丙烯酰胺诱导的胚胎成纤维细胞系(NIH 3T3)氧化性细胞衰老:Carvacrol的保护作用

IF 1 Q4 PHARMACOLOGY & PHARMACY Jundishapur Journal of Natural Pharmaceutical Products Pub Date : 2021-12-31 DOI:10.5812/jjnpp.109399
Mehdi Evazalipour, Pouya Safarzadeh Kozani, Pooria Safarzadeh Kozani, Sahar Shabani, Bahar Rezaei Soufi, E. Zamani
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引用次数: 2

摘要

背景:应激诱导的细胞衰老是一种细胞周期停滞的永久状态,发生在增殖细胞对应激条件的反应中。人们认为氧化应激在这一过程中起着独特的作用。丙烯酰胺作为一种可诱导氧化应激的活性化合物,在多个领域得到了广泛的应用。香芹酚是一种液体酚类单萜类化合物,存在于一些植物的精油中,以其抗氧化和抗癌特性而闻名。目的:研究香芹酚对丙烯酰胺诱导的NIH 3T3细胞氧化应激和细胞衰老的影响。方法:将NIH 3T3胚胎成纤维细胞暴露于细胞培养基中不同浓度的丙烯酰胺、香芹酚和H2O2。用染色法和定量法测定细胞衰老标志β-半乳糖苷酶(SA-β-gal)活性水平。此外,通过测定谷胱甘肽和脂质过氧化的含量来测定氧化应激参数。结果:丙烯酰胺可诱导细胞过早衰老,表现为脂质过氧化和SA-β-gal活性升高,细胞活力和谷胱甘肽水平下降。此外,香芹酚对丙烯酰胺和h2o2诱导的细胞衰老都有有益的作用,可以显著逆转或减轻氧化应激的影响,并介导其后果。结论:香芹酚对丙烯酰胺诱导的NIH 3T3细胞氧化性衰老具有保护作用。
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Acrylamide Induced Oxidative Cellular Senescence in Embryonic Fibroblast Cell Line (NIH 3T3): A Protection by Carvacrol
Background: Stress-induced cellular senescence is a perpetual state of cell cycle arrest occurring in proliferating cells in response to stressful conditions. It is believed that oxidative stress plays a unique role in this process. As a reactive chemical compound that can induce oxidative stress, acrylamide is widely applied in several fields. Carvacrol is a liquid phenolic monoterpenoid found in essential oils of some plants and is known for its antioxidant and anticarcinogenic properties. Objectives: The current study aimed to evaluate the effects of carvacrol on oxidative stress and cellular senescence induced by acrylamide in the NIH 3T3 cell line. Methods: NIH 3T3 embryonic fibroblast cells were exposed to different concentrations of acrylamide, carvacrol, and H2O2 in a cell culture medium. The level of β-galactosidase (SA-β-gal) activity, as a marker of cellular senescence, was measured using staining and quantitative assays. Furthermore, to measure oxidative stress parameters, the content of glutathione and lipid peroxidation were determined. Results: Acrylamide could induce premature senescence evident by the elevated lipid peroxidation and SA-β-gal activity and declined cell viability and glutathione. Moreover, carvacrol showed beneficial effects on both acrylamide- and H2O2-induced cellular senescence by significantly reversing or subsiding the effect of oxidative stress and mediating its consequences. Conclusions: It can be concluded that carvacrol has protective effects against oxidative cellular senescence induced by acrylamide in the NIH 3T3 cell line.
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