TY - JOUR
T1 - Parallel Pseudo-MRM on the “brick” miniature mass spectrometer for high throughput multi-target screening
AU - Zhang, Hongjia
AU - Jia, Heyuan
AU - Gao, Zhiwu
AU - Xiang, Yu
AU - Jiang, Ting
AU - Xu, Wei
N1 - Publisher Copyright:
© 2022 Elsevier B.V.
PY - 2023/1/15
Y1 - 2023/1/15
N2 - With increasingly improved analytical performances, miniature mass spectrometers are expandingly applied in more application scenarios. The capability of high throughput analysis of multi-targets is a crucial function of a miniature mass spectrometer, especially for in-situ applications. As a powerful method for target screening, multiple reaction monitoring (MRM) was conventionally realized on triple quadrupole (QQQ) mass spectrometers. Previously, pseudo-multiple reaction monitoring (pseudo-MRM) operation mode has been realized on a “brick” mass spectrometer equipped with a single ion trap. However, pseudo-MRM on an ion trap was realized through the tandem-in-time fashion, and the throughput of pseudo-MRM was still limited. As a continuous effort to boost performances of the “brick” miniature mass spectrometer, parallel pseudo-MRM mode was developed, and the throughput could be raised up to 10 times for multi-target screening. To achieve better isolation and collision induced dissociation (CID) efficiencies, the mass range of interest was divided into several segments based on optimized Mathieu q value. The fast screening of 10 different drugs was used as an illustrative example. Furthermore, parallel quantitative analysis was also demonstrated and verified using the internal standard calibration method.
AB - With increasingly improved analytical performances, miniature mass spectrometers are expandingly applied in more application scenarios. The capability of high throughput analysis of multi-targets is a crucial function of a miniature mass spectrometer, especially for in-situ applications. As a powerful method for target screening, multiple reaction monitoring (MRM) was conventionally realized on triple quadrupole (QQQ) mass spectrometers. Previously, pseudo-multiple reaction monitoring (pseudo-MRM) operation mode has been realized on a “brick” mass spectrometer equipped with a single ion trap. However, pseudo-MRM on an ion trap was realized through the tandem-in-time fashion, and the throughput of pseudo-MRM was still limited. As a continuous effort to boost performances of the “brick” miniature mass spectrometer, parallel pseudo-MRM mode was developed, and the throughput could be raised up to 10 times for multi-target screening. To achieve better isolation and collision induced dissociation (CID) efficiencies, the mass range of interest was divided into several segments based on optimized Mathieu q value. The fast screening of 10 different drugs was used as an illustrative example. Furthermore, parallel quantitative analysis was also demonstrated and verified using the internal standard calibration method.
KW - Ion trap
KW - Miniature mass spectrometer
KW - Multi-target screening
KW - Parallel pseudo-MRM
UR - http://www.scopus.com/inward/record.url?scp=85136536717&partnerID=8YFLogxK
U2 - 10.1016/j.talanta.2022.123866
DO - 10.1016/j.talanta.2022.123866
M3 - Article
C2 - 36041316
AN - SCOPUS:85136536717
SN - 0039-9140
VL - 252
JO - Talanta
JF - Talanta
M1 - 123866
ER -