PM2.5协同不同饮食对大鼠糖脂代谢的影响
Effects of PM2.5 on Glucose and Lipid Metabolism of Rats with Different Diets
-
摘要: 旨在研究细颗粒物(fine particulate matter, PM2.5)与多种饮食联合作用对机体糖脂代谢的影响。使用正常饮食(ND)、高脂肪饮食(HFD)、高碳水化合物饮食(HCD)喂养大鼠2个月,经气管内灌注暴露PM2.5(7 mg·kg-1),观察PM2.5暴露是否会引发糖脂代谢异常、肝损伤从而促进2型糖尿病的发展。结果表明,短期的PM2.5暴露虽然不足以引起大鼠的糖耐量异常和胰岛素抵抗,但对氨基糖和核苷酸糖代谢途径有重要影响。结合病理学观察,发现PM2.5造成ND组和HFD组的大鼠肝脏组织出现脂质空泡,血脂指标总胆固醇(TC)和甘油三脂(TG)显著升高;HCD组的大鼠肝脏细胞坏死,C-反应蛋白(CRP)水平升高。本研究考虑了饮食因素,进一步补充了PM2.5健康效应的实验证据。Abstract: The purpose of this study was to investigate the effects of fine particulate matter (PM2.5) combined with multi-diet on glucose and lipid metabolism. Rats were fed with normal diet (ND), high-fat diet (HFD) and high-carbohydrate diet (HCD) for 2 months, and then exposed to PM2.5(7 mg·kg-1) through intratracheal instillation to observe whether PM2.5 exposure can cause abnormal glucose and lipid metabolism, liver damage and promote the development of type 2 diabetes. The results showed that although short-term PM2.5 exposure was not sufficient to cause abnormal glucose tolerance and insulin resistance in rats, it had important effects on amino and nucleotide glucose metabolic pathways. Combined with pathological observation, it was found that PM2.5 caused lipid vacuole in liver tissues of rats in ND and HFD groups, and the levels of total cholesterol (TC) and triglyceride (TG) were significantly increased. In HCD group, liver cells were necrotic and C-reactive protein (CRP) level increased. This study takes dietary factors into account and adds to the experimental evidence for the health effects of PM2.5.
-
Key words:
- PM2.5 /
- diet /
- rat /
- glucolipid metabolism /
- liver /
- metabolite
-
-
Rappaport S M, Smith M T. Epidemiology. Environment and disease risks[J]. Science, 2010, 330(6003):460-461 路曼曼, 宋静, 鲁娴娴, 等. PM2.5经皮肤暴露和气道滴注对小鼠肝脏的不同影响[J]. 化学与生物工程, 2018, 35(12):14-19 Lu M M, Song J, Lu X X, et al. Different influences of PM2.5 on mouse liver through dermal exposure and intratracheal instillation[J]. Chemistry & Bioengineering, 2018, 35(12):14-19(in Chinese)
Liu F F, Chen G B, Huo W Q, et al. Associations between long-term exposure to ambient air pollution and risk of type 2 diabetes mellitus:A systematic review and meta-analysis[J]. Environmental Pollution, 2019, 252(Pt B):1235-1245 时文明, 赵卓慧. 大气PM2.5与2型糖尿病关系的研究进展[J]. 环境与职业医学, 2017, 34(7):653-656 Shi W M, Zhao Z H. Review on associations between ambient fine particulate matters and type 2 diabetes mellitus[J]. Journal of Environmental & Occupational Medicine, 2017, 34(7):653-656(in Chinese)
Hao J, Huang K P, Chen C, et al. Polydatin improves glucose and lipid metabolisms in insulin-resistant HepG2 cells through the AMPK pathway[J]. Biological & Pharmaceutical Bulletin, 2018, 41(6):891-898 Sun Q H, Yue P B, Deiuliis J A, et al. Ambient air pollution exaggerates adipose inflammation and insulin resistance in a mouse model of diet-induced obesity[J]. Circulation, 2009, 119(4):538-546 Hasslöf H, Molnár P, Andersson E M, et al. Long-term exposure to air pollution and atherosclerosis in the carotid arteries in the Malmö diet and cancer cohort[J]. Environmental Research, 2020, 191:110095 Liu F F, Chen G B, Huo W Q, et al. Associations between long-term exposure to ambient air pollution and risk of type 2 diabetes mellitus:A systematic review and meta-analysis[J]. Environmental Pollution, 2019, 252(Pt B):1235-1245 Qin X D, Qian Z M, Vaughn M G, et al. Gender-specific differences of interaction between obesity and air pollution on stroke and cardiovascular diseases in Chinese adults from a high pollution range area:A large population based cross sectional study[J]. The Science of the Total Environment, 2015, 529:243-248 杨莹, 王薇薇, 李爱科, 等. 高脂饲粮和高碳水化合物饲粮对大鼠脂肪代谢的影响[J]. 动物营养学报, 2017, 29(7):2603-2612 Yang Y, Wang W W, Li A K, et al. Effects of high fat diet and high carbohydrate diet on fat metabolism of rats[J]. Chinese Journal of Animal Nutrition, 2017, 29(7):2603-2612(in Chinese)
Zhang J S, Cai L, Gui Z H, et al. Air pollution-associated blood pressure may be modified by diet among children in Guangzhou, China[J]. Journal of Hypertension, 2020, 38(11):2215-2222 Chen C, Hayden K M, Kaufman J D, et al. Adherence to a MIND-like dietary pattern, long-term exposure to fine particulate matter air pollution, and MRI-based measures of brain volume:The women's health initiative memory study-MRI[J]. Environmental Health Perspectives, 2021, 129(12):127008 Li R, Wang Y X, Chen R C, et al. Ambient fine particulate matter disrupts hepatic circadian oscillation and lipid metabolism in a mouse model[J]. Environmental Pollution, 2020, 262:114179 刘月涛, 胡英还, 秦雪梅. 非靶标代谢组学研究的影响因素分析[J]. 药物分析杂志, 2019, 39(1):86-93 Liu Y T, Hu Y H, Qin X M. Analysis of influencing factors in untargeted metabolomics study[J]. Chinese Journal of Pharmaceutical Analysis, 2019, 39(1):86-93(in Chinese)
Liu J H, Su X H, Lu J J, et al. PM2.5 induces intestinal damage by affecting gut microbiota and metabolites of rats fed a high-carbohydrate diet[J]. Environmental Pollution, 2021, 279:116849 任慧清, 鲁建江, 宁建英, 等. 石河子市PM2.5中重金属污染及健康风险评价[J]. 环境化学, 2020, 39(6):1716-1725 Ren H Q, Lu J J, Ning J Y, et al. Pollution and health risk assessment of heavy metals in PM2.5 of Shihezi City[J]. Environmental Chemistry, 2020, 39(6):1716-1725(in Chinese)
Curbani F, de Oliveira Busato F, do Nascimento M M, et al. Inhale, exhale:Why particulate matter exposure in animal models are so acute?[J]. Environmental Pollution, 2019, 251:230-237 Jin X T, Su H L, Ding G B, et al. Exposure to ambient fine particles causes abnormal energy metabolism and ATP decrease in lung tissues[J]. Chemosphere, 2019, 224:29-38 Niu J M, Xu G Y, Jiang S, et al. In vitro antioxidant activities and anti-diabetic effect of a polysaccharide from Schisandra sphenanthera in rats with type 2 diabetes[J]. International Journal of Biological Macromolecules, 2017, 94(Pt A):154-160 Rostamkhani F, Zardooz H, Zahediasl S, et al. Comparison of the effects of acute and chronic psychological stress on metabolic features in rats[J]. Journal of Zhejiang University Science B, 2012, 13(11):904-912 Chen J D, Lu J J, Ning J Y, et al. Pollution characteristics, sources, and risk assessment of heavy metals and perfluorinated compounds in PM2.5 in the major industrial city of northern Xinjiang, China[J]. Air Quality, Atmosphere & Health, 2019, 12(8):909-918 Longhin E, Holme J A, Gutzkow K B, et al. Cell cycle alterations induced by urban PM2.5 in bronchial epithelial cells:Characterization of the process and possible mechanisms involved[J]. Particle and Fibre Toxicology, 2013, 10:63 Goettems-Fiorin P B, Grochanke B S, Baldissera F G, et al. Fine particulate matter potentiates type 2 diabetes development in high-fat diet-treated mice:Stress response and extracellular to intracellular HSP70 ratio analysis[J]. Journal of Physiology and Biochemistry, 2016, 72(4):643-656 刘超, 王新茹, 卞晶晶, 等. 高脂饮食及实时PM2.5联合暴露对孕哺期大鼠糖脂代谢的影响[J]. 环境与健康杂志, 2020, 37(3):222-227 , 283 Liu C, Wang X R, Bian J J, et al. Effects of high-fat diet and real-time PM2.5 inhalation in combination on glucose and lipid metabolism in rats in pregnancy and lactation[J]. Journal of Environment and Health, 2020, 37(3):222-227, 283(in Chinese)
Costa Beber L C, da Silva M O A F, dos Santos A B, et al. The association of subchronic exposure to low concentration of PM2.5 and high-fat diet potentiates glucose intolerance development, by impairing adipose tissue antioxidant defense and eHSP72 levels[J]. Environmental Science and Pollution Research International, 2020, 27(25):32006-32016 Long M H, Zhang C, Xu D Q, et al. PM2.5 aggravates diabetes via the systemically activated IL-6-mediated STAT3/SOCS3 pathway in rats' liver[J]. Environmental Pollution, 2020, 256:113342 Li W Y, Dorans K S, Wilker E H, et al. Residential proximity to major roadways, fine particulate matter, and hepatic steatosis:The framingham heart study[J]. American Journal of Epidemiology, 2017, 186(7):857-865 -

计量
- 文章访问数: 1065
- HTML全文浏览数: 1065
- PDF下载数: 104
- 施引文献: 0