College of Life Sciences, Shaanxi Normal University, Xi'an 710119, China.
College of Life Sciences, Shaanxi Normal University, Xi'an 710119, China.
J Environ Sci (China). 2024 Oct;144:225-235. doi: 10.1016/j.jes.2023.08.020. Epub 2023 Aug 25.
Microplastics, a new type of emerging pollutant, is ubiquitous in terrestrial and water environments. Microplastics have become a growing concern due to their impacts on the environment, animal, and human health. Birds also suffer from microplastics contamination. In this study, we examined the toxic effects of polystyrene microplastics (PS-MPs) exposure on physical barrier, microbial community, and immune function in the cecum of a model bird species-Japanese quail (Coturnix japonica). The one-week-old birds were fed on environmentally relevant concentrations of 20 µg/kg, 400 µg/kg, and 8 mg/kg PS-MPs in the diet for 5 weeks. The results showed that microplastics could cause microstructural damages characterized by lamina propria damage and epithelial cell vacuolation and ultrastructural injuries including microvilli breakage and disarrangement as well as mitochondrial vacuolation in the cecum of quails. In particular, blurry tight junctions, wider desmosomes spacing, and gene expression alteration indicated cecal tight junction malfunction. Moreover, mucous layer breakdown and mucin decrease indicated that chemical barrier was disturbed by PS-MPs. PS-MPs also changed cecal microbial diversity. In addition, structural deformation of cecal tonsils and increasing proinflammatory cytokines suggested cecal immune disorder and inflammation responses by PS-MPs exposure. Our results suggested that microplastics negatively affected digestive system and might pose great health risks to terrestrial birds.
微塑料作为一种新型的新兴污染物,广泛存在于陆地和水域环境中。由于其对环境、动物和人类健康的影响,微塑料已成为人们越来越关注的问题。鸟类也受到微塑料污染的影响。在这项研究中,我们研究了聚苯乙烯微塑料(PS-MPs)暴露对模型鸟类-日本鹌鹑(Coturnix japonica)盲肠物理屏障、微生物群落和免疫功能的毒性作用。一周龄的鹌鹑通过饮食摄入环境相关浓度的 20µg/kg、400µg/kg 和 8mg/kg PS-MPs 5 周。结果表明,微塑料可导致盲肠微结构损伤,特征为固有层损伤和上皮细胞空泡化以及超微结构损伤,包括微绒毛断裂和排列紊乱以及线粒体空泡化。特别是,模糊的紧密连接、更大的桥粒间距以及基因表达的改变表明盲肠紧密连接功能障碍。此外,黏液层破裂和黏蛋白减少表明 PS-MPs 破坏了化学屏障。PS-MPs 还改变了盲肠微生物多样性。此外,盲肠扁桃体的结构变形和促炎细胞因子的增加表明 PS-MPs 暴露导致盲肠免疫紊乱和炎症反应。我们的结果表明,微塑料对消化系统有负面影响,可能对陆地鸟类构成巨大的健康风险。