Tian Jiamei, Tang Yumeng, Yang Linsong, Ren Jie, Qing Qing, Tao Yuheng, Xu Jieting, Zhu Jie
National-Local Joint Engineering Research Center of Biomass Refining and High-Quality Utilization, Changzhou, 213164, Jiangsu, China.
School of Pharmacy, Changzhou University, Changzhou, 213164, Jiangsu, China.
Appl Biochem Biotechnol. 2022 Oct;194(10):4817-4835. doi: 10.1007/s12010-022-03989-3. Epub 2022 Jun 6.
Cold plasma pretreatment has the potential of anti-aging. However, its molecular mechanism is still not clear. Here, cold plasma pretreatment was firstly used to investigate the anti-aging effects of Caenorhabditis elegans using transcriptomic technique. It showed that the optimal parameters of discharge power, processing time, and working pressure for cold plasma pretreatment were separately 100 W, 15 s, and 135 Pa. The released 0.32 mJ/cm of the moderate apparent energy density was possibly beneficial to the strong positive interaction between plasma and C. elegans. The longest lifespan (13.67 ± 0.50 for 30 days) was obviously longer than the control (10.37 ± 0.46 for 23 days). Furthermore, compared with the control, frequencies of head thrashes with an increase of 26.01% and 37.31% and those of body bends with an increase of 33.37% and 34.51% on the fourth and eighth day, respectively, indicated movement behavior was improved. In addition, the variation of the enzyme activity of superoxide dismutase (SOD), catalase (CAT), and malondialdehyde (MDA) hinted that the cold plasma pretreatment contributed to the enhanced anti-aging effects in nematodes. Transcriptomics analysis revealed that cold plasma pretreatment resulted in specific gene expression. Anatomical structure morphogenesis, response to stress, regulation of biological quality, phosphate-containing compound metabolic process, and phosphorus metabolic process were the most enriched biological process for GO analysis. Cellular response to heat stress and HSF1-dependent transactivation were the two most enriched KEGG pathways. This work would provide the methodological basis using cold plasma pretreatment and the potential gene modification targets for anti-aging study.
冷等离子体预处理具有抗衰老的潜力。然而,其分子机制仍不清楚。在此,首次使用冷等离子体预处理,采用转录组学技术研究秀丽隐杆线虫的抗衰老作用。结果表明,冷等离子体预处理的最佳放电功率、处理时间和工作压力参数分别为100W、15s和135Pa。释放的0.32mJ/cm的中等表观能量密度可能有利于等离子体与秀丽隐杆线虫之间的强正相互作用。最长寿命(30天为13.67±0.50)明显长于对照组(23天为10.37±0.46)。此外,与对照组相比,在第4天和第8天,头部摆动频率分别增加了26.01%和37.31%,身体弯曲频率分别增加了33.37%和34.51%,表明运动行为得到改善。此外,超氧化物歧化酶(SOD)、过氧化氢酶(CAT)和丙二醛(MDA)的酶活性变化表明,冷等离子体预处理有助于增强线虫的抗衰老作用。转录组学分析表明,冷等离子体预处理导致特定基因表达。解剖结构形态发生、应激反应、生物质量调控、含磷化合物代谢过程和磷代谢过程是GO分析中最丰富的生物学过程。细胞对热应激的反应和HSF1依赖性反式激活是两个最丰富KEGG通路。这项工作将为冷等离子体预处理提供方法学依据,并为抗衰老研究提供潜在的基因修饰靶点。