China. Electronic address:
J Crit Care
September 2025
Neuro-Intensive Care Unit, Department of Neurosurgery, Clinical Medical College, Yangzhou University, Yangzhou, China; Neuro-intensive Care Unit, Department of Neurosurgery, Northern Jiangsu People's Hospital Affiliated to Yangzhou University, Yangzhou, China. Electronic address: