Marine Chemistry and Geochemistry Department, Woods Hole Oceanographic Institution, Woods Hole, Massachusetts 02543, United States.
Biology Department, Woods Hole Oceanographic Institution, Woods Hole, Massachusetts 02543, United States.
Environ Sci Technol. 2023 May 30;57(21):7966-7977. doi: 10.1021/acs.est.3c01932. Epub 2023 May 15.
Sunlight transforms plastic into water-soluble products, the potential toxicity of which remains unresolved, particularly for vertebrate animals. We evaluated acute toxicity and gene expression in developing zebrafish larvae after 5 days of exposure to photoproduced (P) and dark (D) leachates from additive-free polyethylene (PE) film and consumer-grade, additive-containing, conventional, and recycled PE bags. Using a "worst-case" scenario, with plastic concentrations exceeding those found in natural waters, we observed no acute toxicity. However, at the molecular level, RNA sequencing revealed differences in the number of differentially expressed genes (DEGs) for each leachate treatment: thousands of genes (5442 P, 577 D) for the additive-free film, tens of genes for the additive-containing conventional bag (14 P, 7 D), and none for the additive-containing recycled bag. Gene ontology enrichment analyses suggested that the additive-free PE leachates disrupted neuromuscular processes via biophysical signaling; this was most pronounced for the photoproduced leachates. We suggest that the fewer DEGs elicited by the leachates from conventional PE bags (and none from recycled bags) could be due to differences in photoproduced leachate composition caused by titanium dioxide-catalyzed reactions not present in the additive-free PE. This work demonstrates that the potential toxicity of plastic photoproducts can be product formulation-specific.
阳光将塑料转化为水溶性产物,其潜在毒性仍未得到解决,特别是对脊椎动物。我们评估了在 5 天的时间内,无添加剂的聚乙烯(PE)薄膜和消费级、含添加剂、常规和回收 PE 袋的光产物(P)和暗(D)浸出物对发育中的斑马鱼幼虫的急性毒性和基因表达。使用“最坏情况”场景,塑料浓度超过天然水中的浓度,我们没有观察到急性毒性。然而,在分子水平上,RNA 测序显示每个浸出物处理的差异表达基因(DEGs)数量存在差异:无添加剂的薄膜有数千个基因(5442 P,577 D),含添加剂的常规袋有数十个基因(14 P,7 D),含添加剂的回收袋则没有。基因本体富集分析表明,无添加剂的 PE 浸出物通过生物物理信号扰乱了神经肌肉过程;这在光产物中最为明显。我们认为,常规 PE 袋的浸出物引起的 DEGs 较少(回收袋则没有)可能是由于添加剂-free PE 中不存在的二氧化钛催化反应导致光产物组成的差异。这项工作表明,塑料光产物的潜在毒性可能因产品配方而异。