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Permeability of R6G across C?—43 hemichannels through a novel combination of patch clamp and surface enhanced Raman spectroscopy

机译:通过膜片钳和表面增强拉曼光谱的新颖组合,R6G在C?-43半通道中的渗透性

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We have measured the permeability of rhodamine-6G across C?—43 hemichannels reconstituted on a pipette tip. C?—43 hemichannels were overexpressed in Sf9 cells, and affinity-purified. The hemichannels were reconstituted in a lipid bilayer on a pipette tip by the tip-dip method. R6G in the pipette permeated across the channels into the bath. The permeability of R6G was quantified by measuring R6G concentration in the bath after several hours by surface enhanced Raman spectroscopy (SERS) with 100 nm silver colloid particles. The ratio of the permeability of dye to salt, as extracted by this combined electrical-SERS technique, is compatible with similar ratios for other dyes across whole gap junction channels. The results for the permeability ratio were further compared to fluorescence measurements. The novel combination of patch and SERS techniques can be extended to quantifying the transport of biologically significant non-fluorescent molecules, such as cAMP and IP3, across 1 nm sized pores, such as the gap junction channel.
机译:我们测量了若丹明6G在移液器吸头上重构的C?-43半通道的渗透性。在Sf9细胞中过表达C?-43半通道,并进行亲和纯化。通过吸头浸渍法将半通道重建在移液器吸头上的脂质双层中。移液器中的R6G穿过通道进入浴池。通过用100nm银胶体颗粒通过表面增强拉曼光谱法(SERS)在几个小时后测量浴中的R6G浓度来定量R6G的渗透性。通过这种组合的电SERS技术提取的染料与盐的渗透率之比与跨整个间隙连接通道的其他染料的相似比值兼容。渗透率的结果进一步与荧光测量结果进行了比较。膜片和SERS技术的新颖结合可以扩展到量化生物学上重要的非荧光分子(如cAMP和IP3)跨过1 nm大小的孔(如间隙连接通道)的运输。

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