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[聚苯乙烯纳米塑料暴露对小鼠肝脏脂质代谢的影响及机制]

[The effect and mechanism of exposure to polystyrene nanoplastics on lipid metabolism in mice liver].

作者信息

Zhang X N, Meng Q T, Zhang H W, Wang C, Zhang S Y, Chen H Q, Li X B, Chen R

机构信息

Yanjing Medical College, Capital Medical University, Beijing 101300, China.

School of Public Health, Capital Medical University, Beijing 100069, China.

出版信息

Zhonghua Yu Fang Yi Xue Za Zhi. 2024 Oct 6;58(10):1524-1533. doi: 10.3760/cma.j.cn112150-20240708-00546.

Abstract

To investigate the effect and potential mechanism of exposure to 20 nm polystyrene nanoplastics (PS-NPs) on lipid metabolism in mice liver. An animal experimental model was designed, which was completed from September 2022 to July 2023 on the exposure omics platform of the School of Public Health at Capital Medical University and the Key Laboratory of Environment and Population Health at the Chinese Center for Disease Control and Prevention.1 mg/kg and 10 mg/kg PS-NPs tail vein mice exposure models were constructed. After exposure 7 d, serum was collected to measure the levels of alanine aminotransferase (ALT) and aspartate aminotransferase (AST). Real-time quantitative reverse transcription polymerase chain reaction (qRT-PCR) and air flow assisted desorption electrospray ionization-mass spectrometry imaging (AFADESI-MSI) analysis were used to analyze the mRNA levels of fatty acid esterification related genes ( and ) and lipid transport related genes (, , and ) and metabolites' spatial changes in liver tissue. imaging system (IVIS) and tissue shake sections were employed to observe the fluorescence biological distribution of PS-NPs. -test or one-way ANOVA was used to explore the difference between groups. The serum ALT levels were (83.97±4.58), (91.17±13.69) and (142.43±6.09) U/L in the control group, 1 mg/kg PS-NPs exposure group and 10 mg/kg PS-NPs exposure group respectively (=37.281, <0.05). The relative mRNA levels of , , , and were (1.49±0.63, 2.53±0.32, 2.45±0.54), (1.07±0.38, 1.86±0.83, 2.23±0.73), (1.01±0.13, 1.58±0.43, 2.03±0.52), (1.01±0.14, 1.55±0.37, 1.52±0.51), (1.01±0.17, 2.11±0.27, 2.39±0.93) in these three groups respectively. The differences were statistically significant (=11.54, 6.95, 14.90, 5.98 and 14.68, <0.05). AFADESI-MSI analysis found that PS-NPs exposure led to a significant decrease in the levels of glutarylcarnitine and O-Linoleoylcarnitine (=4.12 and 3.35, <0.05), which were associated with lipid beta oxidation. The content of triglycerides (TG) (m/z 921.726 4, =8.69, <0.05; m/z 919.711 4, =3.20, <0.05), phosphatidylic acid (PA) (m/z 895.712 3, =3.60, <0.05; m/z 821.526 6, =3.36, <0.05), lysophosphatidylcholine (LysoPC) (m/z 560.310 6, =3.35, <0.05; m/z 582.295 3, =6.28, <0.05), phosphatidylcholine (PC) (m/z 778.533 9, =3.53, <0.05; m/z 804.549 6, =3.60, <0.05; m/z 820.523 1, =3.37, <0.05), phosphatidylethanolamine (PE) (m/z 772.523 3, =3.08, <0.05) showed a significant increase in the PS-NPs exposure group. and imaging and in situ cell localization revealed that PS-NPs were mainly enriched in hepatic stellate cells and hepatic Kupffer cells in liver tissue. Exposure to PS-NPs induces disorder of liver lipid metabolism, which may be related to the accumulation of PS-NPs in hepatic stellate cells and hepatic Kupffer cells, providing basis for searching early biomarkers of PS-NPs exposure and further mechanism research.

摘要

为研究暴露于20纳米聚苯乙烯纳米塑料(PS-NPs)对小鼠肝脏脂质代谢的影响及潜在机制。设计了动物实验模型,于2022年9月至2023年7月在中国疾病预防控制中心环境与人口健康重点实验室及首都医科大学公共卫生学院暴露组学平台完成。构建了1 mg/kg和10 mg/kg PS-NPs尾静脉小鼠暴露模型。暴露7天后,收集血清检测丙氨酸氨基转移酶(ALT)和天冬氨酸氨基转移酶(AST)水平。采用实时定量逆转录聚合酶链反应(qRT-PCR)和气流辅助解吸电喷雾电离质谱成像(AFADESI-MSI)分析来分析肝脏组织中脂肪酸酯化相关基因( 和 )及脂质转运相关基因( 、 、 和 )的mRNA水平以及代谢物的空间变化。采用成像系统(IVIS)和组织摇切片观察PS-NPs的荧光生物分布。采用t检验或单因素方差分析探讨组间差异。对照组、1 mg/kg PS-NPs暴露组和10 mg/kg PS-NPs暴露组血清ALT水平分别为(83.97±4.58)、(91.17±13.69)和(142.43±6.09)U/L(F = 37.281,P < 0.05)。这三组中 、 、 、 和 的相对mRNA水平分别为(1.49±0.63,2.53±0.32,2.45±0.54)、(1.07±0.38,1.86±0.83,2.23±0.73)、(1.01±0.13,1.58±0.43,2.03±0.52)、(1.01±0.14,1.55±0.37,1.52±0.51)、(1.01±0.17,2.11±0.27,2.39±0.93)。差异具有统计学意义(F = 11.54、6.95、14.90、5.98和14.68,P < 0.05)。AFADESI-MSI分析发现,PS-NPs暴露导致与脂质β氧化相关的戊二酰肉碱和O-亚油酰肉碱水平显著降低(F = 4.12和3.35,P < 0.05)。PS-NPs暴露组中甘油三酯(TG)(m/z 921.726 4,F = 8.69,P < 0.05;m/z 919.71l 4,F = 3.20,P < 0.05)、磷脂酸(PA)(m/z 895.712 3,F = 3.60,P < 0.05;m/z 821.526 6,F = 3.36,P < 0.05)、溶血磷脂酰胆碱(LysoPC)(m/z 560.310 6,F = 3.35,P < 0.05;m/z 582.295 3,F = 6.28,P < 0.05)、磷脂酰胆碱(PC)(m/z 778.533 9,F = 3.53,P < 0.05;m/z 804.549 6,F = 3.60,P < 0.05;m/z 820.523 1,F = 3.37,P < 0.05)、磷脂酰乙醇胺(PE)(m/z 772.523 3,F = 3.08P < 0.05)含量显著增加。 和 成像及原位细胞定位显示,PS-NPs主要富集于肝组织中的肝星状细胞和肝库普弗细胞。暴露于PS-NPs会诱导肝脏脂质代谢紊乱,这可能与PS-NPs在肝星状细胞和肝库普弗细胞中的蓄积有关,为寻找PS-NPs暴露的早期生物标志物及进一步的机制研究提供了依据。

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