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国家自然科学基金(21235001)

作品数:8 被引量:25H指数:3
相关作者:秦伟捷钱小红夏畅海欣王建华更多>>
相关机构:军事医学科学院东北大学安徽医科大学更多>>
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8 条 记 录,以下是 1-10
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Carbon Dots-induced Growth of Silver Nanoparticles, Applications in Cysteine Detection
<正>Carbon dots are both excellent electron donors, excellent electron acceptors. In present study, we report t...
Liming SHENMeiling CHENXuwei CHENJianhua WANG
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基于温敏型材料的固定化酶的制备及其在蛋白质组快速分析中的应用被引量:4
2016年
蛋白质组学通过规模化鉴定、分析从细胞、组织或有机体中提取的蛋白质,从而获得蛋白表达、修饰、组成和定量的变化信息。在目前最为有效的"鸟枪法"蛋白质组学策略中,固定化酶试剂基质常用固相载体材料,该固定化酶试剂在酶解蛋白质时为异相体系,存在固液界面传质阻力和空间位阻,限制了酶解效率和样品处理通量。针对这一技术瓶颈,本研究利用温敏聚合物对外界温度变化的响应能力,制备了一种新型的基于可溶性温敏聚合物的固定化胰蛋白酶试剂。该固定化酶特有的温度敏感特性,使其具有"高温均相酶解,低温异相分离"的特色,且兼具酶切时间显著缩短、酶可重复利用的优势。BSA 1 min固定化酶解产物肽段的氨基酸序列覆盖率可达94%,高于传统溶液酶解12 h所得覆盖率为(74%)。进一步将该固定化酶试剂应用于HeLa细胞全蛋白质组的酶解,其酶解效果与相同条件下溶液酶解12 h相当。该固定化酶试剂对复杂蛋白质的快速、高效酶解充分证明其在蛋白质组学研究中的应用潜力。
张倩郑斐秦伟捷钱小红
关键词:固定化酶质谱鉴定蛋白质组学
石墨烯量子点-银纳米颗粒复合物用于过氧化氢和葡萄糖比色检测被引量:13
2016年
以石墨烯量子点(GQDs)为还原剂和稳定剂在其表面原位生长银纳米粒子(AgNPs),制备了具有良好分散性的GQDs/AgNPs纳米复合物,其粒径小于30 nm。GQDs/AgNPs纳米复合物具有类过氧化物酶的催化活性能有效催化H_2O_2氧化3,3',5,5'-四甲基联苯胺(TMB)并发生显色反应。稳态动力学分析表明GQDs/AgNPs催化动力学遵循典型的Michaelis-Menten模型,其催化机理符合乒乓机制。与辣根过氧化物酶(HRP)相比,GQDs/AgNPs纳米复合物具有更强的亲和性。基于GQDs/AgNPs的催化活性和葡萄糖氧化产生H_2O_2的原理建立了H_2O_2和葡萄糖的比色检测方法,检出限分别为0.18和1.6μmol/L。将本方法应用于血浆中葡萄糖的检测分析,结果与标准方法相符。
夏畅海欣陈帅陈旭伟王建华
关键词:过氧化氢葡萄糖
A pneumatic micromixer facilitating fluid mixing at a wide range flow rate for the preparation of quantum dots
2013年
A novel fluid micromixer based on pneumatic perturbation and passive structures was developed. This micromixer facilitates integration and is applicable to fluid mixing over a wide range of flow rates. The microfluidic mixing device consists of an S-shaped structure with two mixing chambers and two barriers, and two pneumatic chambers designed over the S-shaped channel. The performance of the micromixer for fluids with wide variation of flow rates was significantly improved owing to the integration of the pneumatic mixing components with the passive mixing structures. The mixing mechanism of the passive mixing structures was explored by numerical simulation, and the influencing factors on the mixing efficiency were investigated. The results showed that when using a gas pressure of 0.26 MPa and a 100 m-thick polydimethylsiloxane (PDMS) pneumatic diaphragm, the mixing of fluids with flow rates ranging from 1 to 650 L/min was achieved with a pumping frequency of 50 Hz. Fast synthesis of CdS quantum dots was realized using this device. Smaller particles were obtained, and the size distribution was greatly improved compared with those obtained using conventional methods.
WANG XinMA XiuFengAN LanLanKONG XiangWeiXU ZhangRunWANG JianHua
关键词:C-C
Nickel Nanoparticle Decorated Graphene for Highly Selective Isolation of Polyhistidine-tagged Proteins
<正>Graphene has attracted great attentions due to its unique, outsting physical, chemical properties since 200...
Jiawei LIUTing YANGLinyu MAXuwei CHENJianhua WANG
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人尿液蛋白质N-糖肽富集和质谱鉴定的新方法研究
2018年
蛋白质的N-糖基化修饰参与了许多重要的生理过程,是研究多种重大疾病诊断标志物的热点。与其他体液活检样本相比,尿液可以无创、大量获取,并且不受稳态调节的影响,能够在一定程度上反映整个机体的生理和病理状态。因此,人尿液蛋白质N-糖基化的规模化研究对疾病诊断标记物的筛选和治疗靶点的发现均具有重大意义。由于人尿液中的N-糖蛋白含量有限,修饰比例较低,在质谱分析时N-糖肽易被高丰度的非糖肽所掩盖,难以鉴定。因此,发展高效、高选择性的富集材料是实现尿蛋白N-糖基化深度覆盖的必要前提。本研究利用巯基-烯点击化学反应,使用[3-(甲基丙烯酰氨基)丙基]二甲基(3-硫代丙基)氢氧化铵内盐(SPP)制备了两性离子修饰亲水硅胶材料(SPP-SiO2)。该材料成功地应用于标准糖蛋白和健康人尿蛋白N-糖肽的富集和质谱检测,共鉴定了包含1 065个位点的633个尿液糖蛋白,比文献报道的鉴定规模提高了12.2%,证明了该亲水材料在尿液糖蛋白质组研究中的应用潜力。
黄俊杰焦丰龙王和平朱丽华秦伟捷钱小红
关键词:尿蛋白质谱鉴定
An ultra-fast and highly efficient multiple proteases digestion strategy using graphene-oxide-based immobilized protease reagents
2014年
Highly efficient and rapid proteolytic digestion of proteins into peptides is a crucial step in shotgun-based proteome-analysis strategy.Tandem digestion by two or more proteases is demonstrated to be helpful for increasing digestion efficiency and decreasing missed cleavages,which results in more peptides that are compatible with mass-spectrometry analysis.Compared to conventional solution digestion,immobilized protease digestion has the obvious advantages of short digestion time,no self-proteolysis,and reusability.We proposed a multiple-immobilized proteases-digestion strategy that combines the advantages of the two digestion strategies mentioned above.Graphene-oxide(GO)-based immobilized trypsin and endoproteinase Glu-C were prepared by covalently attaching them onto the GO surface.The prepared GO-trypsin and GO-Glu-C were successfully applied in standard protein digestion and multiple immobilized proteases digestion of total proteins of Thermoanaerobacter tengcongensis.Compared to 12-hour solution digestion using trypsin or Glu-C,14%and 7%improvement were obtained,respectively,in the sequence coverage of BSA by one-minute digestion using GO-trypsin and GO-Glu-C.Multiple immobilized-proteases digestion of the total proteins of Thermoanaerobacter tengcongensis showed 24.3%and 48.7%enhancement in the numbers of identified proteins than was obtained using GO-trypsin or GO-Glu-C alone.The ultra-fast and highly efficient digestion can be contributed to the high loading capacity of protease on GO,which leads to fewer missed cleavages and more complete digestion.As a result,improved protein identification and sequence coverage can be expected.
BAI HaiHongPAN YiTingREN XiaoJunHAO FeiRanDENG ShanShanFAN ChaoYAN HuiSHEN BingQuanMA LinTIAN FangPENG BoDENG YuLinQIN WeiJieQIAN XiaoHong
关键词:超快速固定化胰蛋白酶
新型亲水聚合物修饰硅胶颗粒固定化酶的制备及在蛋白质组鉴定中的应用被引量:4
2013年
采用原子转移自由基聚合法制备了亲水聚合物修饰的硅胶颗粒作为一种新型固定化酶载体,在实现胰蛋白酶高密度固定的同时,显著降低了载体材料非特异性吸附导致的样品损失。因此,该固定化酶材料兼具高酶解效率和高回收率的特性。以标准蛋白质牛血清白蛋白(BSA)为样本,使用该固定化酶1 min即可完成酶解,鉴定到肽段对BSA的氨基酸序列覆盖率可达90%以上。该固定化酶材料成功应用于酵母菌全蛋白质复杂样本的酶解,从3min酶解产物中鉴定到666个蛋白质,超过同样条件下溶液酶解12 h的鉴定结果。
范超宋子凤秦伟捷蔡耘钱小红
关键词:固定化酶蛋白质组学
Multi-Protein Discrimination by Ionic Liquid-Modified QDs Fluorescent Sensor
<正>Multidimensional sensing devices have received increasing attention because they are able to read out the t...
Ling WEIShuai CHENXu-Wei CHENJian-Hua WANG
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In situ Growth of β-FeOOH Nanorods on Graphene Oxide with Ultra-high Relaxivity for in vivo Magnetic Resonance Imaging and Cancer Therapy
<正>β-FeOOH has shown promise as a new contrast agent in magnetic resonance imaging (MRI). Its special morpholo...
Hui WANGMeiling CHENMingli CHENJianhua WANG
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