4.5 Article

Exposure to carbon black nanoparticles during pregnancy aggravates lipopolysaccharide-induced lung injury in offspring: an intergenerational effect

出版社

AMER PHYSIOLOGICAL SOC
DOI: 10.1152/ajplung.00545.2020

关键词

carbon black nanoparticles; intergenerational effect; lipopolysaccharide; lung injury

资金

  1. National Natural Science Foundation of China [81903358, 81602820, 81703187]
  2. Chongqing Talent Project [CQYC2020058650]
  3. ChongqingNatural Science Foundation [cstc2020jcyj-msxmX0155, cstc2020jcyj-msxmX0192]
  4. Science and Technology Project Affiliated to the Education Department of Chongqing, China [KJCXZD2020020, KJQN201900421]

向作者/读者索取更多资源

The study found that exposure to CBNPs during pregnancy can increase the sensitivity of offspring to LPS, leading to more severe lung injury symptoms. This intergenerational effect may be related to DNA hypermethylation caused by CBNPs.
Carbon black nanoparticles (CBNPs) are one of the most frequently used nanoparticles. Exposure to CBNPs during pregnancy (PrE to CBNPs) can directly induce inflammation, lung injury, and genotoxicity in dams and results in abnormalities in offspring. However, whether exposure to CBNPs during pregnancy enhances the susceptibility of offspring to environment& stimuli remains unknown. To address this issue, in this study, we intranasally treated pregnant mice with mock or CBNPs from gestational day (GD) 9 to GD18, and F1 and F2 offspring were normally obtained. By intratracheal instillation of mice with lipopolysaccharide (LPS) to trigger a classic animal model for acute lung injury, we intriguingly found that after LPS treatment, F1 and F2 offspring after exposure during pregnancy to CBNPs both exhibited more pronounced lung injury symptoms, including more degenerative histopathological changes, vascular leakage, elevated MPO activity, and activation of inflammation-related signaling transduction, compared with F1 and F2 offspring in the mock group, suggesting PrE to CBNPs would aggravate LPS-induced lung injury in offspring, and this effect was intergenerational. We also observed that PrE to CBNPs upregulated the mRNA expression of DNA methyltransferases (Dnmt) 1/3a/3b and DNA hypermethylation in both F1 and F2 offspring, which might partially account for the intergenerational effect. Together, our study demonstrates for the first time that PrE to CBNPs can enhance sensitivity to LPS in both F1 and F2 offspring, and this intergenerational effect may be related to DNA hypermethylation caused by CBNPs.

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