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用于纳米液相色谱和微电喷雾电离生物分析的高灵敏度傅里叶变换离子回旋共振质谱仪。

High sensitivity Fourier transform ion cyclotron resonance mass spectrometry for biological analysis with nano-LC and microelectrospray ionization.

作者信息

Quenzer T L, Emmett M R, Hendrickson C L, Kelly P H, Marshall A G

机构信息

National High Magnetic Field Laboratory, Florida State University, 1800 East Paul Dirac Drive, Tallahassee, Florida 32310, USA.

出版信息

Anal Chem. 2001 Apr 15;73(8):1721-5. doi: 10.1021/ac001095q.

Abstract

Modifications to a 7 T nano-LC micro-ESI FT-ICR mass spectrometer, including a shorter octopole, approximately 100% duty cycle, improved nano-LC micro-ESI emitter tips, and reverse-phase HPLC resins that require no ion-pairing agent, combine to achieve attomole detection limit. Three peptides in a mixture totaling 500 attomoles (amol) each in water (10 microL, 50 amol/microL) are separated and detected, demonstrating detection from a mixture at low endogenous biological concentration. Two peptides in a mixture totaling 500 amol each in artificial cerebrospinal fluid (1 microL, 500 amol/microL) are separated and detected, demonstrating detection from a mixture at a biological concentration in a biological solvent. The highest sensitivity is attained with arg8-vasotocin, in which a total of 300 amol is detected in artificial cerebrospinal fluid (1 microL, 300 amol/microL) and a total of 100 amol in water (1 microL, 100 amol/microL). Arg8-vasotocin isolated from the pineal gland of rainbow trout is detected, demonstrating the ability of FT-ICR to detect and identify a true endogenous biological analyte.

摘要

对一台7T纳米液相色谱微电喷雾傅里叶变换离子回旋共振质谱仪进行了改进,包括缩短八极杆、占空比约为100%、改进纳米液相色谱微电喷雾发射器尖端,以及使用无需离子对试剂的反相高效液相色谱树脂,这些改进共同实现了阿托摩尔检测限。对水中(10微升,50阿托摩尔/微升)每种总量为500阿托摩尔(amol)的混合物中的三种肽进行了分离和检测,证明了在低内源性生物浓度下从混合物中进行检测的能力。对人工脑脊液(1微升,500阿托摩尔/微升)中每种总量为500阿托摩尔的混合物中的两种肽进行了分离和检测,证明了在生物溶剂中的生物浓度下从混合物中进行检测的能力。对精氨酸8-血管紧张素的检测灵敏度最高,在人工脑脊液(1微升,300阿托摩尔/微升)中检测到总量为300阿托摩尔,在水中(1微升,100阿托摩尔/微升)中检测到总量为100阿托摩尔。检测到了从虹鳟松果体中分离出的精氨酸8-血管紧张素,证明了傅里叶变换离子回旋共振质谱仪检测和鉴定真正内源性生物分析物的能力。

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