A New Cell Separation Method Based on Antibody-Immobilized Nanoneedle Arrays for the Detection of Intracellular Markers

Focusing on intracellular targets, we propose a new cell separation technique based on a nanoneedle array (NNA) device, which allows simultaneous insertion of multiple needles into multiple cells. The device is designed to target and lift (“fish”) individual cells from a mixed population of cells on...

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Veröffentlicht in:Nano letters 2017-11, Vol.17 (11), p.7117-7124
Hauptverfasser: Kawamura, Ryuzo, Miyazaki, Minami, Shimizu, Keita, Matsumoto, Yuta, Silberberg, Yaron R, Sathuluri, Ramachandra Rao, Iijima, Masumi, Kuroda, Shun’ichi, Iwata, Futoshi, Kobayashi, Takeshi, Nakamura, Chikashi
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Sprache:eng
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Zusammenfassung:Focusing on intracellular targets, we propose a new cell separation technique based on a nanoneedle array (NNA) device, which allows simultaneous insertion of multiple needles into multiple cells. The device is designed to target and lift (“fish”) individual cells from a mixed population of cells on a substrate using an antibody-functionalized NNA. The mechanics underlying this approach were validated by force analysis using an atomic force microscope. Accurate high-throughput separation was achieved using one-to-one contacts between the nanoneedles and the cells by preparing a single-cell array in which the positions of the cells were aligned with 10,000 nanoneedles in the NNA. Cell-type-specific separation was realized by controlling the adhesion force so that the cells could be detached in cell-type-independent manner. Separation of nestin-expressing neural stem cells (NSCs) derived from human induced pluripotent stem cells (hiPSCs) was demonstrated using the proposed technology, and successful differentiation to neuronal cells was confirmed.
ISSN:1530-6984
1530-6992
DOI:10.1021/acs.nanolett.7b03918