[特邀报告]二维金属纳米片对土壤动物体腔细胞的能量与脂质代谢干扰效应

二维金属纳米片对土壤动物体腔细胞的能量与脂质代谢干扰效应
编号:681 稿件编号:2345 访问权限:私有 更新:2023-04-11 00:35:42 浏览:189次 特邀报告

报告开始:2023年05月07日 13:20 (Asia/Shanghai)

报告时间:15min

所在会议:[19C] 19C、土壤科学与环境健康 » [19A-2] 19A-2 土壤科学与环境健康

暂无文件

摘要
Two-dimensional molybdenum disulfide (2D MoS2) nanomaterials are seeing increased use in several areas, and this will lead to their inevitable release into soils. Surface defects can occur on MoS2 nanosheets during synthesis or during environmental aging processes. The mechanisms of MoS2 nanosheet toxicity to soil invertebrates and the role of surface defects in that toxicity have not been fully elucidated. We integrated traditional toxicity end points, targeted energy metabolomics, and transcriptomics to compare the mechanistic differences in the toxicity of defect-free and defect-rich MoS2 nanosheets (DF-MoS2 and DR-MoS2) to Eisenia fetida using a coelomocyte-based in vivo assessment model. After organism-level exposure to DF-MoS2 for 96 h at 10 and 100 mg Mo/L, cellular reactive oxygen species (ROS) levels were elevated by 25.6–96.6% and the activity of mitochondrial respiratory electron transport chain (Mito-RETC) complex III was inhibited by 9.7–19.4%. The tricarboxylic acid cycling and glycolysis were also disrupted. DF-MoS2 preferentially up-regulated subcellular component motility processes related to microtubules and caused mitochondrial fission. Unlike DF-MoS2, DR-MoS2 triggered an increased degree of mitochondrial fusion, as well as more severe oxidative stress. The activities of Mito-RETC complexes (I, III, IV, V) associated with oxidative phosphorylation were significantly inhibited by 22.8–68.6%. Meanwhile, apoptotic pathways were activated upon DR-MoS2 exposure, which together with the depolarization of mitochondrial membrane potential, mediated significant apoptosis. In turn, genes related to cellular homeostasis and energy release were up-regulated to compensate for DR-MoS2-induced energy deprivation. Our study indicates that MoS2 nanosheets have nanospecific effects on E. fetida and also that the role of surface defects from synthesis or that accumulate from environmental impacts needs to be fully considered when evaluating the toxicity of these 2D materials.
关键字
金属,纳米,毒性,土壤动物
报告人
仇浩
上海交通大学

稿件作者
仇浩 上海交通大学
发表评论
验证码 看不清楚,更换一张
全部评论

联系我们

会务总协调、疫情防控:

沈焕锋(13163235536;shenhf@whu.edu.cn)

管小彬(18007973663;guanxb@whu.edu.cn)

魏秀琴(15871750333;weixiuqin@whu.edu.cn)

会场安排:

沈焕锋(13163235536;shenhf@whu.edu.cn)

李长冬(15327198910;lichangdong2008@126.com)

张 亮(15827200707;lzhang@whigg.ac.cn)

徐 鹏(13554674258;xupengwhu@whu.edu.cn)

学术安排:

王伦澈(13349889828;wang@cug.edu.cn)

庄艳华(13349889826;zhuang@apm.ac.cn)

李星华(15527964369;lixinghua5540@whu.edu.cn)

会议注册:

管小彬(18007973663;guanxb@whu.edu.cn)

赵 林(18071070948;linzhao@whu.edu.cn)

会议财务:

张传喜(13627137374;zhangchuanxi@whu.edu.cn)

石玉婷(13476286537;yutingshi@vip.qq.com)

商业赞助:

阮志敏(15871826028;ruanzm@whu.edu.cn)

黄文丽(13693626212;wenli.huang@whu.edu.cn)

会议服务,酒店预定,网站、注册系统服务:

曹雪峰(18971567453;carol@chytey.com)

金钰壹(18271358859;jinyuyi@whu.edu.cn)

会务总协调、疫情防控:
沈焕锋(13163235536;shenhf@whu.edu.cn)
管小彬(18007973663;guanxb@whu.edu.cn)
魏秀琴(15871750333;weixiuqin@whu.edu.cn)
会场安排:
沈焕锋(13163235536;shenhf@whu.edu.cn)
李长冬(15327198910;lichangdong2008@126.com)
张 亮(15827200707;lzhang@whigg.ac.cn)
徐 鹏(13554674258;xupengwhu@whu.edu.cn)
学术安排:
王伦澈(13349889828;wang@cug.edu.cn)
庄艳华(13349889826;zhuang@apm.ac.cn)
李星华(15527964369;lixinghua5540@whu.edu.cn)
会议注册:
管小彬(18007973663;guanxb@whu.edu.cn)
赵 林(18071070948;linzhao@whu.edu.cn)
会议财务:
张传喜(13627137374;zhangchuanxi@whu.edu.cn)
石玉婷(13476286537;yutingshi@vip.qq.com)
商业赞助:
阮志敏(15871826028;ruanzm@whu.edu.cn)
黄文丽(13693626212;wenli.huang@whu.edu.cn)
会议服务,酒店预定,网站、注册系统服务:
曹雪峰(18971567453;carol@chytey.com)
金钰壹(18271358859;jinyuyi@whu.edu.cn)
注册缴费 提交稿件