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本文引用的文献

1
Optimization of the Polymer Coating for Glycosylated Gold Nanoparticle Biosensors to Ensure Stability and Rapid Optical Readouts.用于糖基化金纳米颗粒生物传感器的聚合物涂层优化,以确保稳定性和快速光学读数。
ACS Macro Lett. 2014 Oct 21;3(10):1004-1008. doi: 10.1021/mz5004882. Epub 2014 Sep 16.
2
Gold nanoparticle-linked analysis of carbohydrate-protein interactions, and polymeric inhibitors, using unlabelled proteins; easy measurements using a 'simple' digital camera.使用未标记蛋白质的金纳米颗粒连接的碳水化合物-蛋白质相互作用及聚合物抑制剂分析;使用“简单”数码相机进行简便测量。
J Mater Chem B. 2013 May 28;1(20):2665-2672. doi: 10.1039/c3tb20259c. Epub 2013 Apr 16.
3
Co-operative transitions of responsive-polymer coated gold nanoparticles; precision tuning and direct evidence for co-operative aggregation.响应性聚合物包覆金纳米粒子的协同转变;协同聚集的精确调控与直接证据。
J Mater Chem B. 2016 Sep 14;4(34):5673-5682. doi: 10.1039/c6tb01336h. Epub 2016 Aug 2.
4
Glycan heterogeneity on gold nanoparticles increases lectin discrimination capacity in label-free multiplexed bioassays.金纳米粒子上的糖基异质性增加了无标记多重生物分析中凝集素的区分能力。
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Discrimination between bacterial species by ratiometric analysis of their carbohydrate binding profile.通过对细菌碳水化合物结合谱的比率分析来区分细菌种类。
Mol Biosyst. 2016 Feb;12(2):341-4. doi: 10.1039/c5mb00720h.
6
Multivalent Glycopolymer-Coated Gold Nanoparticles.多价糖聚合物包覆的金纳米颗粒。
Methods Mol Biol. 2016;1367:169-79. doi: 10.1007/978-1-4939-3130-9_14.
7
In vivo integrity of polymer-coated gold nanoparticles.聚合物包覆金纳米粒子的体内完整性。
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Zwitterionic poly(amino acid methacrylate) brushes.两性离子聚(甲基丙烯酸氨基酸酯)刷
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10
Bacterial toxin inhibitors based on multivalent scaffolds.基于多价支架的细菌毒素抑制剂。
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用于稳定糖基化金纳米颗粒的RAFT法合成聚(乙烯基吡咯烷酮)与聚(甲基丙烯酸寡聚乙二醇酯)的比较

Comparison of RAFT derived Poly(vinylpyrolidone) verses Poly(oligoethyleneglycol methacrylate) for the Stabilization of Glycosylated Gold Nanoparticles.

作者信息

Ieong Nga Sze, Biggs Caroline I, Walker Mark, Gibson Matthew I

机构信息

Department of Chemistry, University of Warwick, Gibbet Hill Road, Coventry, CV4 7AL, UK.

Department of Physics, University of Warwick, Gibbet Hill Road, Coventry, CV4 7AL, UK.

出版信息

J Polym Sci A Polym Chem. 2017 Apr 1;55(7):1200-1208. doi: 10.1002/pola.28481. Epub 2017 Jan 26.

DOI:10.1002/pola.28481
PMID:29225417
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5718293/
Abstract

Carbohydrates dictate many biological processes including infection by pathogens. Glycosylated polymers and nanomaterials which have increased affinity due to the cluster glycoside effect, are therefore useful tools to probe function, but also as prophylactic therapies or diagnostic tools. Here, the effect of polymer structure on the coating of gold nanoparticles is studied in the context of grafting density, buffer stability and in a lectin binding assay. RAFT polymerization is used to generate poly(oligoethyleneglycol methacrylates) and poly(-vinyl pyrolidones) with a thiol end-group for subsequent immobilization onto the gold. It is observed that poly(oligoethylene glycol methacrylates), despite being widely used particle coatings, lead to low grafting densities which in turn resulted in lower stability in biological buffers. A depression of the cloud point upon nanoparticle immobilization is also seen, which might compromise performance. In comparison poly(vinyl pyrolidones) resulted in stable particles with higher grafting densities due to the compact size of each monomer unit. The higher grafting density also enabled an increase in the number of carbohydrates which can be installed per nanoparticle at the chain ends, and gave increased binding in a lectin recognition assay. These results will guide the development of new nanoparticle biosensors with enhanced specificity, affinity and stability.

摘要

碳水化合物决定了包括病原体感染在内的许多生物过程。由于簇苷效应而具有增强亲和力的糖基化聚合物和纳米材料,因此不仅是探测功能的有用工具,也是预防性治疗或诊断工具。在此,在接枝密度、缓冲稳定性以及凝集素结合试验的背景下,研究了聚合物结构对金纳米颗粒包覆的影响。可逆加成-断裂链转移(RAFT)聚合用于生成具有硫醇端基的聚(甲基丙烯酸寡聚乙二醇酯)和聚(乙烯基吡咯烷酮),以便随后固定到金上。据观察,聚(甲基丙烯酸寡聚乙二醇酯)尽管是广泛使用的颗粒涂层,但导致接枝密度较低,进而导致在生物缓冲液中的稳定性较低。还观察到纳米颗粒固定后浊点降低,这可能会影响性能。相比之下,由于每个单体单元尺寸紧凑,聚(乙烯基吡咯烷酮)产生了具有更高接枝密度的稳定颗粒。更高的接枝密度还使得每个纳米颗粒在链端能够安装的碳水化合物数量增加,并在凝集素识别试验中增强了结合。这些结果将指导具有更高特异性、亲和力和稳定性的新型纳米颗粒生物传感器的开发。