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Array of Chemically Etched Fused-Silica Emitters for Improving the Sensitivity and Quantitation of Electrospray Ionization Mass Spectrometry

机译:化学刻蚀熔融石英发射体阵列,用于提高电喷雾电离质谱的灵敏度和定量

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An array of emitters has been developed for increasingthe sensitivity of electrospray ionization mass spectrometry (ESI-MS). The linear array consists of 19 chemically etched fused-silica capillaries arranged with 500 (mu)m (center-to-center) spacing. The multiemitter device has a low dead volume to facilitate coupling to capillary liquid chromatography (LC) separations. The high aspect ratio of the emitters enables operation at flow rates as low as 20 nL/min/emitter, effectively extending the benefits of nanoelectrospray to higher flow rate analyses. To accommodate the larger ion current produced by the emitter array, a multicapillary inlet to the mass spectrometer was also constructed. The inlet, which matched the dimensions of the emitter array, preserved ion transmission efficiency. Standard reserpine solutions of varying concentration were electrosprayed at 1 (mu)L/min using the multiemitter/multi-inlet combination, and the results were compared to those from a standard, single-emitter configuration. A 9-fold sensitivity enhancement was observed for the multiemitter relative to the single emitter. A bovine serum albumin tryptic digest was also analyzed, and a sensitivity increase ranging from 2.4- to 12.3-fold for the detected tryptic peptides resulted; the varying response was attributed to reduced ion suppression under the nanoESI conditions afforded by the emitter array. An equimolar mixture of leucine enkephalin and maltopentaose was studied to verify that ion suppression is indeed reduced for the multiplexed ESI (multi-ESI) array relative to a single emitter over a range of flow rates.
机译:已经开发出发射器阵列以提高电喷雾电离质谱法(ESI-MS)的灵敏度。线性阵列由19个化学蚀刻的熔融石英毛细管组成,它们的间距为500μm(中心到中心)。多重发射器设备的死体积低,可促进与毛细管液相色谱(LC)分离的耦合。发射器的高长宽比使它能够以低至20 nL / min /发射器的流速运行,有效地将纳米电喷雾的优势扩展到更高的流速分析。为了适应发射器阵列产生的较大离子电流,还构造了质谱仪的多毛细管入口。匹配发射器阵列尺寸的入口可保持离子传输效率。使用多发射器/多进样口组合以1μL/ min的浓度对标准浓度的利血平溶液进行电喷雾,并将结果与​​标准的单发射器配置进行比较。相对于单个发射器,多发射器的灵敏度提高了9倍。还分析了牛血清白蛋白胰蛋白酶消化物,检测到的胰蛋白酶肽的灵敏度提高了2.4倍至12.3倍;变化的响应归因于在发射极阵列提供的nanoESI条件下离子抑制的降低。研究了亮氨酸脑啡肽和麦芽五糖的等摩尔混合物,以证明在一定流速范围内,相对于单个发射器,多路复用ESI(multi-ESI)阵列的离子抑制确实降低了。

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