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1.
● B[a]P, nicotine and phenanthrene molecules altered the secondary structure of Aβ42. ● β-content of the peptide was significantly enhanced in the presence of the PAHs. ● Nicotine made stable cluster with Aβ42 peptide via hydrogen bonds. ● Phenanthrene due to its small size, interfered with the Aβ42 monomer more strongly. Recent studies have correlated the chronic impact of ambient environmental pollutants like polycyclic aromatic hydrocarbons (PAHs) with the progression of neurodegenerative disorders, either by using statistical data from various cities, or via tracking biomarkers during in-vivo experiments. Among different neurodegenerative disorders, PAHs are known to cause increased risk for Alzheimer’s disease, related to the development of amyloid beta (Aβ) peptide oligomers. However, the complex molecular interactions between peptide monomers and organic pollutants remains obscured. In this work, we performed an atomistic molecular dynamics study via GROMACS to investigate the structure of Aβ42 peptide monomer in the presence of benzo[a]pyrene, nicotine, and phenanthrene. Interestingly the results revealed strong hydrophobic, and hydrogen-bond based interactions between Aβ peptides and these environmental pollutants that resulted in the formation of stable intermolecular clusters. The strong interactions affected the secondary structure of the Aβ42 peptide in the presence of the organic pollutants, with almost 50 % decrease in the α-helix and 2 %–10 % increase in the β-sheets of the peptide. Overall, the undergoing changes in the secondary structure of the peptide monomer in the presence of the pollutants under the study indicates an enhanced formation of Aβ peptide oligomers, and consequent progression of Alzheimer’s disease.  相似文献   
2.
为明确抗生素药物诺氟沙星对锦鲤的毒性效应,采用鱼类毒性试验方法,研究了诺氟沙星(Norfloxacin,NFLX)对锦鲤的急性毒性和亚急性毒性效应.结果表明,当NFLX暴露质量浓度达到1 000 mg/L时,NFLX对锦鲤无急性毒性.NFLK暴露15 d,在1 mg/L、5 mg/L、25mg/L和125 mg/L 4个组中,5 mg/L组锦鲤肝脏SOD活性在6d时达到最大(p<0.01);125 mg./L组MDA含量在15 d时达到最大值(p<0.01);25 mg/L、125 mg/L组锦鲤肝脏中MDA含量与暴露时间呈正相关,相关系数分别为0.938 1、0.953 5.各组GST活性和GSH质量比均受到不同程度的诱导,1 mg/L组NFLX可使鱼肝GST与GSH产生适应性反应;5 mg/L组诱导GST与GSH效应最为显著,呈现“钟形”变化趋势,5 mg/L很可能是NFLX对GST活性和GSH质量比影响的一个阈值或转折点.鱼肝GPT与GOT活性变化表现出一定的相似性,均呈现先升高后降低的变化规律,其中5 mg/L组被诱导效应最为显著(p<0.01).5 mg/L很可能是锦鲤适应NFLX暴露和机体中生物酶发挥作用的一个转折点.比较上述抗氧化和转氨酶指标的敏感性和稳定性发现,在NFLX作用下,锦鲤肝脏中GST、GSH两个指标对NFLX的反应比SOD、MDA、GPT、GOT灵敏,变化规律稳定,更适合评价水环境中NFLX暴露的毒性效应.  相似文献   
3.
Heavy-metal contamination is a major concern, as excessive heavy metals produce environmental pollution, and the cumulative effects of heavy metals in vivo pose a major threat to human health. There is an urgent need for a rapid, sensitive, and efficient method for detecting heavy metals. Quantum dots (QDs) are in the category of semiconductor nanocrystals whose radii are less than or close to the exciton Bohr radius. QDs possess a potential in the biological and medical fields to function as a new type of fluorescent marker, because of their unique and tunable photophysical properties, which include broad excitation spectrum, narrow emission spectrum, tunable emission wavelengths, and negligible photobleaching. In recent years, QDs made significant progress in quantitative analysis by providing a new approach for determination of chemical content analysis. The aim of this study was to review the research progress of QD detection of heavy metals in water and consider the challenges and future outlook for QD-based sensors for heavy-metal ions.  相似文献   
4.
碲化镉量子点Cd~(2+)释放对小鼠肝、肾组织毒作用的研究   总被引:1,自引:0,他引:1  
探讨碲化镉量子点(cadmium telluride quantum dots,Cd Te QDs)Cd2+释放与其体内毒性之间的关系。将24只雄性ICR小鼠(24.7~26.8g)随机分为4组,每组6只,分别为0 nmol组(对照组)、5 nmol染毒组、50 nmol染毒组和500 nmol染毒组(以Cd2+的摩尔浓度计算)。采用尾静脉注射方式进行染毒,染毒组注射0.15 ml不同浓度的Cd Te QDs溶液,对照组注射同等体积的生理盐水。染毒24h后小鼠脱臼处死,计算脏器系数,进行血常规和血清生化指标分析以及肝、肾组织的病理组织学检查。选取金属硫蛋白(metallothionein,MT)作为生物体内游离Cd2+水平的生物标志物,通过酶联免疫吸附实验(ELISA)和免疫组织化学技术检测小鼠肝、肾组织中的MT水平。结果表明,各染毒组小鼠肝、肾脏器系数与对照组相比,差异无统计学意义(P0.05),尿素氮水平与对照组相比显著降低(P0.01)。随着染毒剂量增加,小鼠肝、肾组织病理改变逐渐加重,肝细胞可见不同程度的水性样变和肿胀;肾小管管腔水肿、肾上皮细胞水样变性,以及远曲小管水肿。染毒组小鼠肝、肾组织中MT的含量与对照组相比明显升高(P0.05),且随着染毒剂量增加MT表达增强。研究结果提示,Cd Te QDs对小鼠肝、肾组织具有一定的毒作用,其毒作用大小与Cd Te QDs降解释放的游离Cd2+含量呈正相关。  相似文献   
5.
Concentrations of eight elements were measured in Chelonia mydas and Lepidochelys olivacea eggs collected along the Pacific coast of Panama. Manganese (Mn), iron (Fe), copper (Cu), zinc (Zn), arsenic (As), cadmium (Cd), and mercury (Hg) concentrations were similar to previous reports of these species from around the world, while lead (Pb) was lower than previous reports. Cd posed the highest health risk to people who regularly eat the eggs, with average consumption rates leading to target hazard quotients (THQ) of up to 0.35 ± 0.15. Our conclusions indicate that current turtle egg consumption in isolated, coastal Pacific communities may pose a health concern for young children, and that youth and young adults should limit their consumption of turtle eggs to reduce their total intake of nonessential metals.  相似文献   
6.
农药环境风险评估中常用的计算毒理学模型软件   总被引:2,自引:0,他引:2  
农药的大量使用为我国带来了严重的环境和健康问题,仅依靠传统生物测试和环境监测的方法已经不能满足农药风险评估的需要。利用计算毒理学模型,可以实现农药的高通量风险评估。本文主要介绍了农药环境风险评估中常用免费的EPI Suite、QSAR Toolbox和PBT Profiler等定量结构-活性关系(Quantitative Structure-Activity Relationship,QSAR)模型软件和SCIGROW、PRZM-GW、China-PEARL和EQC等环境多介质模型软件,以期能为农药的风险评估和科学管理提供参考。  相似文献   
7.
石墨烯是一种应用广泛的新兴非金属纳米材料,具有独特的电学机械性能、超大的比表面积以及潜在的生物相容性,在材料、电子、能源、光学以及生物医学等领域得到广泛应用。与此同时,石墨烯的环境行为和生物毒性也随之引起日益广泛的关注。本文通过对石墨烯纳米材料的动物毒性、细胞毒性、毒性影响因素和毒性机制等相关研究进展进行总结。石墨烯纳米材料可通过气管滴注、吸入、静脉注射、腹腔注射以及口服等方式进入体内,通过机械屏障、血脑屏障和血液胎盘屏障等积累在肺、肝、脾等部位引起急性或者慢性损伤;目前有关石墨烯毒性机制的研究主要集中于线粒体损伤、DNA损伤、炎性反应、凋亡等终点及氧化应激参与的复杂信号通路,不同石墨烯纳米材料的浓度、尺寸、表面结构和官能团等对石墨烯的生物毒性影响不同。鉴于当前该领域研究的局限性,对石墨烯纳米材料生物毒性研究的发展方向进行了展望,进而为石墨烯材料的安全应用提供理论借鉴和实践参考。  相似文献   
8.
We report results of a multigenerational experiment with Chironomus riparius. Two strains with a high and a low level of genetic variability were exposed to a low, environmentally relevant TBT concentration of 80 μg Sn kg−1 sediment dw nominally (time weighted mean, based on measured concentrations: 4.5 μg Sn kg−1 sediment dw), and various life history traits as well as genetic diversity were monitored for eleven consecutive generations. While TBT effects are hardly visible in the outbred and genetically diverse strain, the inbred and genetically impoverished strain shows a clearly reduced population growth rate compared to the control. Moreover, the impoverished strain shows an increase in fitness over time. Analyses of variation at five microsatellite loci revealed that the level of genetic variation is strongly reduced in the inbred compared to the outbred strain. Moreover, genetic diversity increases over time in the inbred strain. This finding explains the observed increase in fitness in both inbred lineages (control and TBT exposed). The results document that inbreeding and the level of genetic diversity might be of crucial importance in populations under pollution stress. Furthermore, ecotoxicological bioassays have to consider genetic diversity if results between laboratories should be comparable. Our data provides evidence that genetic diversity strongly contributes to the survival of a population exposed to chemical pollution.  相似文献   
9.
内分泌干扰物通过干扰内分泌系统导致多种疾病,如生殖疾病、肥胖症甚至癌症。然而,面对环境中大量潜在的内分泌干扰物,传统的体外、体内评估方法由于成本高、耗时长等问题,难以实现内分泌干扰物的高通量筛查。计算毒理学逐渐发展成为被美国环保局(Environmental Protection Agency,EPA)、经济合作与发展组织(Organization for Economic Co-operation and Development,OECD)等机构所推荐的内分泌干扰物筛选与预测方法。本文综述了计算毒理学在内分泌干扰物筛选上的进展,主要包括分子对接和分子动力学模拟的应用,并对有害结局路径(adverse outcome pathway,AOP)的方法进行介绍和展望。  相似文献   
10.
尹先清  陈文娟  靖波  刘倩  杨航 《化工环保》2017,37(4):377-382
采用支持向量机(SVM)算法,将Box-Behnken设计法与支持向量回归算法(SVR)实验参数优化软件相结合,优化电化学去除油田污水COD的工艺参数。通过量子粒子群算法对SVM算法参数进行优化,从建立的回归模型中找到工艺参数的全局最佳点:电解时间60 min,电解电流3 A,三维电极填充料中石英砂质量695 g。模型得到的COD理论最优去除率为92.48%,验证实验得到的COD去除率为91.43%。  相似文献   
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