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液质联用技术:基于电感耦合等离子体质谱飞行时间的实时单细胞多指标免疫分析技术。

Mass cytometry: technique for real time single cell multitarget immunoassay based on inductively coupled plasma time-of-flight mass spectrometry.

机构信息

Department of Chemistry, University of Toronto, 80 St. George Street, Toronto, Ontario M5S 3H6, Canada.

出版信息

Anal Chem. 2009 Aug 15;81(16):6813-22. doi: 10.1021/ac901049w.

Abstract

A novel instrument for real time analysis of individual biological cells or other microparticles is described. The instrument is based on inductively coupled plasma time-of-flight mass spectrometry and comprises a three-aperture plasma-vacuum interface, a dc quadrupole turning optics for decoupling ions from neutral components, an rf quadrupole ion guide discriminating against low-mass dominant plasma ions, a point-to-parallel focusing dc quadrupole doublet, an orthogonal acceleration reflectron analyzer, a discrete dynode fast ion detector, and an 8-bit 1 GHz digitizer. A high spectrum generation frequency of 76.8 kHz provides capability for collecting multiple spectra from each particle-induced transient ion cloud, typically of 200-300 micros duration. It is shown that the transients can be resolved and characterized individually at a peak frequency of 1100 particles per second. Design considerations and optimization data are presented. The figures of merit of the instrument are measured under standard inductively coupled plasma (ICP) operating conditions (<3% cerium oxide ratio). At mass resolution (full width at half-maximum) M/DeltaM > 900 for m/z = 159, the sensitivity with a standard sample introduction system of >1.4 x 10(8) ion counts per second per mg L(-1) of Tb and an abundance sensitivity of (6 x 10(-4))-(1.4 x 10(-3)) (trailing and leading masses, respectively) are shown. The mass range (m/z = 125-215) and abundance sensitivity are sufficient for elemental immunoassay with up to 60 distinct available elemental tags. When <15 elemental tags are used, a higher sensitivity mode at lower resolution (M/DeltaM > 500) can be used, which provides >2.4 x 10(8) cps per mg L(-1) of Tb, at (1.5 x 10(-3))-(5.0 x 10(-3)) abundance sensitivity. The real-time simultaneous detection of multiple isotopes from individual 1.8 microm polystyrene beads labeled with lanthanides is shown. A real time single cell 20 antigen expression assay of model cell lines and leukemia patient samples immuno-labeled with lanthanide-tagged antibodies is presented.

摘要

一种用于实时分析单个生物细胞或其他微粒的新型仪器。该仪器基于电感耦合等离子体飞行时间质谱法,包括三孔等离子体-真空接口、用于将离子与中性成分解耦的直流四极转向光学器件、用于排斥低质量主导等离子体离子的射频四极离子导向器、点到平行聚焦直流四极双管、正交加速反射器分析仪、离散倍增快速离子探测器和 8 位 1GHz 数字化仪。76.8kHz 的高光谱生成频率提供了从每个颗粒诱导的瞬态离子云收集多个光谱的能力,通常持续时间为 200-300 微秒。结果表明,在 1100 个粒子/秒的峰值频率下,可以单独解析和表征瞬态。介绍了设计考虑因素和优化数据。在标准电感耦合等离子体(ICP)运行条件(<3%氧化铈比)下测量仪器的质量指标。在质量分辨率(半峰全宽)M/DeltaM > 900 时,对于标准样品引入系统,灵敏度>1.4x10(8)离子计数/秒/毫克 L(-1)的 Tb 和丰度灵敏度(6x10(-4))-(1.4x10(-3))(分别为尾随和领先质量)。质量范围(m/z=125-215)和丰度灵敏度足以进行多达 60 个不同的元素免疫测定。当使用<15 个元素标签时,可以使用较低分辨率(M/DeltaM>500)的更高灵敏度模式,该模式提供>2.4x10(8)cps/毫克 L(-1)的 Tb,丰度灵敏度为(1.5x10(-3))-(5.0x10(-3))。显示了用镧系元素标记的 1.8μm 聚苯乙烯珠单个实时同时检测多个同位素。提出了用于实时单细胞 20 个抗原表达测定的模型细胞系和用镧系标记抗体免疫标记的白血病患者样本。

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