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1.
以虾夷扇贝(Patinopecten yessoensis)为受试生物,研究了8:2氟调聚羧酸(8:2FTCA)在虾夷扇贝不同组织(肝脏、鳃、性腺、外套膜、闭壳肌)中的蓄积、分布和生物转化特征.结果显示,8:2FTCA蓄积浓度最高的组织为肝脏,达峰值最快的组织为鳃.在8:2FTCA代谢过程中,检测到8:2氟调聚不饱和酸(8:2FTUCA)、7:3氟调聚羧酸(7:3FTCA)、全氟辛酸(PFOA)、全氟壬酸(PFNA)和全氟庚酸(PFHpA)5种代谢产物,其中7:3FTCA和PFOA为含量最丰富的2种代谢产物.它们主要分布在鳃和肝脏组织中,鳃和肝脏是8:2FTCA进行生物转化的主要器官,并且鳃组织中代谢产物的浓度最高.推测出虾夷扇贝体内8:2FTCA的生物转化路径,与虹鳟的生物转化行为相比,虾夷扇贝在代谢产物产量和半衰期上均有差异,说明水生生物的生物转化行为具有物种差异性.8:2FTCA在虾夷扇贝体内可转化为PFOA、PFNA和PFHpA等全氟烷基羧酸(PFCAs),是虾夷扇贝体内PFCAs的一个间接来源.  相似文献   

2.
以栉孔扇贝(Chlamys farreri)为受试生物,研究了栉孔扇贝对8:2氟调聚羧酸(8:2FTCA)的代谢转化特征以及代谢过程中靶器官的氧化应激响应.结果发现,栉孔扇贝可将8:2FTCA转化为8:2氟调聚不饱和酸(8:2FTUCA)、7:3氟调聚羧酸(7:3FTCA)、全氟辛酸(PFOA)、全氟壬酸(PFNA)和全氟庚酸(PFHpA)等代谢产物.栉孔扇贝鳃和肝脏中代谢产物总量最高,为8:2FTCA的主要代谢靶器官.与本课题组前期虾夷扇贝的相关研究相比,8:2FTCA在栉孔扇贝与虾夷扇贝体内的生物转化行为主要有3方面相似之处:检测到的代谢产物相同、代谢靶器官相同以及鳃是最终代谢产物PFOA生成和蓄积的主要场所;不同之处主要体现在栉孔扇贝中代谢产物以7:3FTCA占比较高,虾夷扇贝中则是PFOA占比较高.同时在8:2FTCA暴露过程中,栉孔扇贝靶器官的关键抗氧化酶出现了一定的应激效应.丙二醛(MDA)和谷胱甘肽(GSH)等氧化应激指标以及谷胱甘肽过氧化物酶(GSH-Px),超氧化物歧化酶(SOD)和过氧化氢酶(CAT)等抗氧化酶系出现不同程度变化:GSH-Px在整个代谢转化过程中呈现抑制效应;SOD,CAT活性在鳃中呈诱导效应,而在肝脏中呈现明显的剂量-效应关系,低剂量组中均呈抑制效应,高剂量组中大部分时间呈诱导效应.GSH和MDA含量不仅表现出剂量-效应关系,组织间也存在差异.暴露实验结束后,生理指标均有不同程度恢复.  相似文献   

3.
实验研究了虾夷扇贝不同组织(鳃,内脏,外套膜和贝柱)在受到重金属Cd2+污染后的蓄积和排放规律。结果表明:(1)在染毒实验期间,海水中Cd2+不断被虾夷扇贝累积,且其内脏团、外套膜、鳃、贝柱中Cd2+的蓄积量均随暴露时间增加而增大。到第14 d均达到平衡。达到平衡后Cd2+蓄积量(干重)和蓄积速率均为:内脏团>鳃>外套膜>贝柱。其数值分别为:562.93×10-6和40.21×10-6/d,354.27×10-6和25.31×10-6/d,125.36×10-6和8.95×10-6/d,34.49×10-6和2.46×10-6/d。(2)排放实验期间,各组织中Cd2+蓄积量随排放时间的增加而逐渐下降。至排放第10天各组织中的Cd2+排出率为:贝柱﹥鳃﹥外套膜﹥内脏,各组织中Cd2+含量明显降低。表明:经短时间镉污染的虾夷扇贝,转入清洁海水一段时间对其体内Cd2+的排出是很有效的。(3)不同浓度Cd2+对虾夷扇贝各组织的影响实验表明:当Cd2+浓度相同时,扇贝不同组织蓄积量和富集系数次序均为:内脏团>鳃>外套膜>贝柱。虾夷扇贝各组织Cd2+蓄积量均随着暴露水体中Cd2+含量的增加而增加,海水中Cd2+浓度不影响Cd2+在虾夷扇贝各组织内的分配次序。而同一组织对Cd2+的富集系数与其蓄积量不同,它随着金属浓度的升高而呈现下降的趋势,贝柱的富集系数始终处在最低值。  相似文献   

4.
麻痹性贝毒是对人体健康构成严重危害的甲藻类毒素。2007~2008年,大窑湾虾夷扇贝体内麻痹性贝毒2周年的调查发现,其含量与组分有着明显的季节变化,4-7月份麻痹性贝毒含量较高,4月份最高,平均含量可达378.32μg STXeq/100 g,有C1、C2、GTX1、GTX2、GTX3、GTX5、dcGTX2、dcGTX3、neoSTX、STX等10种毒素组分。大窑湾虾夷扇贝体内麻痹行贝毒组分显著增多,含量明显增高。  相似文献   

5.
以赤子爱胜蚓(Eisenia fetida)为受试生物,通过活体与离体实验,研究6:2氟调羧酸(6:2FTCA)在蚯蚓体内的毒理效应和代谢转化机制.结果表明,6:2FTCA对蚯蚓体内丙二醛(MDA)含量和过氧化物酶(POD)活性无显著影响,但能够使过氧化氢酶(CAT)活性提高,使超氧化物歧化酶(SOD)和谷胱甘肽转移酶(GST)活性显著升高,说明6:2FTCA对蚯蚓产生了氧化胁迫效应.6:2FTCA在蚯蚓细胞色素P450(CYP450)和GST酶提取液中的降解动力学均符合一级动力学模型,在CYP450(0.014/h)酶液中的降解速率明显高于GST (0.006/h),其终端全氟羧酸(PFCAs)代谢产物为全氟己酸(PFHxA)、全氟戊酸(PFPeA)和全氟丁酸(PFBA),说明CYP450和GST参与了6:2FTCA在蚯蚓体内的代谢转化,且CYP450贡献大于GST.蚯蚓肠道好氧微生物对6:2FTCA具有显著的降解效果,终端PFCAs降解产物为PFHxA和PFPeA,而肠道厌氧微生物对6:2FTCA无降解作用.  相似文献   

6.
以紫贻贝为受试生物,采用半静态暴露的方式,研究了全氟辛酸(PFOA)在紫贻贝体内的富集特征、器官分布与消除规律.结果表明,紫贻贝可快速富集PFOA,整贝在不同浓度PFOA暴露下,于4~6d达到平衡态,半衰期为0.34~0.44d(约8~10h),生物富集系数(BCFs)为5.10~9.55mL/g.PFOA在紫贻贝鳃和内脏团中的富集作用大于外套膜、性腺和闭壳肌.紫贻贝中PFOA的含量在净化6~9d后趋于空白组水平,主要代谢途径可能为鳃的作用.紫贻贝对PFOA的富集作用与暴露浓度相关,浓度越低,吸收系数和生物富集系数越大.  相似文献   

7.
研究了将青鳉鱼长期暴露于不同浓度的全氟羧酸类物质全氟十三酸(PFTriDA)后的器官分布和富集系数.结果显示, PFTriDA最高富集在性腺;其次是卵、肝脏;浓度最低的部分是残体.除了性腺之外,该器官分布与野生中华鲟的一致.在相同暴露浓度下,雄鱼体内各器官的PFTriDA的含量高于雌鱼,机理模型计算进一步表明高母子传递系数是造成雌雄差异的可能原因.随着PFTriDA暴露浓度的升高,鱼体内同一器官的生物富集系数(BCF)呈现下降趋势.  相似文献   

8.
This study examined concentrations of 15 perfluoroalkyl acids (PFAAs) in tissues from male Mozambique tilapia (Oreochromis mossambicus) collected at Loskop Dam, Mpumalanga, South Africa in 2014 and 2016. Nine of the 15 PFAAs were detected frequently and were included in statistical analysis and included two of the most commonly known PFAAs, perfluorooctanesulfonic acid (PFOS) (median, 41.6 ng/g) and perfluorooctanoic acid (PFOA) (median, 0.0825 ng/g). Of the tissues measured, plasma (2016 and 2014 median, 22.2 ng/g) contained the highest PFAA burden followed by (in descending order): liver (median, 11.6 ng/g), kidney (median, 9.04 ng/g), spleen (median, 5.92 ng/g), adipose (median, 2.54 ng/g), and muscle (median, 1.11 ng/g). Loskop Dam tilapia have been affected by an inflammatory disease of the adipose tissue known as pansteatitis, so this study also aimed to investigate relationships between PFAA tissue concentrations and incidence of pansteatitis or fish health status. Results revealed that healthy tilapia exhibited an overall higher (p-value < 0.05) PFAA burden than pansteatitis-affected tilapia across all tissues. Further analysis showed that organs previously noted in the literature to contain the highest PFAA concentrations, such as kidney, liver, and plasma, were the organs driving the difference in PFAA burden between the two tilapia groups. Care must be taken in the interpretations we draw from not only the results of our study, but also other PFAA measurements made on populations (human and wildlife alike) under differing health status.  相似文献   

9.
Tissue distribution provides important information regarding the pharmacokinetic behavior of pollutants and is invaluable when analyzing the risk posed to avian species by the exposure to such kind of pollutants. In this study, concentrations of polychlorinated dibenzo-p-dioxins (PCDDs) and polychlorinated dibenzofurans (PCDFs) were determined in muscle, liver, spleen, kidney, stomach, gall bladder, skin, heart, pancreas, intestine and lung tissue extracts of cormorants collected from Dongting Lake, China. Tissue distribution results showed preferential accumulation of PCDD/Fs in both liver and skin. The total concentration of PCDD/Fs ranged from 421 to 5696 pg/g lipid weight. Octachlorinated dibenzo-p-dioxin (OCDD) was the predominant congener in all tissues and contributed between 31% and 82% to all 17 PCDD/Fs in different tissues. The liver/muscle ratios progressively increased with the degree of chlorination of PCDDs, except for OCDD. The relative toxic potential of PCDDs and PCDFs in tissues were calculated using the World Health Organization (WHO) Toxic Equivalency Factors (TEFs) for birds. The concentrations of WHO-toxic equivalent in different tissues ranged between 14.8 and 2021 pg/g lipid weight. These results indicated PCDD/Fs may have been bio-accumulated in cormorant via food-web. Furthermore, when compared with studies reported in the literatures, the PCDD/Fs levels in the cormorant collected from Dongting Lake were still relatively high.  相似文献   

10.
冉文静  傅大放 《环境科学学报》2010,30(11):2264-2269
通过盆栽试验,研究了投加螯合剂没食子酸gallic acid(5mmol·kg-1)与表面活性剂十二烷基磺酸钠SDS(1mmol·kg-1)对黑麦草(Lolium perenneL.)体内重金属亚细胞及形态分布的影响.结果表明,单独投加gallicacid增强了黑麦草对Cd、Pb的区室化作用及对Zn的细胞壁沉积作用;复合投加gallic acid和SDS增强了黑麦草对Cd的区室化作用和细胞壁沉积作用,以及对Zn的细胞壁沉积作用.单独投加gallic acid使黑麦草体内Cd、Zn总量分别增加了33.5%和6.0%,其中,惰性态Cd、Zn所占比例分别增加了6.2%、6.3%;复合投加gallic acid和SDS使黑麦草体内Cd总量增加了35.6%,Zn总量减少了1.1%,其中,惰性态Cd、Zn所占比例分别增加了7.2%、8.6%,增强了植物对Cd、Zn的螯合作用.各处理对Pb的亚细胞分布及形态无明显影响.  相似文献   

11.
Effects of SO2 pollution on growth of the army worm, Mythimna separata, were investigated by rearing the larvae for 12 days on the wheat plants being exposed to SO2 levels ranged from 50 to 200 ppb in the field open-top fumigation devices. Larval period shortened while their mean relative growth rate (MRGR) increased as SO2 dose elevated. Similar experiment with the insect on the artificial diet excluded the possibility that SO2 pollution directly stimulated growth of the army worm.The patterns of change in amino acid hydrolysates in the host foliage suggested that contents of methionine, and perhaps, arginine in food material exposed to unpolluted air were at such levels that they could only support sub-optimum growth of the insect, and SO2 pollution increased concentrations of these limiting amino acids, resulting in better performance of the larvae.  相似文献   

12.
选取腐殖酸重要组分胡敏酸、富里酸、胡敏素为研究对象,研究了不同老化时间下多环芳烃(PAHs)在腐殖酸各组分中的赋存特征.同时,探究了过硫酸钠、高锰酸钾、芬顿试剂、过氧化氢4种氧化剂氧化PAHs过程中污染物在腐殖酸和上清液中的分布情况,确定胡敏酸、富里酸、胡敏素中PAHs的降解效率.实验结果表明,PAHs在胡敏素中存在吸附滞后现象,老化前期胡敏素对PAHs的吸附速率慢、吸附量少,但老化后期出现吸附量的反超,因此,胡敏素、胡敏酸和富里酸中PAHs的最终吸附量并没有明显差异.高环PAHs在3种腐殖酸组分中的吸附速率和最终吸附量远小于低、中环PAHs.过硫酸钠和高锰酸钾能够较好地去除胡敏酸、富里酸、胡敏素中的大部分PAHs,去除率均在95%左右,芬顿试剂对胡敏酸、富里酸和胡敏素中总PAHs的去除效果差别不大,去除率均在79.36%~88.05%之间;过氧化氢对胡敏酸和胡敏素中PAHs的去除率分别为82.82%和61.77%,而对富里酸中PAHs的去除效果最差,去除率仅为43.96%.过硫酸钠和高锰酸钾是氧化PAHs类有机污染土壤的最佳氧化剂,能够有效提高不同组分腐殖酸中PAHs的去除率.  相似文献   

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