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基于纳米金标记-适配体识别的伏马菌素B_1检测新方法 被引量:6
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作者 王文凤 吴世嘉 +2 位作者 马小媛 夏雨 王周平 《食品与生物技术学报》 CAS CSCD 北大核心 2013年第5期501-508,共8页
基于核酸适配体识别和纳米金变色效应构建了伏马菌素B1(FB1)的可视化检测新方法。实验以纳米金为载体,首先在纳米金表面组装巯基化的适配体互补短链DNA1/FB1-适配体复合物;当加入目标物时,适配体链与目标物结合,与互补短链DNA1发生解离... 基于核酸适配体识别和纳米金变色效应构建了伏马菌素B1(FB1)的可视化检测新方法。实验以纳米金为载体,首先在纳米金表面组装巯基化的适配体互补短链DNA1/FB1-适配体复合物;当加入目标物时,适配体链与目标物结合,与互补短链DNA1发生解离;此时再加入纳米金标记的与适配体互补短链1互补的短链DNA2,二者杂交可导致纳米金粒子的聚集而使溶液颜色发生变化,进而实现目标物的可视化检测。通过条件优化,有效避免了由于盐浓度过高使纳米金发生聚集所产生的误差。同时在纳米金与短链DNA孵化时加入表面活性剂十二烷基硫酸钠(SDS),使NaCl浓度达到了500 mmol/L而纳米金颜色仍不发生改变,打破了以往熟化NaCl浓度100 mmol/L就使纳米金颜色发生变化的界限,使附着在纳米金上的DNA量扩大了3倍。方法检测线性范围为125~1 500 ng/L,检测限为125 ng/L。该方法已成功应用于啤酒中FB1的检测。 展开更多
关键词 适配体识别 纳米金变色 可视化
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Facile preparation of L-ascorbic acid-stabilized copper-chitosan nanocomposites with high stability and antimicrobial properties 被引量:3
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作者 何苗 路丽英 +1 位作者 张金池 李旦振 《Science Bulletin》 SCIE EI CAS CSCD 2015年第2期227-234,I0002,共9页
Highly stable dispersions of nanosized copper (Cu) particles with an average size of (2.6 ± 0.5) nm were synthesized by in situ reduction of Cu(II) to immobilize Cu nanoparticles on the amino-enriched surfa... Highly stable dispersions of nanosized copper (Cu) particles with an average size of (2.6 ± 0.5) nm were synthesized by in situ reduction of Cu(II) to immobilize Cu nanoparticles on the amino-enriched surface of chitosan (CTS). The synthetic process and stability of the L-ascorbic acid-stabilized Cu-CTS nanocomposites were investigated by X-ray photoelectron spectroscopy and Fourier transform Infrared spectroscopy. The antimicrobial efficiency and potency of the Cu-CTS nanocomposites were studied. The Cu-CTS nanocomposites were found to exhibit a broad antimicrobial spectrum and high antimicrobial activity against Gram-positive bacterial pathogen Staphylococcus aureus and fungal pathogen Monilia albican. The minimum inhibitory concentration of the Cu-CTS nanocomposites toward S. aureus was found to be 6.4 μg mL^-1, much lower than those reported in the literature. Furthermore, the Cu-CTS nanocomposites were stable and main- tained good disinfection potential even after 90-day shelf-time under ambient conditions. 展开更多
关键词 Cu-CTS nanocomposites STABILITY Antimicrobial spectrum Green synthesis
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