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一种具有识别Hg^(2+)和ClO^(-)荧光探针的设计和应用 被引量:1
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作者 廖元淏 王帅 +3 位作者 陈婉慧 冯华杰 陈光英 何文英 《发光学报》 EI CAS CSCD 北大核心 2024年第2期351-363,共13页
设计合成了一种含双酯基的1,2,3-三氮唑化合物,与罗丹明B酰肼结合生成了具有“开-关”性质的荧光探针(简称L_(2)),应用光谱学表征了L_(2)的物理化学参数。L_(2)分别在DMF/Tris-HCl(1:1,v/v,pH=6.0,20μmol/L)和MeOH(20μmol/L)溶液中对H... 设计合成了一种含双酯基的1,2,3-三氮唑化合物,与罗丹明B酰肼结合生成了具有“开-关”性质的荧光探针(简称L_(2)),应用光谱学表征了L_(2)的物理化学参数。L_(2)分别在DMF/Tris-HCl(1:1,v/v,pH=6.0,20μmol/L)和MeOH(20μmol/L)溶液中对Hg^(2+)和ClO^(-)显示出高选择性和灵敏性;利用荧光和紫外光谱分别测定了L_(2)对19种金属离子和14种阴离子的光学性能。实验表明,Hg^(2+)和ClO^(-)的存在使得L_(2)在585 nm和576 nm均有一个新的发射峰出现;同时伴随着荧光强度明显的增强,溶液体系发生了裸眼能识别的显色变化,表明Hg^(2+)可以将罗丹明分子的酰肼闭环结构转换为开环结构,并以1:2的比例方式生成了一种新配合物,这也被质谱、工作曲线、核磁滴定和TD-DFT计算的结果所证实;L_(2)对Hg^(2+)和ClO^(-)的检测限分别为7.45 nmol/L和0.67μmol/L。此外,生物活性测定显示L_(2)对HeLa细胞有非常低的毒性,并且可用于HeLa细胞中Hg^(2+)和ClO^(-)的细胞成像,表明L_(2)在体内可进行微测定Hg^(2+)和ClO^(-)的巨大潜力。 展开更多
关键词 1 2 3-三氮唑 罗丹明B hg^(2+) ClO^(-) 细胞成像
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基于N掺杂Ti_(3)C_(2)MXene量子点的荧光探针用于Hg2+和S2-的传感检测
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作者 张慧莲 杨新杰 +6 位作者 李军 李泉 张福娟 张艳丽 王红斌 杨文荣 庞鹏飞 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2024年第5期38-45,共8页
基于N掺杂Ti_(3)C_(2) MXene量子点(N-Ti_(3)C_(2) MQDs)荧光探针和配位相互作用,构建了一种检测Hg^(2+)和S^(2-)的“开-关-开”型荧光传感新方法.研究发现,制备的N-Ti_(3)C_(2) MQDs发射蓝色荧光(λem=440 nm),荧光量子产率为15.7%.Hg^... 基于N掺杂Ti_(3)C_(2) MXene量子点(N-Ti_(3)C_(2) MQDs)荧光探针和配位相互作用,构建了一种检测Hg^(2+)和S^(2-)的“开-关-开”型荧光传感新方法.研究发现,制备的N-Ti_(3)C_(2) MQDs发射蓝色荧光(λem=440 nm),荧光量子产率为15.7%.Hg^(2+)与N-Ti_(3)C_(2) MQDs表面的—NH2,—COOH,—OH等官能团产生选择性配位作用,导致N-Ti_(3)C_(2) MQDs体系荧光猝灭.当加入S^(2-)后,由于S^(2-)与Hg^(2+)之间强的结合力,形成HgS沉淀,从而使N-Ti_(3)C_(2) MQDs体系荧光恢复.基于该原理,构建了一种“开-关-开”型荧光传感方法,实现了对Hg^(2+)和S^(2-)的定量检测.N-Ti_(3)C_(2) MQDs探针的荧光强度与Hg^(2+)浓度在0.02~200μmol/L范围内呈良好线性关系,检出限为10 nmol/L(S/N=3);与S^(2-)浓度在0.07~150μmol/L范围内呈良好线性关系,检出限为30 nmol/L(S/N=3).该方法具有成本低、操作简单、灵敏度高和选择性好等特点,并可用于水样中Hg^(2+)和S^(2-)的检测. 展开更多
关键词 汞离子 硫离子 N掺杂Ti_(3)C_(2)MXene 量子点 荧光探针
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1,3-氧硫戊环为受体的Hg^(2+)荧光探针的设计、合成及性能
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作者 梁庆祥 周五 +2 位作者 吴爱斌 舒文明 余维初 《光谱学与光谱分析》 SCIE EI CAS CSCD 北大核心 2024年第7期1913-1917,共5页
Hg^(2+)是毒性最强的重金属离子之一,会造成空气、土壤和水的污染,严重损害人体健康,开发有效的分析方法检测环境体系中的Hg^(2+)尤为重要。荧光探针因其灵敏度高、选择性好、响应速度快、可实时在线检测等优点,已广泛应用于Hg^(2+)检... Hg^(2+)是毒性最强的重金属离子之一,会造成空气、土壤和水的污染,严重损害人体健康,开发有效的分析方法检测环境体系中的Hg^(2+)尤为重要。荧光探针因其灵敏度高、选择性好、响应速度快、可实时在线检测等优点,已广泛应用于Hg^(2+)检测。以Hg^(2+)促进硫代缩醛的去保护反应设计合成了一种全新的以1,3-氧硫戊环为受体的开启型Hg^(2+)荧光探针[2-(pyren-1-yl)-1,3-oxathiolane,POX],通过^(1)H NMR、^(13)C NMR和HRMS对POX结构进行表征,考察了POX在CH_(3)CH_(2)OH/H_(2)O中对Hg^(2+)的选择性、竞争性、浓度滴定、pH滴定、时间依赖性、检出限和识别机理等。研究结果表明,POX可在较宽的pH范围内对Hg^(2+)快速识别,并表现出高度的选择性和灵敏度;向POX中加入Hg^(2+)后,在386 nm处出现明显的荧光发射峰,表明POX对Hg^(2+)呈现出显著的荧光“开启”效应,其识别过程几乎不受其他金属离子干扰;荧光滴定实验表明POX在Hg^(2+)浓度为0~6.5μmol·L^(-1)范围内具有良好的线性响应(R^(2)=0.9994),检出限为0.168μmol·L^(-1),在实际水样中检测Hg^(2+)的RSD小于2.92%。由于POX合成简单、原料易得且pH适用范围较广,可作为定性和定量检测环境中Hg^(2+)的潜在工具。 展开更多
关键词 荧光探针 hg^(2+) 1 3-氧硫戊环 荧光开启
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基于点击-去点击化学反应的Hg^(2+)荧光探针检测体系构建
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作者 陶健 成婕 +7 位作者 孙志远 尹玉云 杨晶晶 张汝凡 孙朋娟 蔡硕 屈凌波 杨冉 《食品科学》 EI CAS CSCD 北大核心 2024年第16期255-261,共7页
基于杂化罗丹明与巯基化合物之间的点击化学反应及巯基化合物与金属汞离子的配位反应导致的去点击化学反应机理,构建香豆素杂化罗丹明探针-1,3,5-苯三硫酚-Hg^(2+)的三元荧光检测体系。在该体系中,探针能够与1,3,5-苯三硫酚中的巯基基... 基于杂化罗丹明与巯基化合物之间的点击化学反应及巯基化合物与金属汞离子的配位反应导致的去点击化学反应机理,构建香豆素杂化罗丹明探针-1,3,5-苯三硫酚-Hg^(2+)的三元荧光检测体系。在该体系中,探针能够与1,3,5-苯三硫酚中的巯基基团发生加成反应,破坏探针的共轭结构,从而导致探针的红色荧光猝灭。加入Hg^(2+)后,Hg^(2+)与1,3,5-苯三硫酚通过配位作用结合,使其从探针结构上离去,探针的共轭结构及红色荧光恢复。体系的荧光强度与Hg^(2+)在5×10^(-9)~1×10^(-8)、1×10^(-8)~1.1×10^(-7)mol/L浓度范围内呈良好的线性关系,检测限为2×10^(-9)mol/L,等倍量的常见重金属离子对Hg^(2+)的特异性识别无干扰。应用于实际饮用水样品中Hg^(2+)含量检测,回收率可达到86.7%~110.2%。 展开更多
关键词 三元荧光检测体系 荧光探针 hg^(2+) 快速检测
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氨基酸基氮掺杂荧光碳点的制备及饮料中Hg^(2+)的检测
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作者 彭芷芯 付文静 +2 位作者 谷惠文 严秀芳 尹小丽 《中国食品学报》 EI CAS CSCD 北大核心 2024年第4期336-348,共13页
汞离子是一种高毒性的重金属污染物,人体摄入后会带来健康危害,因此控制食品中的汞离子含量非常重要。以柠檬酸为碳源,不同的氨基酸为氮源掺杂,采用一步水热法制备高性能荧光的碳点(CDs),探究不同氨基酸基氮掺杂对碳点荧光量子产率(QY)... 汞离子是一种高毒性的重金属污染物,人体摄入后会带来健康危害,因此控制食品中的汞离子含量非常重要。以柠檬酸为碳源,不同的氨基酸为氮源掺杂,采用一步水热法制备高性能荧光的碳点(CDs),探究不同氨基酸基氮掺杂对碳点荧光量子产率(QY)的影响,以及这些氨基酸基氮掺杂碳点对汞离子的响应。结果显示,不同氨基酸的碳链长度和官能团对CDs的QY有一定的影响。Hg^(2+)能高效猝灭以甘氨酸(Gly)为氮源掺杂的Gly-CDs的荧光,Gly-CDs具有良好的荧光稳定性,在优化的试验条件下,用于Hg^(2+)检测的线性范围为0.00~7.00μmol/L和8.00~60.00μmol/L,检出限为0.20μmol/L。据此构建的荧光探针用于检测实际饮料样品中的Hg^(2+),回收率在90.08%~107.90%。该方法简便、快速、灵敏、适用于饮料中Hg^(2+)的测定。 展开更多
关键词 甘氨酸-CDs 荧光 hg^(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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Duodenal-jejunal bypass improves hypothalamic oxidative stress and inflammation in diabetic rats via glucagon-like peptide 1-mediated Nrf2/HO-1 signaling 被引量:1
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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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Interfacial stress engineering toward enhancement of ferroelectricity in Al doped HfO_(2)thin films
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作者 S X Chen M M Chen +2 位作者 Y Liu D W Cao G J Chen 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第9期637-643,共7页
Ferroelectric HfO_(2)has attracted much attention owing to its superior ferroelectricity at an ultra-thin thickness and good compatibility with Si-based complementary metal-oxide-semiconductor(CMOS)technology.However,... Ferroelectric HfO_(2)has attracted much attention owing to its superior ferroelectricity at an ultra-thin thickness and good compatibility with Si-based complementary metal-oxide-semiconductor(CMOS)technology.However,the crystallization of polar orthorhombic phase(o-phase)HfO_(2)is less competitive,which greatly limits the ferroelectricity of the as-obtained ferroelectric HfO_(2)thin films.Fortunately,the crystallization of o-phase HfO_(2)can be thermodynamically modulated via interfacial stress engineering.In this paper,the growth of improved ferroelectric Al doped HfO_(2)(HfO_(2):Al)thin films on(111)-oriented Si substrate has been reported.Structural analysis has suggested that nonpolar monoclinic HfO_(2):Al grown on(111)-oriented Si substrate suffered from a strong compressive strain,which promoted the crystallization of(111)-oriented o-phase HfO_(2)in the as-grown HfO_(2):Al thin films.In addition,the in-plane lattice of(111)-oriented Si substrate matches well with that of(111)-oriented o-phase HfO_(2),which further thermally stabilizes the o-phase HfO_(2).Accordingly,an improved ferroelectricity with a remnant polarization(2P_(r))of 26.7C/cm^(2) has been obtained.The results shown in this work provide a simple way toward the preparation of improved ferroelectric HfO_(2)thin films. 展开更多
关键词 improved FERROELECTRICITY INTERFACIAL stress ENGINEERING COMPRESSIVE strain HfO_(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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Hesperidin ameliorates H_(2)O_(2)-induced bovine mammary epithelial cell oxidative stress via the Nrf2 signaling pathway
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作者 Qi Huang Jiashuo Liu +2 位作者 Can Peng Xuefeng Han Zhiliang Tan 《Journal of Animal Science and Biotechnology》 SCIE CAS CSCD 2024年第4期1737-1750,共14页
Background Hesperidin is a citrus flavonoid with anti-inflammatory and antioxidant potential. However, its protective effects on bovine mammary epithelial cells(b MECs) exposed to oxidative stress have not been elucid... Background Hesperidin is a citrus flavonoid with anti-inflammatory and antioxidant potential. However, its protective effects on bovine mammary epithelial cells(b MECs) exposed to oxidative stress have not been elucidated.Results In this study, we investigated the effects of hesperidin on H_(2)O_(2)-induced oxidative stress in b MECs and the underlying molecular mechanism. We found that hesperidin attenuated H_(2)O_(2)-induced cell damage by reducing reactive oxygen species(ROS) and malondialdehyde(MDA) levels, increasing catalase(CAT) activity, and improving cell proliferation and mitochondrial membrane potential. Moreover, hesperidin activated the Keap1/Nrf2/ARE signaling pathway by inducing the nuclear translocation of Nrf2 and the expression of its downstream genes NQO1 and HO-1, which are antioxidant enzymes involved in ROS scavenging and cellular redox balance. The protective effects of hesperidin were blocked by the Nrf2 inhibitor ML385, indicating that they were Nrf2 dependent.Conclusions Our results suggest that hesperidin could protect b MECs from oxidative stress injury by activating the Nrf2 signaling pathway, suggesting that hesperidin as a natural antioxidant has positive potential as a feed additive or plant drug to promote the health benefits of bovine mammary. 展开更多
关键词 Bovine mammary epithelial cell HESPERIDIN Nrf2 signaling pathway Oxidative stress
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BTG2 interference ameliorates high glucose-caused oxidative stress, cell apoptosis, and lipid deposition in HK-2 cells
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作者 WENJUAN ZHU ZHENGZHENG JU FAN CUI 《BIOCELL》 SCIE 2024年第9期1379-1388,共10页
Objective:Diabetic nephropathy(DN)is a deleterious microangiopathy of diabetes,constituting a critical determinant of fatality in diabetic patients.This work is purposed to disclose the effects and modulatory mechanis... Objective:Diabetic nephropathy(DN)is a deleterious microangiopathy of diabetes,constituting a critical determinant of fatality in diabetic patients.This work is purposed to disclose the effects and modulatory mechanism of BTG anti-proliferation factor 2(BTG2)during the pathological process of DN.Methods:BTG2 expression in kidney tissues of diabetic mice and high glucose(HG)-exposed human proximal tubular cell line HK-2 was assessed with Western blot and RT-qPCR.The diabetic mice model was constructed by streptozotocin injection and confirmed by the blood glucose level beyond 16.7 mmol/L.Hematoxylin and eosin(H&E)staining and measurement of kidney function hallmarks were conducted to assess kidney injury.Cell counting kit(CCK)-8 method and TUNEL assay appraised cell activity and apoptosis.Oil red O staining assayed lipid accumulation.Relevant commercial kits were used to estimate oxidative stress-related factors.Co-immunoprecipitation(Co-IP)assay testified the binding relationship of BTG2 with protein arginine methyltransferase 1(PRMT1).Results:BTG2 expression was significantly raised in renal tissues of diabetic mice and HK-2 cells exposed to HG.BTG2 deficiency improved viability and extenuated the apoptosis,lipid deposition as well as oxidative stress in HK-2 cells following HG exposure.In addition,PRMT1 was also overexpressed in HK-2 cells exposed to HG.BTG2 interacted with PRMT1 and positively modulated PRMT1 expression.The effects of BTG2 interference on viability,apoptosis,lipid deposition,and oxidative stress in HG-challenged HK-2 cells were partially abrogated by PRMT1 overexpression.Conclusion:Altogether,BTG2 might aggravate HK-2 cell injury in response to HG by binding with PRMT1,providing a novel target for the therapeutic strategy of DN. 展开更多
关键词 BTG2 Diabetic nephropathy Lipid deposition Oxidative stress PRMT1
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磁性聚氨基噻唑吸附剂脱除水体Hg^(2+)性能
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作者 王岩 周佳文 +3 位作者 孙培亮 陈勇 齐元红 彭冲 《化工学报》 EI CSCD 北大核心 2024年第6期2283-2298,共16页
聚多巴胺(PDA)辅助负载聚氨基噻唑(PAT)法制备了磁性颗粒吸附剂Fe_(3)O_(4)@SiO_(2)@PDA-PAT。对吸附剂进行了XRD、VSM、TG、SEM、XPS、EDS和Zeta电位等表征分析,考察了吸附剂对Hg^(2+)的吸附性能。结果表明,Fe_(3)O_(4)@SiO_(2)@PDA-PA... 聚多巴胺(PDA)辅助负载聚氨基噻唑(PAT)法制备了磁性颗粒吸附剂Fe_(3)O_(4)@SiO_(2)@PDA-PAT。对吸附剂进行了XRD、VSM、TG、SEM、XPS、EDS和Zeta电位等表征分析,考察了吸附剂对Hg^(2+)的吸附性能。结果表明,Fe_(3)O_(4)@SiO_(2)@PDA-PAT具有超顺磁性,在pH小于2时Zeta电位为正,pH大于2时Zeta电位为负。在303 K和Hg^(2+)浓度为50 mg/L模拟废水中,当pH为1.3和5.0时,Hg^(2+)的平衡吸附量分别为121.9 mg/g和153.1 mg/g。在强酸(如pH 1.3)和弱酸(如pH 5.0)环境下Fe_(3)O_(4)@SiO_(2)@PDA-PAT吸附Hg^(2+)的过程均是自发过程,且符合二级动力学模型和Langmuir等温吸附模型。强酸环境下(如pH 1.3)Fe_(3)O_(4)@SiO_(2)@PDA-PAT吸附Hg^(2+)是焓驱动的放热过程,弱酸(如pH 5.0)环境下是熵驱动的吸热过程。用2 mol/L混酸(盐酸和硝酸摩尔比为1∶1)作为解吸液可使Hg^(2+)解吸率达91%以上。在303 K、pH 1.3、Hg^(2+)浓度20 mg/L条件下,当Na^(+)、K^(+)、Mg^(2+)、Ca^(2+)、Cu^(2+)、Zn^(2+)、Ni^(2+)质量浓度为Hg^(2+)的20倍时,Fe_(3)O_(4)@SiO_(2)@PDA-PAT的Hg^(2+)平衡吸附量分别下降了33.2%、32.1%、20.6%、26.7%、21.2%、29.6%、17.8%。在模拟海水下,Hg^(2+)吸附量下降40.9%。Fe_(3)O_(4)@SiO_(2)@PDA-PAT具有较好的Hg^(2+)选择性,具有净化海水脱除重金属的应用潜力。 展开更多
关键词 聚氨基噻唑 磁性吸附剂 四氧化三铁 hg^(2+)废水
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Oxidative stress mediates glycidol-induced endothelial injury and its protection by 6-C-(E-2-fluorostyryl)naringenin
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作者 Yue Zhou Hui Xu +3 位作者 Ka-Wing Cheng Feng Chen Qian Zhou Mingfu Wang 《Food Science and Human Wellness》 SCIE CAS CSCD 2024年第5期2584-2594,共11页
Glycidol is a common lipid-derived foodborne toxicant mainly presents in refined oils and related foodstuffs.Vascular endothelial cells may be potential targets of the deleterious effects associated with glycidol expo... Glycidol is a common lipid-derived foodborne toxicant mainly presents in refined oils and related foodstuffs.Vascular endothelial cells may be potential targets of the deleterious effects associated with glycidol exposure.In human umbilical vein endothelial cells(HUVECs),we found that glycidol treatment promoted endothelialto-mesenchymal transition(EndMT)at a lower concentration(0.5 mmol/L),while induced apoptosis and inflammation at a higher concentration(1 mmol/L).These harmful effects were achieved by the activation of NF-κB/MAPK signaling pathway and were mediated by reactive oxygen species(ROS).In addition,the protective potential of 6-C-(E-2-fluorostyryl)naringenin(6-CEFN)against glycidol was evaluated and compared with naringenin.HUVECs pre-treated with 6-CEFN,but not naringenin,displayed resistance to endothelial dysfunction caused by glycidol. 展开更多
关键词 GLYCIDOL Endothelial cells 6-C-(E-2-fluorostyryl)naringenin Oxidative stress Endothelial-to-mesenchymal transition
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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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氮掺杂碳点的制备及其在Hg^(2+)测定中的应用研究
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作者 王肖文 吴文丽 +5 位作者 杜文韬 钞瀚贤 陈建祥 丁明洁 李晓燕 李银峰 《河南城建学院学报》 CAS 2024年第3期112-117,共6页
以柠檬酸为碳源,尿素、邻菲罗啉、氨水、硫脲、精氨酸为氮源,通过水热法合成了5种氮掺杂荧光碳点。对合成的碳点进行荧光性能表征,测定了每种碳点的最佳激发和发射波长,在最佳发射波长下,利用荧光猝灭对Hg^(2+)进行检测。结果表明,以精... 以柠檬酸为碳源,尿素、邻菲罗啉、氨水、硫脲、精氨酸为氮源,通过水热法合成了5种氮掺杂荧光碳点。对合成的碳点进行荧光性能表征,测定了每种碳点的最佳激发和发射波长,在最佳发射波长下,利用荧光猝灭对Hg^(2+)进行检测。结果表明,以精氨酸为氮源制备的碳点对Hg^(2+)检测具有较灵敏的响应,其线性范围为0.25~1.5μmol/L。 展开更多
关键词 氮掺杂 碳点 水热法 hg^(2+)
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lncRNA MIR4435-2HG靶向miR-376a-3p调控胆管癌细胞生物学行为的机制研究
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作者 刘文东 张嘉麟 余紫丹 《局解手术学杂志》 2024年第1期30-35,共6页
目的 探讨长链非编码RNA(lncRNA)MIR4435-2HG(MIR4435-2HG)对胆管癌细胞增殖、迁移、侵袭、凋亡的影响及其对微小RNA-376a-3p(miR-376a-3p)的调控作用。方法 qRT-PCR法检测人肝内胆管上皮细胞HIBEpic与人胆管癌细胞RBE中MIR4435-2HG、mi... 目的 探讨长链非编码RNA(lncRNA)MIR4435-2HG(MIR4435-2HG)对胆管癌细胞增殖、迁移、侵袭、凋亡的影响及其对微小RNA-376a-3p(miR-376a-3p)的调控作用。方法 qRT-PCR法检测人肝内胆管上皮细胞HIBEpic与人胆管癌细胞RBE中MIR4435-2HG、miR-376a-3p的表达。将si-NC、si-MIR4435-2HG、miR-NC、miR-376a-3p mimics、si-MIR4435-2HG联合anti-miR-NC、si-MIR4435-2HG联合anti-miR-376a-3p分别转染至RBE细胞,作为si-NC组、si-MIR4435-2HG组、miR-NC组、miR-376a-3p组、si-MIR4435-2HG+anti-miR-NC组、si-MIR4435-2HG+anti-miR-376a-3p组;采用MTT法、Transwell小室法及流式细胞仪分别检测细胞增殖、迁移、侵袭及凋亡情况;双荧光素酶报告基因实验验证MIR4435-2HG与miR-376a-3p的靶向关系。Western blot检测相关蛋白表达。结果 RBE细胞中MIR4435-2HG表达量升高(P<0.05),miR-376a-3p表达量降低(P<0.05)。与si-NC组比较,si-MIR4435-2HG组MIR4435-2HG表达、细胞活力及CyclinD1、MMP-2、MMP-9蛋白水平降低(P<0.05),迁移及侵袭细胞数减少(P<0.05),细胞凋亡率升高(P<0.05);与miR-NC组比较,miR-376a-3p组细胞活力及CyclinD1、MMP-2、MMP-9蛋白水平降低(P<0.05),迁移及侵袭细胞数减少(P<0.05),miR-376a-3p表达、细胞凋亡率升高(P<0.05)。MIR4435-2HG可靶向调控miR-376a-3p;与si-MIR4435-2HG+anti-miR-NC组比较,si-MIR4435-2HG+anti-miR-376a-3p组细胞活力及CyclinD1、MMP-2、MMP-9蛋白水平升高(P<0.05),迁移及侵袭细胞数增多(P<0.05),miR-376a-3p表达、细胞凋亡率降低(P<0.05)。结论 敲低MIR4435-2HG可通过靶向调控miR-376a-3p进而抑制RBE细胞增殖、迁移、侵袭,并诱导其凋亡。 展开更多
关键词 lncRNA MIR4435-2hg miR-376a-3p 胆管癌 细胞增殖 迁移 侵袭
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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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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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