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Nano-sized polystyrene plastic particles affect many cancer-related biological processes even in the next generations; zebrafish modeling

代谢组 后代 代谢组学 斑马鱼 男科 生物 幼虫 聚苯乙烯 化学 细胞生物学 毒理 生物物理学 生物化学 遗传学 生物信息学 生态学 怀孕 医学 基因 有机化学 聚合物
作者
Ekrem Sulukan,Onur Şenol,Alper Baran,Meryem Kankaynar,Serkan Yıldırım,Tuba Kızıltan,İsmail Bolat,Saltuk Buğrahan Ceyhun
出处
期刊:Science of The Total Environment [Elsevier]
卷期号:838: 156391-156391 被引量:27
标识
DOI:10.1016/j.scitotenv.2022.156391
摘要

With the ever-increasing plastic pollution, the nano-sized plastic particles that are constantly released from the main materials have a greater potential threat. Studies continue on how to eliminate plastic waste, which has become a global problem, from nature. We are aware that complete elimination is not easy at all, but it is not known clearly that even if it is successful, its effects on organisms will also disappear completely. In this study, zebrafish injected with 20 nm-sized polystyrene particles (PS) only during the embryonic period were grown in an environment without plastic exposure. The effects of PS on their offspring embryo/larvae were examined at morphological, molecular and metabolomic levels. Results showed that parental PNP exposure caused significant malformations, decreased survival rate, increased heart rate and blood flow rate, as well as decreased eye size, height and locomotor activity, which were attributed to growth retardation in the offspring. According to the results of whole-mount immunofluorescence larval staining, cell death and reactive oxygen species were significantly increased, while lipid accumulation was decreased in new generation larvae from zebrafish injected with PNP. In order to elucidate the mechanisms underlying these morphological, physiological and molecular damages, the metabolome analyses were performed by evaluating the Q-TOF MS/MS spectra with chemometric analyses in the offspring larvae. According to the metabolomics results, 28 annotated metabolomes suggested by the OPLS-DA analysis that may vary significantly through a variable in projection scores were detected. In addition, it was detected that the significantly increased histopathological findings and immunopositivity of JNK, H2A.X, PI3 and NOP10 in new generation larvae. In conclusion, it has been shown that exposure to PS, even only during the embryonic period, may affect many cancer-related biological processes in the next generation.
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