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Miniaturized Electrospraying as a Technique for the Production of Microarrays of Reproducible Micrometer-Sized Protein Spots

机译:微型电喷雾技术作为可复制的微米级蛋白质斑点的微阵列生产技术。

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Electrospraying in a stable cone-jet mode at <400 μm above a substrate is shown to be a powerful technique to produce arrays of identical micrometer-sized spots consisting of biologically active substances. Aqueous solutions with a surface tension of 0.04 N m~(-1) and conductivities ranging from 0.04 to 2.2 S m~(-1) were sprayed at ultralow flow rates ranging from 100 to 300 pL s~(-1). The charged jet that emanates from the cone tip breaks up into a spray of charged droplets that are deposited in the form of a uniform spot of 130-350 μm in diameter by spraying during 0.5-3 s at 220-400 μm above a substrate, respectively. After a spot was deposited, spraying was stopped instantaneously by increasing the distance between the capillary tip and the substrate by an additional 100 μm using a computer-controlled x-y-z table. This was immediately followed by a rapid shift of the substrate 400 μm sideways and 100 μm upward, thus causing spraying to resume instantaneously because of the increased electric field strength, which resulted in the deposition of the next spot. It is shown here that spraying of lactate dehydrogenase (LDH), glucose-6-phosphate dehydrogenase (G6P-DH), and pyruvate kinase (PK) on a liquid layer resulted in the complete preservation of their activities despite the high solution conductivity of 3.3 S m~(-1) and high currents ranging from 300 to 500 nA. LDH and PK activities were fully preserved after spraying onto dry aluminum by adding 0.05 M buffer and 0.5 and 1 wt % of trehalose, respectively, to the spray solutions. Electro-spraying allows for accurate dispensing of liquid volumes as small as 50 pL. Enzymatic activities of LDH and PK are fully preserved after spraying.
机译:以稳定的锥形喷射模式在基板上方<400μm处进行电喷雾显示出一种强大的技术,可以产生由生物活性物质组成的相同微米级斑点的阵列。以100至300 pL s〜(-1)的超低流速喷涂表面张力为0.04 N m〜(-1),电导率为0.04至2.2 S m〜(-1)的水溶液。从锥头发出的带电射流分解成带电液滴的喷雾,通过在基板上方220-400μm处喷涂0.5-3 s,以直径130-350μm的均匀斑点的形式沉积,分别。沉积斑点后,使用计算机控制的x-y-z工作台,通过使毛细管尖端和基材之间的距离增加100μm,立即停止喷涂。随后立即将基材向侧面快速移动400μm,向上快速移动100μm,由于电场强度增加而导致喷涂立即恢复,从而导致下一个斑点的沉积。此处显示,尽管溶液电导率高达3.3,但在液体层上喷洒乳酸脱氢酶(LDH),葡萄糖-6-磷酸脱氢酶(G6P-DH)和丙酮酸激酶(PK)仍能完全保留其活性。 S m〜(-1)和300至500 nA的大电流。通过分别向喷雾溶液中添加0.05 M缓冲液和0.5和1 wt%的海藻糖,将LDH和PK活性完全保留在喷雾到干燥的铝上之后。电喷雾可精确分配小至50 pL的液体。喷雾后LDH和PK的酶活性被完全保留。

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