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14篇 您的检索式:作者名="Sergey Piletsky"
    题名 作者 年代 出处 被引量
1Imprinted Membranes for Sensor Technology:Opposite Behavior of Covalently and Noncovalently Imprinted Membranes显示文摘Sergey A Piletsky K Lena V 1998Macromolecules1998,338,2:1
2Hierachically Structured Hollow Silica Spheres for High Efficiency Immobilization of Enzymes显示文摘Shunsheng Cao Long Fang Zhiyuan Zhao Yi Ge Sergey Piletsky Anthony P. F. Turner 2012Adv Funct Mater2012,,17:1
3Properties of Poly aminophenylboronate Coatings in Capillary Electrophoresis for the Selective Separation of Diastereomers and Glycoproteins显示文摘Alessandra Bossi Laura Castelletti Sergey Piletsky 2004Chromatography A2004,1023,2:1
4Rational Design of a Polymer Specific for Microcystin-LR Using a Computational Approach显示文摘Chianella Iva Manuela Lotierzo Sergey A Piletsky 2002Analytical Chemistry2002,74,6:1
5Analytical methods for determination of mycotoxins: A review 显示文摘Nicholas W Tumera Sreenath Subrahmanyamb and Sergey A Piletsky 2009Anal Chim Acta2009,632,2:1
6Molecular Imprinting: at the edge of the third millennium显示文摘Sergey A Piletsky Susan Alcock 2001Trends in Biotechnology2001,19,1:1
7Immunosensor for okadaic acid using quartz crystal microbalance 显示文摘Alice X J Tang Miloslav Pravda George G Guilbault Sergey Piletsky Anthony P F Turner 2002Analytica Chimica Acta2002,471,:1
8Electro-chemical Sensors Based on MolecularlyImprinted Polymers 显示文摘Sergey A Piletsky Anthony PF 2002Electroanalysis2002,14,3:1
9Imprinted Membranes for Sensor Technology: Opposite Behavior of Covalently and Noncovalently Imprinted Membranes显示文摘 Piletsky K Lena V 1998Macromolecules1998,338,2:1
10Nicholls, Combined hydrophobic and electrostatic interaction-based recognition in molecularly imprinted polymers 显示文摘Sergey A Piletsky Hakan S Andersson Ian A 1999Macromolecules1999,32,:1
11Biotin-specific synthetic receptors prepared using molecular imprinting显示文摘Elena Piletska Sergey Piletsky Kal Karim Ewald Terpetschnig Anthony Turner 2003Analytica Chimica Acta2003,,1:1
12Surface Funetionalization of Porous Polypropylene Membranes with Molecularly Imprinted Polymers by Photograft Copolymerization in Water 显示文摘Sergey A piletsky Heike Mat usehewski Uwe Schedler Andre Wilpert Elena V Piletska Thomas A Thiele Mathias Ulbrieht 2000Maeromoleeules2000,33,:1
13Development of a homogenous assay based on fluorescent imprinted nanoparticles for analysis of nitroaromatic compounds显示文摘Herein we describe the development of a homogeneous assay for the detection of 4-nitroaniline(4-NA)and 2,4-dinitroaniline(2,4-diNA).Thisassay relies on fluorescent molecularly imprinted nanoparticles(nano MIPs)which,upon interaction with the target analytes,generate areduction in fluorescence emission intensity(quenching).This is due to a resp on sive fluorescent monomer(N-2-propenyl-(5-dimethylamino)-1-naphthalene sulphonamide)employed in the manufacture of the nanoMIPs which,by virtue of the imprinting process,is capable of selectiveinteraction with the target an alyte,thus giving rise to a quenching effect.Selectivity experiments showed excellent recognition propertiestoward the target molecule.Under optimal conditions,the fluorescence intensity of these nano MIPs decreased as the concentration of theimprinted analyte increased from 10 nM to 2.71 pM.A linear relation between the negative logarithm of 4-NA or 2,4-diNA concentrations and the fluorescence intensity for both nanosystems was found(R^2=0.991 and R^2=0.9895),with excellent sensitivity(limit of detection(LOD)=7 and 6 nM,respectively).Furthermore,both nanosystems have been successfully applied for detection of 4-NA or 2,4-diNA in tap water,withrecoveries between 90%to 100.6%and 92%to 100.3%,respectively.Thanks to the versatility of the imprinting process,this nanosystemholds the potential for further development of several optical sensors for many other compounds.Asma Elbelazi Francesco Canfarotta Joanna Czulak Michael J.Whitcombe Sergey Piletsky Elena Piletska 2019Nano Research2019,12,12:0
14Biocompatibility and internalization of molecularly imprinted nanoparticles显示文摘分子地印的聚合物(MIP ) 正在接受与他们象抗体那样的简历类似物相比由于他们的坚韧性,稳定性,和便宜制造增加注意。分子的印过程能在合成聚合物被定义为分子的识别地点的产生。在一个聚合矩阵以内创造的导出模板的地点允许 MIP (经常提交的同样塑料的抗体) 有选择地认出并且绑在目标分子。因此, MIP 能在传感器中并且在分离和诊断被使用。由于他们的尺寸和功能的性质, MIP nanoparticles (NP ) 能潜在地在他们和房间的相互作用的 biomedicine,而是全面分析被使用,在 vitro,毒物学的测试必须首先被执行。此处,我们报导合成赤裸并且核心壳在不同房间线(HaCaT, MEF, HT1080,和巨噬细胞) 用一条创新稳固阶段的途径和如此的 NP 的毒物学的评估印了 NP。我们也在粒子稳定性,在房间的 NP 的成为主观,和各种各样的表面涂层的影响上评估了蛋白质日冕的影响。当特定的粒子涂层被使用时,成纤维细胞上的印的 NP 的新陈代谢的效果上的研究证明赤裸的 MIP 不改变房间新陈代谢,而一些问题产生。而且,在 vitro cytokine,版本研究表明巨噬细胞没面对在这研究评估的 MIP 被激活。结果建议 MIP NP 是 biocompatible,铺平道路为他们的在里面 vivo 申请。Francesco Canfarotta Alicia Waters Robyn Sadler Paul McGill Antonio Guerreiro Dmitri Papkovsky Karsten Haupt Sergey Piletsky 2016Nano Research2016,9,11:0
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