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利用有机电子离子泵对神经元细胞中的钙离子信号进行电子控制。

Electronic control of Ca2+ signalling in neuronal cells using an organic electronic ion pump.

作者信息

Isaksson Joakim, Kjäll Peter, Nilsson David, Robinson Nathaniel D, Berggren Magnus, Richter-Dahlfors Agneta

机构信息

Department of Science and Technology, Campus Norrköping, Linköpings Universitet, SE-601 74 Norrköping, Sweden.

出版信息

Nat Mater. 2007 Sep;6(9):673-9. doi: 10.1038/nmat1963. Epub 2007 Jul 22.

Abstract

Cells and tissues use finely regulated ion fluxes for their intra- and intercellular communication. Technologies providing spatial and temporal control for studies of such fluxes are however, limited. We have developed an electrophoretic ion pump made of poly(3,4-ethylenedioxythiophene) doped with poly(styrene sulphonate) (PEDOT:PSS) to mediate electronic control of the ion homeostasis in neurons. Ion delivery from a source reservoir to a receiving electrolyte via a PEDOT:PSS thin-film channel was achieved by electronic addressing. Ions are delivered in high quantities at an associated on/off ratio exceeding 300. This induces physiological signalling events that can be recorded at the single-cell level. Furthermore, miniaturization of the device to a 50-microm-wide channel allows for stimulation of individual cells. As this technology platform allows for electronic control of ion signalling in individual cells with proper spatial and temporal resolution, it will be useful in further studies of communication in biological systems.

摘要

细胞和组织利用精细调节的离子通量进行细胞内和细胞间通讯。然而,用于研究此类通量的提供空间和时间控制的技术有限。我们开发了一种由聚(苯乙烯磺酸盐)掺杂的聚(3,4-乙撑二氧噻吩)(PEDOT:PSS)制成的电泳离子泵,以介导对神经元中离子稳态的电子控制。通过电子寻址实现了离子从源储液器通过PEDOT:PSS薄膜通道输送到接收电解质中。离子以超过300的相关开/关比大量输送。这会引发可在单细胞水平记录的生理信号事件。此外,将该装置小型化为50微米宽的通道可实现对单个细胞的刺激。由于该技术平台能够以适当的空间和时间分辨率对单个细胞中的离子信号进行电子控制,因此它将有助于生物系统通讯的进一步研究。

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