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好氧堆肥对生物炭理化性质及吸附Cd^(2+)稳定性的影响
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作者 杨婷 王守红 +6 位作者 马林杰 张诚信 寇祥明 张家宏 杨军 袁秦 徐荣 《江苏农业学报》 CSCD 北大核心 2024年第1期75-82,共8页
生物炭可作为畜禽粪污好氧堆肥中去除重金属的功能材料,但堆体内部复杂的环境变化会影响生物炭的理化性质,从而影响其对重金属吸附的稳定性。将普通秸秆生物炭(BC)和磁性秸秆生物炭(FBC)置于牛粪中进行30 d好氧堆肥试验,研究两种生物炭... 生物炭可作为畜禽粪污好氧堆肥中去除重金属的功能材料,但堆体内部复杂的环境变化会影响生物炭的理化性质,从而影响其对重金属吸附的稳定性。将普通秸秆生物炭(BC)和磁性秸秆生物炭(FBC)置于牛粪中进行30 d好氧堆肥试验,研究两种生物炭基本理化性质及对Cd^(2+)吸附稳定性的影响。结果表明:堆肥处理使BC和FBC的比表面积分别增加20.56%和76.64%,总孔容分别下降2.36%和3.70%,平均孔径分别下降19.17%和46.54%,表面官能团发生变化,FBC的饱和磁化强度下降43.67%。堆肥后,饱和吸附Cd^(2+)的两种生物炭BC和FBC的TCLP提取态Cd(TCLP-Cd)占比和TCLP提取液pH(TCLP-pH)均呈下降趋势,其中TCLP-Cd占比分别从28.31%和22.85%显著下降至26.76%和13.85%(P<0.05),TCLP-pH分别从3.66和3.29显著下降至3.51和3.14。综上,堆肥老化改变了两种生物炭的理化性质,降低了其酸可提取态Cd的含量,提高了其吸附Cd 2+的稳定性,且FBC中Cd^(2+)的稳定性更强。 展开更多
关键词 生物炭 镉(Cd^(2+)) 堆肥 吸附稳定性
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羧甲基改性沙柳木粉膜吸附Cd^(2+)的性能研究
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作者 周丽娟 刘小凯 +4 位作者 赵白云 贺豪 赵轩 王晨旭 王丽 《化学研究与应用》 CAS 北大核心 2024年第6期1341-1348,共8页
沙柳木粉(SPP)经醚化反应制备成羧甲基沙柳木粉(CMS)。将CMS溶解到1-丙烯基-3-甲基咪唑氯盐(AMIMJCI)和二甲基亚砜(DMSO)中,采用聚乙烯醇(PVA)为成膜剂,制备羧甲基沙柳木粉膜(CMSM)。探究在不同吸附条件下CMSM对Cd^(2+)的吸附性能。采用... 沙柳木粉(SPP)经醚化反应制备成羧甲基沙柳木粉(CMS)。将CMS溶解到1-丙烯基-3-甲基咪唑氯盐(AMIMJCI)和二甲基亚砜(DMSO)中,采用聚乙烯醇(PVA)为成膜剂,制备羧甲基沙柳木粉膜(CMSM)。探究在不同吸附条件下CMSM对Cd^(2+)的吸附性能。采用FTIR、SEM、XRD和XPS对CMSM进行表征。吸附结果表明:Cd^(2+)初始浓度为800mg·L^(-1),pH值为5,吸附时间105min,吸附温度35℃时,CMSM对Cd^(2+)的吸附效果最佳。表征结果表明:0-H、-COOH、-C-O-C-、-CH_(2)、-NH_(2),基团参与吸附Cd^(2+)的反应。CMSM表面比较疏松,有孔隙,成狭缝型。CMSM晶体内部变得蓬松,Cd^(2+)更容易被CMSM吸附。CMSM对Cd^(2+)的吸附属于多分子层吸附,同时存在化学吸附和物理吸附,且以化学吸附为主,准二级动力学模型和Freundlich等温线模型与其吸附过程相符合。 展开更多
关键词 沙柳木粉 羧甲基改性 吸附 Cd^(2+)
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Involvement of the ABA-and H_(2)O_(2)-Mediated Ascorbate-Glutathione Cycle in the Drought Stress Responses of Wheat Roots 被引量:1
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作者 Mengyuan Li Zhongye Gao +2 位作者 Lina Jiang Leishan Chen Jianhui Ma 《Phyton-International Journal of Experimental Botany》 SCIE 2024年第2期329-342,共14页
Abscisic acid(ABA),hydrogen peroxide(H_(2)O_(2)) and ascorbate(AsA)–glutathione(GSH)cycle are widely known for their participation in various stresses.However,the relationship between ABA and H_(2)O_(2) levels and th... Abscisic acid(ABA),hydrogen peroxide(H_(2)O_(2)) and ascorbate(AsA)–glutathione(GSH)cycle are widely known for their participation in various stresses.However,the relationship between ABA and H_(2)O_(2) levels and the AsA–GSH cycle under drought stress in wheat has not been studied.In this study,a hydroponic experiment was conducted in wheat seedlings subjected to 15%polyethylene glycol(PEG)6000–induced dehydration.Drought stress caused the rapid accumulation of endogenous ABA and H_(2)O_(2) and significantly decreased the number of root tips compared with the control.The application of ABA significantly increased the number of root tips,whereas the application of H_(2)O_(2) markedly reduced the number of root tips,compared with that under 15%PEG-6000.In addition,drought stress markedly increased the DHA,GSH and GSSG levels,but decreased the AsA levels,AsA/DHA and GSH/GSSG ratios compared with those in the control.The activities of the four enzymes in the AsA–GSH cycle were also markedly increased under drought stress,including glutathione reductase(GR),ascorbate peroxidase(APX),monodehydroascorbate reductase(MDHAR)and dehydroascorbate reductase(DHAR),compared with those in the control.However,the application of an ABA inhibitor significantly inhibited GR,DHAR and APX activities,whereas the application of an H_(2)O_(2) inhibitor significantly inhibited DHAR and MDHAR activities.Furthermore,the application of ABA inhibitor significantly promoted the increases of H_(2)O_(2) and the application of H_(2)O_(2) inhibitor significantly blocked the increases of ABA,compared with those under 15% PEG-6000.Taken together,the results indicated that ABA and H_(2)O_(2) probably interact under drought stress in wheat;and both of them can mediate drought stress by modulating the enzymes in AsA–GSH cycle,where ABA acts as the main regulator of GR,DHAR,and APX activities,and H_(2)O_(2) acts as the main regulator of DHAR and MDHAR activities. 展开更多
关键词 ABA H_(2)O_(2) AsA-GSH cycle drought stress wheat roots
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课程实践融入《试验设计与数据处理》教学--改性花生壳吸附剂的制备及其对重金属Cd^(2+)的吸附性能研究
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作者 马娜 瞿金为 +2 位作者 韦文旺 赖飞燕 莫福旺 《广东化工》 CAS 2024年第11期229-232,共4页
随着我国提出新工科建设路线,结合地方高校(贺州学院)的地域特色和应用型人才的培养目标,本文通过课程考核形式,设计一个利用花生壳为原料制备出改性花生壳吸附剂(MPS)的试验。学生通过对吸附剂的合成、表征、试验设计和数据分析等环节... 随着我国提出新工科建设路线,结合地方高校(贺州学院)的地域特色和应用型人才的培养目标,本文通过课程考核形式,设计一个利用花生壳为原料制备出改性花生壳吸附剂(MPS)的试验。学生通过对吸附剂的合成、表征、试验设计和数据分析等环节,将《试验设计与数据处理》课程中所学知识应用到实际试验中,加深对课程知识的理解,锻炼其实际应用能力。 展开更多
关键词 改性花生壳吸附剂 吸附率 Cd^(2+)
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虾青素对镉离子(Cd^(2+))诱导下斑马鱼胚胎抗氧化指标的影响
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作者 常孟阳 杨越 +4 位作者 李晨露 董静 王飞虎 袁杰 陈玉环 《水产学杂志》 CAS 2024年第3期37-43,49,共8页
(28.0±0.5)℃下,将100个产后1 h的斑马鱼(Danio rerio)胚胎放在120 mm培养皿中,暴露在<0.02%浓度的二甲基亚砜(DMSO,对照组)、50μg/L Cd^(2+)(低浓度暴露组)、500μg/L Cd^(2+)(高浓度暴露组)和Cd^(2+)+雨生红球藻(Haematococc... (28.0±0.5)℃下,将100个产后1 h的斑马鱼(Danio rerio)胚胎放在120 mm培养皿中,暴露在<0.02%浓度的二甲基亚砜(DMSO,对照组)、50μg/L Cd^(2+)(低浓度暴露组)、500μg/L Cd^(2+)(高浓度暴露组)和Cd^(2+)+雨生红球藻(Haematococcus pluvialis)虾青素AST联合暴露组(50μg/L Cd^(2+)+100μg/L AST组和500μg/L Cd^(2+)+100μg/L AST组)5个处理组中,120 h后测定斑马鱼幼鱼活性氧(ROS)、丙二醛(MDA)和谷胱甘肽酶(GSH)含量、超氧化物歧化酶(SOD)活性和总抗氧化能力(T-AOC),研究重金属镉离子(Cd^(2+))暴露下斑马鱼胚胎的抗氧化响应,探讨AST对斑马鱼机体氧化损伤的缓解效果。结果表明,斑马鱼胚胎Cd^(2+)暴露120 h后,体内活性氧(ROS)和丙二醛(MDA)含量随着Cd^(2+)浓度的升高而增加;GSH含量、SOD和T-AOC的活性随着Cd^(2+)浓度的增加而降低。说明Cd^(2+)可诱导斑马鱼机体出现氧化应激和氧化损伤。添加AST后,斑马鱼幼鱼体内ROS和MDA含量下降,GSH含量、SOD和T-AOC活性上升,说明添加AST可在一定程度上缓解重金属Cd^(2+)对斑马鱼体内抗氧化指标的负面影响。本研究结果可为AST作为新型鱼类饲料添加剂提供理论依据。 展开更多
关键词 重金属Cd^(2+) 虾青素 斑马鱼胚胎 氧化应激
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粉煤灰基P型沸石吸附水中Cu^(2+)和Cd^(2+)
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作者 孙昊勇 汪泽华 +1 位作者 姚亦扬 吴代赦 《中国环境科学》 EI CAS CSCD 北大核心 2024年第6期3132-3141,共10页
以粉煤灰(FA)为原料经水热反应合成了P型沸石(Z-P).采用X射线荧光光谱仪、X射线衍射仪、场发射环境扫描电子显微镜、比表面孔径分析仪、傅里叶变换红外光谱仪和X射线光电子能谱对Z-P进行表征,并研究了其对Cu^(2+)和Cd^(2+)的吸附性能.... 以粉煤灰(FA)为原料经水热反应合成了P型沸石(Z-P).采用X射线荧光光谱仪、X射线衍射仪、场发射环境扫描电子显微镜、比表面孔径分析仪、傅里叶变换红外光谱仪和X射线光电子能谱对Z-P进行表征,并研究了其对Cu^(2+)和Cd^(2+)的吸附性能.结果表明,Z-P的BET比表面积和孔隙体积分别为38.46m^(2)/g和0.2180cm^(3)/g,均高于FA的1.273m^(2)/g和0.0120cm^(3)/g.FA、Z-P对Cu^(2+)和Cd^(2+)的吸附更符合拟二级动力学模型和Langmuir等温线模型.Z-P对Cu^(2+)和Cd^(2+)的最大吸附量分别为157.48,131.57mg/g,远高于于FA的30.88,25.47mg/g.Z-P对Cd^(2+)的循环再生吸附效果好,但对Cu^(2+)的循环再生吸附效果较差.离子强度对Z-P吸附Cu^(2+)和Cd^(2+)分别起促进和抑制作用.表明Z-P可以作为有效且廉价的Cu^(2+)、Cd^(2+)吸附剂,为FA的资源化利用和含Cu^(2+)、Cd^(2+)重金属离子废水吸附剂的开发提供了一种方法. 展开更多
关键词 粉煤灰 P型沸石 吸附 Cu^(2+) Cd^(2+)
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Dip2a regulates stress susceptibility in the basolateral amygdala
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作者 Jing Li Zixuan He +4 位作者 Weitai Chai Meng Tian Huali Yu Xiaoxiao He Xiaojuan Zhu 《Neural Regeneration Research》 SCIE CAS 2025年第6期1735-1748,共14页
Dysregulation of neurotransmitter metabolism in the central nervous system contributes to mood disorders such as depression, anxiety, and post–traumatic stress disorder. Monoamines and amino acids are important types... Dysregulation of neurotransmitter metabolism in the central nervous system contributes to mood disorders such as depression, anxiety, and post–traumatic stress disorder. Monoamines and amino acids are important types of neurotransmitters. Our previous results have shown that disco-interacting protein 2 homolog A(Dip2a) knockout mice exhibit brain development disorders and abnormal amino acid metabolism in serum. This suggests that DIP2A is involved in the metabolism of amino acid–associated neurotransmitters. Therefore, we performed targeted neurotransmitter metabolomics analysis and found that Dip2a deficiency caused abnormal metabolism of tryptophan and thyroxine in the basolateral amygdala and medial prefrontal cortex. In addition, acute restraint stress induced a decrease in 5-hydroxytryptamine in the basolateral amygdala. Additionally, Dip2a was abundantly expressed in excitatory neurons of the basolateral amygdala, and deletion of Dip2a in these neurons resulted in hopelessness-like behavior in the tail suspension test. Altogether, these findings demonstrate that DIP2A in the basolateral amygdala may be involved in the regulation of stress susceptibility. This provides critical evidence implicating a role of DIP2A in affective disorders. 展开更多
关键词 5-HYDROXYTRYPTAMINE acute restraint stress basolateral amygdala CaMKII neurons DIP2A metabolomics NEUROTRANSMITTERS principal component analysis stress susceptibility TRYPTOPHAN
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Upregulation of α-ENaC induces pancreatic β-cell dysfunction,ER stress,and SIRT2 degradation
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作者 Xue Zhang Dan Zhang +7 位作者 Lei Huo Xin Zhou Jia Zhang Min Li Dongming Su Peng Sun Fang Chen Xiubin Liang 《Journal of Biomedical Research》 CAS CSCD 2024年第3期241-255,共15页
Islet beta cells(β-cells)produce insulin in response to high blood glucose levels,which is essential for preserving glucose homeostasis.Voltage-gated ion channels inβ-cells,including Na+,K+,and Ca2+channels,aid in t... Islet beta cells(β-cells)produce insulin in response to high blood glucose levels,which is essential for preserving glucose homeostasis.Voltage-gated ion channels inβ-cells,including Na+,K+,and Ca2+channels,aid in the release of insulin.The epithelial sodium channel alpha subunit(α-ENaC),a voltage-independent sodium ion channel,is also expressed in human pancreatic endocrine cells.However,there is no reported study on the function of ENaC in theβ-cells.In the current study,we found thatα-ENaC was expressed in human pancreatic glandule and pancreatic isletβ-cells.In the pancreas of db/db mice and high-fat diet-induced mice,and in mouse isletβ-cells(MIN6 cells)treated with palmitate,α-ENaC expression was increased.Whenα-ENaC was overexpressed in MIN6 cells,insulin content and glucose-induced insulin secretion were significantly reduced.On the other hand,palmitate injured isletβ-cells and suppressed insulin synthesis and secretion,but increasedα-ENaC expression in MIN6 cells.However,α-ENaC knockout(Scnn1a−/−)in MIN6 cells attenuatedβ-cell disorder induced by palmitate.Furthermore,α-ENaC regulated the ubiquitylation and degradation of sirtuin 2 inβ-cells.α-ENaC also modulatedβ-cell function in correlation with the inositol-requiring enzyme 1 alpha/X-box binding protein 1(IRE1α/XBP1)and protein kinase RNA-like endoplasmic reticulum kinase/C/EBP homologous protein(PERK/CHOP)endoplasmic reticulum stress pathways.These results suggest thatα-ENaC may play a novel role in insulin synthesis and secretion in theβ-cells,and the upregulation ofα-ENaC promotes isletβ-cell dysfunction.In conclusion,α-ENaC may be a key regulator involved in isletβ-cell damage and a potential therapeutic target for type 2 diabetes mellitus. 展开更多
关键词 α-ENaC pancreaticβ-cells type 2 diabetes mellitus endoplasmic reticulum stress sirtuin 2
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Protective effect of camellia oil on H_(2)O_(2)-induced oxidative stress injury in H9C2 cardiomyocytes of rats
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作者 YAN Qing GUO Zhen +3 位作者 SUN Sai-nan LI Jing TAN Ji-yong LI Jing 《Journal of Hainan Medical University》 CAS 2024年第1期1-7,共7页
Objective: To explore the protective effect of camellia oil against H2O2-induced oxidative stress injury in rat H9C2 cardiomyocytes. Methods: CCK8 method was used to detect the cell survival rate of H9C2 cardiomyocyte... Objective: To explore the protective effect of camellia oil against H2O2-induced oxidative stress injury in rat H9C2 cardiomyocytes. Methods: CCK8 method was used to detect the cell survival rate of H9C2 cardiomyocytes treated with different concentrations of H2O2. Normal cultured cells were used as the blank control group, and the cells were treated with 200 μmol/L H2O2 for 24 h. An oxidative stress injury model was constructed as the model group. The cells were pretreated with 1%, 0.1% and 0.01% camellia oil for 24 h, and then H2O2 was added for 24 h as the experimental group. The β-galactosidase senescence staining assay, mitochondrial membrane potential assay, EdU cell proliferation staining assay and scratch assay were used to observe the changes of cell senescence, mitochondrial membrane potential, proliferation, apoptosis and migration in each group. The superoxide dismutase (SOD) activity, lactate dehydrogenase (LDH) activity, and malondialdehyde (MDA) content of the cells in each group were detected by using the kit. Results: The cell viability of H9C2 cardiomyocytes treated with different concentrations of H2O2 was inhibited and positively correlated with the concentration of H2O2 (P<0.01). Compared with the blank control group, the positive rate of cell senescence, MDA content and LDH activity increased in the H2O2 model group (P<0.01);mitochondrial membrane potential, cellular value-added rate, migration rate and SOD activity decreased (P<0.01). Compared with the H2O2 model group, the positive rate of cellular senescence (P<0.01 or P<0.05), MDA content and LDH activity decreased (P< 0.01 or P<0.05);mitochondrial membrane potential increased, cell proliferation rate and migration rate increased (P<0.01 or P<0.05) in the experimental group. Conclusion: Camellia oil can significantly inhibit oxidative stress injury in H9C2 cells and exert cardiomyocyte protective effects. 展开更多
关键词 Camellia oil H_(2)O_(2) H9C2 Oxidative stress Protective
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Hydrogen sulfide reduces oxidative stress in Huntington's disease via Nrf2
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作者 Zige Jiang Dexiang Liu +7 位作者 Tingting Li Chengcheng Gai Danqing Xin Yijing Zhao Yan Song Yahong Cheng Tong Li Zhen Wang 《Neural Regeneration Research》 SCIE CAS 2025年第6期1776-1788,共13页
The pathophysiology of Huntington's disease involves high levels of the neurotoxin quinolinic acid. Quinolinic acid accumulation results in oxidative stress, which leads to neurotoxicity. However, the molecular an... The pathophysiology of Huntington's disease involves high levels of the neurotoxin quinolinic acid. Quinolinic acid accumulation results in oxidative stress, which leads to neurotoxicity. However, the molecular and cellular mechanisms by which quinolinic acid contributes to Huntington's disease pathology remain unknown. In this study, we established in vitro and in vivo models of Huntington's disease by administering quinolinic acid to the PC12 neuronal cell line and the striatum of mice, respectively. We observed a decrease in the levels of hydrogen sulfide in both PC12 cells and mouse serum, which was accompanied by down-regulation of cystathionine β-synthase, an enzyme responsible for hydrogen sulfide production. However, treatment with NaHS(a hydrogen sulfide donor) increased hydrogen sulfide levels in the neurons and in mouse serum, as well as cystathionine β-synthase expression in the neurons and the mouse striatum, while also improving oxidative imbalance and mitochondrial dysfunction in PC12 cells and the mouse striatum. These beneficial effects correlated with upregulation of nuclear factor erythroid 2-related factor 2 expression. Finally, treatment with the nuclear factor erythroid 2-related factor 2inhibitor ML385 reversed the beneficial impact of exogenous hydrogen sulfide on quinolinic acid-induced oxidative stress. Taken together, our findings show that hydrogen sulfide reduces oxidative stress in Huntington's disease by activating nuclear factor erythroid 2-related factor 2,suggesting that hydrogen sulfide is a novel neuroprotective drug candidate for treating patients with Huntington's disease. 展开更多
关键词 apoptosis CYSTATHIONINE-Β-SYNTHASE nuclear factor erythroid 2-related factor 2 Huntington's disease hydrogen sulfide MITOCHONDRION NEUROPLASTICITY oxidative stress quinolinic acid reactive oxygen species
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Effects of Exogenous H_(2)O_(2) on ROS Metabolism in Nitraria tangutorum Bobr. Leaves Under Salt Stress
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作者 Zhang Nan Cahaeraduqin Sunaer +3 位作者 Du Jinxue Pan Yiliang Wang Rui Liu Wei 《Journal of Northeast Agricultural University(English Edition)》 CAS 2024年第1期20-27,共8页
Salt stress is a major abiotic stress limiting plant growth and yield. In the present study, the effects of exogenous H_(2)O_(2) on the reactive oxygen species(ROS) metabolism and the antioxidant system in leaves of N... Salt stress is a major abiotic stress limiting plant growth and yield. In the present study, the effects of exogenous H_(2)O_(2) on the reactive oxygen species(ROS) metabolism and the antioxidant system in leaves of Nitralia tangutorum Bobr. under salt stress were studied. N. tangutorum seedlings were subjected to 200 mmol·L^(-1) NaCl treatment with or without the exogenous application of H_(2)O_(2) for 7 days. The results showed that NaCl stress significantly increased the relative conductivity, the contents of thiobarbituric acid reactive substances(TBARS) and ROS(H_(2)O_(2) and O_(2)^(·-)), as well as promoted the activities of antioxidant enzymes including superoxide dismutase(SOD), peroxidase(POD), catalase(CAT), and ascorbate peroxidase(APX) in N. tangutorum leaves. In addition, exogenous H_(2)O_(2) decreased the relative conductivity, the contents of TBARS, H_(2)O_(2) and O_(2)^(·-), while further enhanced the activities of antioxidant enzymes. These results indicated that H_(2)O_(2) effectively alleviated the adverse effects of NaCl stress on N. tangutorum through the regulation of ROS metabolism. 展开更多
关键词 H_(2)O_(2) NaCl stress reactive oxygen species antioxidant enzymes Nitraria tangutorum Bobr
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Duodenal-jejunal bypass improves hypothalamic oxidative stress and inflammation in diabetic rats via glucagon-like peptide 1-mediated Nrf2/HO-1 signaling
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作者 Huai-Jie Wang Li-Bin Zhang +4 位作者 Si-Peng Sun Qing-Tao Yan Zhi-Qin Gao Fang-Ming Fu Mei-Hua Qu 《World Journal of Diabetes》 SCIE 2024年第2期287-304,共18页
BACKGROUND Type 2 diabetes mellitus(T2DM)is often accompanied by impaired glucose utilization in the brain,leading to oxidative stress,neuronal cell injury and inflammation.Previous studies have shown that duodenal je... BACKGROUND Type 2 diabetes mellitus(T2DM)is often accompanied by impaired glucose utilization in the brain,leading to oxidative stress,neuronal cell injury and inflammation.Previous studies have shown that duodenal jejunal bypass(DJB)surgery significantly improves brain glucose metabolism in T2DM rats,the role and the metabolism of DJB in improving brain oxidative stress and inflammation condition in T2DM rats remain unclear.AIM To investigate the role and metabolism of DJB in improving hypothalamic oxidative stress and inflammation condition in T2DM rats.METHODS A T2DM rat model was induced via a high-glucose and high-fat diet,combined with a low-dose streptozotocin injection.T2DM rats were divided into DJB operation and Sham operation groups.DJB surgical intervention was carried out on T2DM rats.The differential expression of hypothalamic proteins was analyzed using quantitative proteomics analysis.Proteins related to oxidative stress,inflammation,and neuronal injury in the hypothalamus of T2DM rats were analyzed by flow cytometry,quantitative real-time PCR,Western blotting,and immunofluorescence.RESULTS Quantitative proteomics analysis showed significant differences in proteins related to oxidative stress,inflammation,and neuronal injury in the hypothalamus of rats with T2DM-DJB after DJB surgery,compared to the T2DM-Sham groups of rats.Oxidative stress-related proteins(glucagon-like peptide 1 receptor,Nrf2,and HO-1)were significantly increased(P<0.05)in the hypothalamus of rats with T2DM after DJB surgery.DJB surgery significantly reduced(P<0.05)hypothalamic inflammation in T2DM rats by inhibiting the activation of NF-κB and decreasing the expression of interleukin(IL)-1βand IL-6.DJB surgery significantly reduced(P<0.05)the expression of factors related to neuronal injury(glial fibrillary acidic protein and Caspase-3)in the hypothalamus of T2DM rats and upregulated(P<0.05)the expression of neuroprotective factors(C-fos,Ki67,Bcl-2,and BDNF),thereby reducing hypothalamic injury in T2DM rats.CONCLUSION DJB surgery improve oxidative stress and inflammation in the hypothalamus of T2DM rats and reduce neuronal cell injury by activating the glucagon-like peptide 1 receptor-mediated Nrf2/HO-1 signaling pathway. 展开更多
关键词 Duodenal jejunal bypass surgery Type 2 diabetes mellitus Neuron apoptosis INFLAMMATORY Oxidative stress Hypothalamic injury
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复配修饰新疆灰漠土对Cd^(2+)的吸附性能研究
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作者 王潇 黄蕾 +1 位作者 刘伟 王培杉 《广东化工》 CAS 2024年第5期30-32,共3页
选用了两性离子型表面活性剂BS和阴离子型表面活性剂SDS,按照不同比例量配比,对新疆灰漠土进行了修饰,制备了8种修饰土样,以未经修饰的原土样(CK)为对照,在同样条件下分别对重金属离子Cd^(2+)的吸附性能进行了测试,通过Langmuir等温吸... 选用了两性离子型表面活性剂BS和阴离子型表面活性剂SDS,按照不同比例量配比,对新疆灰漠土进行了修饰,制备了8种修饰土样,以未经修饰的原土样(CK)为对照,在同样条件下分别对重金属离子Cd^(2+)的吸附性能进行了测试,通过Langmuir等温吸附模型描述Cd^(2+)在灰漠土中的吸附特征,结果表明以两性-阴离子表面活性剂体系复配修饰新疆灰漠土能够显著提升其对重金属离子Cd^(2+)的吸附性能。 展开更多
关键词 灰漠土 表面活性剂 复配修饰 吸附 Cd^(2+)
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JA-mediated MYC2/LOX/AOS feedback loop regulates osmotic stress response in tea plant
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作者 Junyan Zhu Hongrong Chen +5 位作者 Lu Liu Xiaobo Xia Xiaomei Yan Xiaozeng Mi Shengrui Liu Chaoling Wei 《Horticultural Plant Journal》 SCIE CAS CSCD 2024年第3期931-946,共16页
Osmotic stress caused by low-temperature,drought and salinity was a prevalent abiotic stress in plant that severely inhibited plant development and agricultural yield,particularly in tea plant.Jasmonic acid(JA)is an i... Osmotic stress caused by low-temperature,drought and salinity was a prevalent abiotic stress in plant that severely inhibited plant development and agricultural yield,particularly in tea plant.Jasmonic acid(JA)is an important phytohormone involving in plant stress.However,underlying molecular mechanisms of JA modulated osmotic stress response remains unclear.In this study,high concentration of mannitol induced JA accumulation and increase of peroxidase activity in tea plant.Integrated transcriptome mined a JA signaling master,MYC2 transcription factor is shown as a hub regulator that induced by mannitol,expression of which positively correlated with JA biosynthetic genes(LOX and AOS)and peroxidase genes(PER).CsMYC2 was determined as a nuclei-localized transcription activator,furthermore,ProteinDNA interaction analysis indicated that CsMYC2 was positive regulator that activated the transcription of CsLOX7,CsAOS2,CsPER1 and CsPER3via bound with their promoters,respectively.Suppression of CsMYC2 expression resulted in a reduced JA content and peroxidase activity and osmotic stress tolerance of tea plant.Overexpression of CsMYC2 in Arabidopsis improved JA content,peroxidase activity and plants tolerance against mannitol stress.Together,we proposed a positive feedback loop mediated by CsMYC2,CsLOX7 and CsAOS2 which constituted to increase the tolerance of osmotic stress through fine-tuning the accumulation of JA levels and increase of POD activity in tea plant. 展开更多
关键词 Camellia sinensis Jasmonic acid(JA) MYC2 transcription factor Lipoxygenase(LOX) Osmotic stress Peroxidase(POD) Reactive oxygen species(ROS)
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ITO电极在水中超低水平Cd^(2+)检测中的应用
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作者 李晓龙 陈玉萍 +2 位作者 李燕怡 赖厚政 王传发 《甘肃科学学报》 2024年第1期46-51,共6页
为了检测水质中痕量水平的Cd^(2+),以氧化铟锡(ITO)薄膜电极为工作电极,铂片和饱和甘汞电极(SCE)分别为对电极和参比电极,构建了针对Cd^(2+)的化学传感器。采用差分脉冲伏安法(DPV)对构筑的化学传感器在含Cd^(2+)的乙酸溶液(pH=4.5)中... 为了检测水质中痕量水平的Cd^(2+),以氧化铟锡(ITO)薄膜电极为工作电极,铂片和饱和甘汞电极(SCE)分别为对电极和参比电极,构建了针对Cd^(2+)的化学传感器。采用差分脉冲伏安法(DPV)对构筑的化学传感器在含Cd^(2+)的乙酸溶液(pH=4.5)中的灵敏度、选择性、检出限和长期稳定性进行了评价。研究结果表明,所构筑的化学传感平台对Cd^(2+)的灵敏度为24.61μA/μmol/L,Cd^(2+)的校准曲线方程为Y=24.61X+11.145,相关系数(R2)为0.994,检出限(LOD)为0.06μmol/L;干扰性实验结果表明,Zn^(2+)、Cu^(2+)、Pb^(2+)、Ag^(+)4种金属离子对Cd^(2+)的检测干扰较小;稳定性实验结果表明,所构建的针对Cd^(2+)的化学传感器具有良好的稳定性;实际水样检测表明,构建的化学传感器可以用来对自来水中Cd^(2+)进行检测。研究显示,所构建的针对Cd^(2+)的化学传感器可以用来检测水质中痕量Cd^(2+)。 展开更多
关键词 Cd^(2+) 差分脉冲伏安法 电化学 灵敏度
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茶梗基活性炭的制备及其对水中重金属Cd^(2+)的吸附
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作者 林美珊 郑虹 +1 位作者 陈玉 池林倩 《福建技术师范学院学报》 2024年第2期71-78,共8页
以茶梗为原料,通过氯化锌活化-高温炭化法制备茶梗基活性炭,并以静态吸附法去除模拟废水中的Cd^(2+).考察吸附剂用量、Cd^(2+)初始质量浓度、溶液初始pH值等对茶梗基活性炭吸附Cd^(2+)效果的影响;通过红外光谱测定吸附前后的茶梗基活性... 以茶梗为原料,通过氯化锌活化-高温炭化法制备茶梗基活性炭,并以静态吸附法去除模拟废水中的Cd^(2+).考察吸附剂用量、Cd^(2+)初始质量浓度、溶液初始pH值等对茶梗基活性炭吸附Cd^(2+)效果的影响;通过红外光谱测定吸附前后的茶梗基活性炭的表面结构、吸附动力学及等吸附温模型拟合,结果表明,茶梗基活性炭对Cd^(2+)的吸附符合准二级动力学模型及Langmuir吸附等温模型.正交实验得出,茶梗基活性炭对Cd^(2+)吸附的最佳实验条件. 展开更多
关键词 茶梗 活性炭 Cd^(2+) 吸附性能
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硝酸改性显著提高花生壳生物炭对Cd^(2+)的去除能力
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作者 陈琳媛 邱振鲁 《环保科技》 2024年第1期35-39,46,共6页
本研究采用热分解的方法制备花生壳生物炭,并用乙醇、硝酸和高锰酸钾溶液对其进行改性。分别研究不同方法改性后生物炭吸附Cd^(2+)的性能对初始浓度、吸附时间和pH的响应特征并通过吸附热力学和动力学探索吸附机理。结果表明,改性后的... 本研究采用热分解的方法制备花生壳生物炭,并用乙醇、硝酸和高锰酸钾溶液对其进行改性。分别研究不同方法改性后生物炭吸附Cd^(2+)的性能对初始浓度、吸附时间和pH的响应特征并通过吸附热力学和动力学探索吸附机理。结果表明,改性后的花生壳生物炭对Cd^(2+)的吸附量和去除率明显提高。在花生壳投加量一定的情况下,综合分析得知硝酸改性后对Cd2+吸附效果最佳,吸附量为48.47 mg/g,去除率为96.94%。最佳条件为:Cd^(2+)初始浓度200 mg/L,pH为7,吸附时间120 min。 展开更多
关键词 花生壳 生物炭 改性 等温吸附 吸附动力学Cd^(2+)
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多胺化核桃壳对Cd^(2+)的吸附性能研究 被引量:1
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作者 刘广田 张亮 《粮食与油脂》 北大核心 2023年第12期98-101,162,共5页
采用超支化聚乙烯亚胺(HBPEI)改性核桃壳(多胺化核桃壳)处理含Cd^(2+)模拟废水。考察了pH、多胺化核桃壳质量浓度、Cd^(2+)溶液初始质量浓度以及吸附时间对Cd^(2+)吸附行为的影响。结果发现:多胺化核桃壳在pH为9.5时,吸附量达到最大,吸... 采用超支化聚乙烯亚胺(HBPEI)改性核桃壳(多胺化核桃壳)处理含Cd^(2+)模拟废水。考察了pH、多胺化核桃壳质量浓度、Cd^(2+)溶液初始质量浓度以及吸附时间对Cd^(2+)吸附行为的影响。结果发现:多胺化核桃壳在pH为9.5时,吸附量达到最大,吸附达到平衡的时间为120 min。吸附过程具有准二级动力学的特征,且以化学吸附为主,为单层吸附。当吸附温度在25℃、Cd^(2+)初始质量浓度为1 000 mg/L时,多胺化核桃壳对Cd^(2+)的吸附量可达640.16 mg/g,远远高于相同条件下未改性核桃壳对Cd^(2+)的吸附量(166.96 mg/g),显示其超强的吸附能力。经过5次吸附-解吸附-再吸附后,多胺化核桃壳对Cd^(2+)的去除率仍保持在90%以上,说明吸附剂具有很好的可循环性。 展开更多
关键词 多胺化核桃壳 Cd^(2+)模拟废水 吸附性能 等温吸附
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不同热解温度牛骨生物炭特征及对Cd^(2+)的吸附
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作者 黄涛 胡林潮 +2 位作者 吴佳楠 张文艺 毛林强 《农业环境科学学报》 CAS CSCD 北大核心 2023年第7期1632-1644,共13页
本文研究了不同热解温度条件下牛骨生物炭理化性质及对Cd^(2+)的吸附特性,采用限氧控温慢速热裂解的方式,在300、350、400、500、700℃和900℃条件下制备牛骨生物炭。分别采用热重分析仪、傅里叶变换红外光谱以及扫描电镜能谱仪等设备... 本文研究了不同热解温度条件下牛骨生物炭理化性质及对Cd^(2+)的吸附特性,采用限氧控温慢速热裂解的方式,在300、350、400、500、700℃和900℃条件下制备牛骨生物炭。分别采用热重分析仪、傅里叶变换红外光谱以及扫描电镜能谱仪等设备对牛骨生物炭进行表征,并通过批量吸附实验分析其对Cd^(2+)的吸附特性。结果表明:牛骨生物炭pH值、灰分含量随热解温度提高而增加,芳构度逐渐增强,孔径与比表面积增大,而挥发分、有机碳含量与全氮含量减少;准二级动力学模型可以准确拟合5种牛骨生物炭对Cd^(2+)的吸附动力学过程(R2>0.999),在接近吸附平衡时,吸附速率由颗粒内扩散主导;牛骨生物炭对Cd^(2+)等温吸附过程更符合Langmuir模型,700℃条件下制备的牛骨生物炭对Cd^(2+)的吸附效果最好,最大平衡吸附量为44.32 mg·g^(-1);随着热解温度增加,牛骨生物炭对Cd^(2+)吸附机制中官能团络合作用减弱,表面吸附、阳离子交换以及π电子配位作用增大。在实际规模化制备牛骨生物炭过程中应充分考虑能耗成本以及尾气收集问题。 展开更多
关键词 牛骨 生物质炭 吸附动力学 吸附等温线 Cd^(2+)
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姜酮通过激活Nrf2/HO-1信号通路减轻OGD/R后氧化应激损伤对HT22细胞凋亡的抑制作用 被引量:1
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作者 侯玮琛 张桂美 张舒石 《吉林大学学报(医学版)》 CAS CSCD 北大核心 2024年第1期97-105,共9页
目的:探讨姜酮对氧糖剥夺/复糖复氧(OGD/R)后小鼠海马神经元HT22细胞的保护作用,阐明其相关作用机制。方法:培养HT22细胞,设置不同OGD/R时间梯度,建立OGD/R细胞损伤模型。HT22细胞分为对照组、OGD/R组、OGD/R+1μmol·L^(-1)姜酮组... 目的:探讨姜酮对氧糖剥夺/复糖复氧(OGD/R)后小鼠海马神经元HT22细胞的保护作用,阐明其相关作用机制。方法:培养HT22细胞,设置不同OGD/R时间梯度,建立OGD/R细胞损伤模型。HT22细胞分为对照组、OGD/R组、OGD/R+1μmol·L^(-1)姜酮组、OGD/R+10μmol·L^(-1)姜酮、OGD/R+100μmol·L^(-1)姜酮组和OGD/R+0.2%二甲亚枫(DMSO)组,CCK-8法检测各组细胞活性并计算各组细胞存活率,确定姜酮最适药物浓度。细胞分为对照组、OGD/R组、OGD/R+姜酮组和OGD/R+姜酮+核因子E2相关因子2(Nrf2)抑制剂(ML385)组,OGD/R+姜酮组细胞经姜酮给药处理4 h后予以OGD 8 h和复糖复氧8 h处理,OGD/R+姜酮+ML385组细胞在姜酮给药前予以10μmol·L^(-1)ML385预处理6 h,CCK-8法检测各组细胞活性,Western blotting法检测各组细胞中Nrf2、血红素加氧酶1(HO-1)、B细胞淋巴瘤2(Bcl-2)和Bcl-2相关X蛋白(Bax)蛋白表达水平,酶联免疫吸附试验(ELISA)法检测各组细胞培养上清中超氧化物歧化酶(SOD)活性和丙二醛(MDA)水平。结果:与对照组比较,HT22细胞经OGD 8 h和复糖复糖8 h处理后细胞存活率低于50%,以OGD 8 h和复糖复糖8 h建立HT22细胞OGD/R模型。与OGD/R组比较,OGD/R+不同剂量姜酮组细胞存活率均不同程度升高,其中OGD/R+100μmol·L^(-1)姜酮组细胞存活率升高最明显(P<0.01),故选用100μmol·L^(-1)姜酮用于后续实验。与对照组比较,OGD/R组细胞活性明显降低(P<0.01),细胞中Nrf2、HO-1和Bax蛋白表达水平明显升高(P<0.01),Bcl-2蛋白表达水平明显降低(P<0.05),细胞培养上清中SOD活性明显降低(P<0.01),MDA水平明显升高(P<0.01);与OGD/R组比较,OGD/R+姜酮组细胞活性明显升高(P<0.01),细胞中Nrf2、HO-1和Bcl-2蛋白表达水平明显升高(P<0.05或P<0.01),Bax蛋白表达水平明显降低(P<0.05),细胞培养上清中SOD活性明显升高(P<0.01),MDA水平明显降低(P<0.01);与OGD/R+姜酮组比较,OGD/R+姜酮+ML385组细胞活性明显降低(P<0.01),细胞中Nrf2、HO-1和Bcl-2蛋白表达水平明显降低(P<0.01),Bax蛋白表达水平明显升高(P<0.01),细胞培养上清中SOD活性明显降低(P<0.01),MDA水平明显升高(P<0.05)。结论:姜酮可通过激活Nrf2/HO-1信号通路减轻OGD/R后氧化应激损伤对HT22细胞凋亡的抑制作用。 展开更多
关键词 姜酮 糖氧剥夺 HT22神经元 核因子E2相关因子2 血红素加氧酶1 氧化应激 细胞凋亡
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