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首页> 外文期刊>Analytical and Bioanalytical Chemistry >Characterization of optimized Na+ and Cl? liquid membranes for use with extracellular, self-referencing microelectrodes
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Characterization of optimized Na+ and Cl? liquid membranes for use with extracellular, self-referencing microelectrodes

机译:用于细胞外自参考微电极的优化Na + 和Cl?液膜的表征

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Self-referencing with ion-selective microelectrodes (ISMs) is a useful approach for monitoring near-real-time ion flux near single cells and across epithelia. While ISMs for H+, Ca2+, and K+ have been optimized for use with self-referencing, ISMs for two other primary inorganic ions, Na+ and Cl?, have not. In this study, we have characterized ISMs based on three Na+ ionophores (I, VI, and X) and one Cl? ionophore to assess their suitability for use with self-referencing. ISMs constructed with Na+ ionophore VI have short response times (≈100 ms) but possess nearly an order of magnitude less selectivity for Na+ over K+ than ISMs constructed with Na+ ionophore X. The Na+ ionophore X mixture was enhanced to give it a shorter response time while not compromising its selectivity. A Cl?-selective microelectrode was constructed and characterized with superior anionic selectivity compared with previously reported Cl? ISMs used with self-referencing. This Cl?-selective microelectrode, however, has a relatively slow response time (≈3 s), thus requiring changes to the self-referencing protocol. Self-referencing with these ISMs will enable near-real-time ion flux measurements for Na+ and Cl?.
机译:使用离子选择性微电极(ISM)进行自参考是一种用于监视单个细胞附近和整个上皮细胞附近实时离子通量的有用方法。尽管针对H + ,Ca2 + 和K + 的ISM已进行了优化以用于自参考,但其他两种主要无机离子Na + 和Cl?,没有。在这项研究中,我们已经基于三个Na +离子载体(I,VI和X)和一个Cl +离子载体对ISM进行了表征,以评估它们与自参考结合使用的适用性。用Na + 离子载体构建的ISM响应时间短(≈100ms),但与Na + 离子载体构建的ISM相比,对K + 的Na + 选择性低近一个数量级。 X. Na +离子载体X混合物得到增强,使其响应时间更短,同时又不影响其选择性。与以前报道的用于自参考的Cl?ISM相比,构建了一个Cl?选择性微电极,并具有更好的阴离子选择性。然而,该Cl-选择微电极具有相对较慢的响应时间(≈3s),因此需要改变自参考方案。通过这些ISM的自引用,可以实现Na + 和Cl?的近实时离子通量测量。

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