期刊论文详细信息
Polymers 卷:13
Rapid Prototyping of a Nanoparticle Concentrator Using a Hydrogel Molding Method
Masanori Hayase1  Ryutaro Otahara1  Toru Torii2  Harutaka Mekaru3  Hirotada Hirama3  Katsuo Mogi4 
[1] Faculty of Science and Technology, Tokyo University of Science, Chiba 278-8510, Japan;
[2] Future Center Initiative, The University of Tokyo, Chiba 277-0871, Japan;
[3] Human Augmentation Research Center, National Institute of Advanced Industrial Science and Technology, Chiba 277-0882, Japan;
[4] Molecular Profiling Research Center for Drug Discovery, National Institute of Advanced Industrial Science and Technology, Tokyo 135-0064, Japan;
关键词: ion concentration polarization;    concentration;    microfluidics;   
DOI  :  10.3390/polym13071069
来源: DOAJ
【 摘 要 】

Nanoparticle (NP) concentration is crucial for liquid biopsies and analysis, and various NP concentrators (NPCs) have been developed. Methods using ion concentration polarization (ICP), an electrochemical phenomenon based on NPCs consisting of microchannels, have attracted attention because samples can be non-invasively concentrated using devices with simple structures. The fabrication of such NPCs is limited by the need for lithography, requiring special equipment and time. To overcome this, we reported a rapid prototyping method for NPCs by extending the previously developed hydrogel molding method, a microchannel fabrication method using hydrogel as a mold. With this, we fabricated NPCs with both straight and branched channels, typical NPC configurations. The generation of ICP was verified, and an NP concentration test was performed using dispersions of negatively and positively charged NPs. In the straight-channel NPC, negatively and positively charged NPs were concentrated >50-fold and >25-fold the original concentration, respectively. To our knowledge, this is the first report of NP concentration via ICP in a straight-channel NPC. Using a branched-channel NPC, maximum concentration rates of 2.0-fold and 1.7-fold were obtained with negatively and positively charged NPs, respectively, similar to those obtained with NPCs fabricated through conventional lithography. This rapid prototyping method is expected to promote the development of NPCs for liquid biopsy and analysis.

【 授权许可】

Unknown   

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