炎症
医学
碳纳米管
全身炎症
代谢组学
载脂蛋白B
内科学
病理
生物
生物信息学
材料科学
纳米技术
胆固醇
作者
Tamara L. Young,David Scieszka,Jessica Begay,Selitá Lucas,Guy Herbert,Katherine E. Zychowski,Russell Hunter,Raul Salazar,Andrew K. Ottens,Aaron Erdely,Haiwei Gu,Matthew J. Campen
标识
DOI:10.1080/08958378.2022.2026538
摘要
Objective Environmental exposures exacerbate age-related pathologies, such as cardiovascular and neurodegenerative diseases. Nanoparticulates, and specifically carbon nanomaterials, are a fast-growing contributor to the category of inhalable pollutants, whose risks to health are only now being unraveled. The current study assessed the exacerbating effect of age on multiwalled-carbon nanotube (MWCNT) exposure in young and old C57BL/6 and ApoE−/− mice.Materials and methods Female C57BL/6 and apolipoprotein E-deficient (ApoE−/−) mice, aged 8 weeks and 15 months, were exposed to 0 or 40 µg MWCNT via oropharyngeal aspiration. Pulmonary inflammation, inflammatory bioactivity of serum, and neurometabolic changes were assessed at 24 h post-exposure.Results Pulmonary neutrophil infiltration was induced by MWCNT in bronchoalveolar lavage fluid in both C57BL/6 and ApoE−/−. Macrophage counts decreased with MWCNT exposure in ApoE−/− mice but were unaffected by exposure in C57BL/6 mice. Older mice appeared to have greater MWCNT-induced total protein in lavage fluid. BALF cytokines and chemokines were elevated with MWCNT exposure, but CCL2, CXCL1, and CXCL10 showed reduced responses to MWCNT in older mice. However, no significant serum inflammatory bioactivity was detected. Cerebellar metabolic changes in response to MWCNT were modest, but age and strain significantly influenced metabolite profiles assessed. ApoE−/− mice and older mice exhibited less robust metabolite changes in response to exposure, suggesting a reduced health reserve.Conclusions Age influences the pulmonary and neurological responses to short-term MWCNT exposure. However, with only the model of moderate aging (15 months) in this study, the responses appeared modest compared to inhaled toxicant impacts in more advanced aging models.
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