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Alginate modifies the physiological impact of CeO2nanoparticles in corn seedlings cultivated in soil
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作者 Lijuan Zhao Jose R.Peralta-Videa +6 位作者 Bo Peng Susmita Bandyopadhyay Baltazar Corral-Diaz Pedro Osuna-Avila Milka O.Montes Arturo A.Keller Jorge L.Gardea-Torresdey 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2014年第2期382-389,共8页
Alginates are naturally occurring components of organic matter in natural soil whose effects on nanoparticle (NP) toxicity to plants is not well understood. In the present study, corn plants were grown for one month... Alginates are naturally occurring components of organic matter in natural soil whose effects on nanoparticle (NP) toxicity to plants is not well understood. In the present study, corn plants were grown for one month in soil spiked with 400 mg/kg CeO2 NPs with various alginate concentrations. After one month of growth in the NPs impacted soil, plants were harvested and analyzed for Ce and mineral element concentrations. Chlorophyll concentration and heat shock protein 70, used as biomarkers for oxidative stress, were also evaluated. Results showed that, compared to CeO2 NPs treatment, alginate at 10, 50, and 100 mg/kg increased Ce concentration in roots by approximately 46%, 38%, and 29% and by 115%, 45%, and 56% in shoots, respectively. CeO 2 NPs without alginate increased Mn accumulation in roots by 34% compared to control. CeO2 NPs with low and medium alginate increased Mn by ca. 92% respect to NPs without alginate and by ca. 155% respect to control. CeO2 NPs without/with alginate significantly increased accumulation of Fe and Al in roots. In addition, alginate at 50 mg/kg increased Zn accumulation in roots by 52% compared to control. In shoots, K increased at all NP treatments but the accumulation of other elements was not affected. Alginate enlarged the impact of CeO2 NPs to corn plants by reducing chlorophyll a content and triggering overexpression of heat shock protein 70. 展开更多
关键词 ceo2 nps alginate nutrient uptake chlorophyll heat shock protein
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Mo/CeO2作为模拟酶应用于尿酸和L-半胱氨酸检测 被引量:1
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作者 焦雪 钱昊 +3 位作者 刘文昊 马明建 王琼丹 吴庆 《广州化工》 CAS 2019年第20期96-99,共4页
采用微波辅助的方法获得了具有过氧化物模拟酶的性质Mo/CeO2 NPs纳米粒子.L-半胱氨酸对Mo/CeO2 NPs的催化效能有明显的抑制作用,基于此构建一种快速准确测定L-半胱氨酸的比色传感方法.同时,结合利用尿酸氧化酶能够专一性酶催化尿酸作用... 采用微波辅助的方法获得了具有过氧化物模拟酶的性质Mo/CeO2 NPs纳米粒子.L-半胱氨酸对Mo/CeO2 NPs的催化效能有明显的抑制作用,基于此构建一种快速准确测定L-半胱氨酸的比色传感方法.同时,结合利用尿酸氧化酶能够专一性酶催化尿酸作用下产H2 O2的原理,建立了准确检测尿酸含量的比色方法.在最优条件下,L-半胱氨酸的检测范围为1.0×10^-5~1.0×10^-4 mol/L,其检出限为0.8×10^-5,尿酸的检测范围为2.0×10^-6~1.0×10^-4 mol/L,其检出限为1.5×10^-6.此方法仪器简单,结果准确,可应用于检测实际样品中. 展开更多
关键词 Mo/ceo2nps 过氧化物酶 L-半胱氨酸 尿酸
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