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Ultra-low-volume, real-time measurements of lactate from the single heart cell using microsystems technology

机译:使用微系统技术对单个心脏细胞中的乳酸进行超小体积实时测量

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The fabrication of microelectrodes integrated within ultralow-volume microtiter chambers for the amperometric determination of metabolites continues to be of interest in the subject of single-cell and high-throughput screening. The microsystem described in this paper consists of a two-microelectrode sensor with a microfluidic dispensation technology, which is able to deliver both very low titers (6.5 pL) and single heart cells into a low-volume micro-photoelectrochemical cell. Devices were fabricated using photolithography and liftoff giving reproducible sensors integrated within high aspect ratio titer chambers (with a volume of 360 pL, made of the photoepoxy SU8. In this paper, the determination of lactate was optimized using an enzyme-linked assay based upon lactate oxidase, involving the amperometric determination of hydrogen peroxide at +640 mV versus an internal Ag/AgCl pseudoreference. The microsystem (including the microfluidic dispensers and structures as well as the microsensor) was subsequently used to measure the lactate content of single heart cells. Dynamic electrochemical measurements of lactate during cell permeabilization are presented. We also show the use of respiratory uncouplers to simulate ischemia in the single myocyte and show that, as expected, the rate of lactate production from the hypoxic heart cell is greater than that within the normoxic healthy myocyte. [References: 24]
机译:在单细胞和高通量筛选的主题中,集成在超低容量微量滴定室内的微电极的制造对代谢物的安培测定仍然是令人感兴趣的。本文中描述的微系统由具有微流体分配技术的两电极传感器组成,该传感器能够将滴定度很低(6.5 pL)的单心脏细胞同时输送到小体积的微光电化学电池中。使用光刻和剥离技术制造的设备可将可重现的传感器集成在高纵横比滴定室内(体积为360 pL,由光环氧SU8制成)。在本文中,使用基于乳酸的酶联测定法对乳酸的测定进行了优化氧化酶,涉及相对于内部Ag / AgCl伪参比在+640 mV处安培测定过氧化氢,随后使用微系统(包括微流体分配器和结构以及微传感器)测量单个心脏细胞的乳酸含量。给出了细胞通透过程中乳酸的电化学测量结果,我们还显示了使用呼吸解偶联剂模拟单个心肌细胞的缺血,并表明,正如预期的那样,低氧心脏细胞产生乳酸的速率大于正常氧健康人群中的肌细胞[参考文献:24]

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