Determination of Nine Bile Acids in Dried Blood Spots by Precolumn Derivatization-High Performance Liquid Chromatography-Triple Quadrupole Mass Spectrometry
Scientific Papers|更新时间:2025-09-01
|
Determination of Nine Bile Acids in Dried Blood Spots by Precolumn Derivatization-High Performance Liquid Chromatography-Triple Quadrupole Mass Spectrometry
Journal of Instrumental AnalysisVol. 44, Issue 5, Pages: 876-883(2025)
WANG Zi-qing,MENG Zi-xuan,HAO Li-ping,ZHANG Ruo-yu,ZHANG Hao-ran,LIU Kai-xuan,KANG Wei-jun,AI Lian-feng.Determination of Nine Bile Acids in Dried Blood Spots by Precolumn Derivatization-High Performance Liquid Chromatography-Triple Quadrupole Mass Spectrometry[J].Journal of Instrumental Analysis,2025,44(05):876-883.
WANG Zi-qing,MENG Zi-xuan,HAO Li-ping,ZHANG Ruo-yu,ZHANG Hao-ran,LIU Kai-xuan,KANG Wei-jun,AI Lian-feng.Determination of Nine Bile Acids in Dried Blood Spots by Precolumn Derivatization-High Performance Liquid Chromatography-Triple Quadrupole Mass Spectrometry[J].Journal of Instrumental Analysis,2025,44(05):876-883. DOI: 10.12452/j.fxcsxb.241024481.
Determination of Nine Bile Acids in Dried Blood Spots by Precolumn Derivatization-High Performance Liquid Chromatography-Triple Quadrupole Mass Spectrometry
A highly efficient and reliable precolumn derivatization-high performance liquid chromatography-triple quadrupole mass spectrometry method was established for the determination of nine types of bile acids in dried blood spots. Samples were extracted by vortexing with methanol and extracted by vortexing with methanol. After derivatization with a 2-hydrazinopyridine acetonitrile solution,the samples were dried,redissolved in a 50% methanol aqueous solution,filtered through a 0.22 µm organic membrane,and quantitatively analyzed using the internal standard method. The T3 chromatographic column was selected,and a gradient elution was carried out using water(0.1% formic acid)-methanol acetonitrile(9∶1,volume ratio) as the mobile phase. Scanning was performed in the positive ion mode,and detection was carried out in the multiple reaction monitoring mode. The results showed that the standard curves of nine target substances exhibited an excellent linear relationship,with the correlation coefficients ranging from 0.998 2 to 0.999 8. The limits of detection(LODs) were between 0.2 nmol/L and 2.0 nmol/L,and the limits of quantification(LOQs) were between 1.0 nmol/L and 10 nmol/L. The recoveries ranged from 92.4% to 109%,and the relative standard deviations(RSDs) were all less than 15%. Both the intra-batch and inter-batch RSDs were less than 12%. The relative matrix effects were between 89.6% and 109%(RSD≤11%),and the derivatization products could be stored at 4 ℃ for 48 hours. Compared with the results of serum samples,this method showed a high degree of correlation and consistency. This method had good selectivity and linear relationship,with no obvious matrix effect or carryover effect. The target substances exhibited good stability,and the method could be used for the rapid detection of bile acids in dried blood spots.
关键词
Keywords
references
Fang X Y , Miao R Y , Wei J H , Wu H R , Tian J X . Comput. Struct. Biotechnol. J. , 2022 , 20 : 5935 - 5951 .
Rivera-Andrade A , Petrick J , Alvarez C , Graubard B , Florio A , Kroker-Lobos M , Parisi D , Freedman N , Lazo M , Guallar E , Groopman J , Ramirez-Zea M , McGlynn A . Aliment. Pharmacol. Ther. , 2022 , 56 ( 2 ): 321 - 329 .
Tang B , Tang L , Li S P , Liu S , He J J , Li P , Wang S M , Yang M , Zhang L H , Lei Y Y , Tu D , Tang X , Hu H F , Qin O Y , Chen X , Yang S M . Nat. Commun. , 2023 , 14 ( 1 ): 1305 .
Ovadia C , Seed P , Sklavounos A , Geenes V , Illio C , Chambers J , Kohari K , Bacq Y , Bozkurt N , Brun-Furrer R , Bull L , Estiú M , Grymowicz M , Gunaydin B , Hague W , Haslinger C , Hu Y , Kawakita T , Kebapcilar A , Kebapcilar L , Kondrackienė J , Koster M , Kowalska-Kańka A , Kupčinskas L , Lee R , Locatelli A , Macias R , Marschall H , Oudijk M , Raz Y , Rimon E , Shan D , Shao Y , Tribe R , Tripodi V , Abide C , Yenidede I , Thornton G , Chappell L , Williamson C . The Lancet , 2019 , 393 : 899 - 909 .
Luo L , Aubrecht J , Li D , Warner R , Johnson K , Kenny J , Colangelo J . PLoS One , 2018 , 13 ( 3 ): e0193824 .
John Y , Chiang L . Compr. Physiol. , 2013 , 3 : 1191 - 1212 .
Liu D , Li G , Liu D D , Shi W , Wang H M , Zhang Q X , Shen M , Huang X Z , Lin H B . Chem. Biodiversity , 2023 , 20 ( 3 ): e202200720 .
Londhe V , Rajadhyaksha M . J. Pharm. Biomed. Anal. , 2020 , 182 : 113102 .
Zanchetta M , Posocco B , Gagno S , Poetto A , Orleni M , Canil G , Guardascione M , Puglisi F , Toffoli G . J. Pharm. Biomed. Anal. , 2023 , 226 : 115255 .
Iacuzzi V , Posocco B , Zanchetta M , Montico M , Marangon E , Poettol A , Buzzo M , Gagno S , Buonadonna A , Guardascione M , Casetta M , Toffoli G . PLoS One , 2019 , 14 ( 11 ): e0225225 .
Gelb M , Basheeruddin K , Burlina A , Chen A , Chien Y , Dizikes G , Dorley C , Giugliani R , Hietala A , Hong X , Kao S , Khaledi H , Klug T , Kubaski F , Liao H , Martin M , Manning A , Orsini J , Peng Y , Ranieri E , Rohrwasser A , Szabo-Fresnais N , Turgeon C , Vaz F , Wang L , Matern D . Int. J. Neonat. Screening , 2022 , 8 ( 4 ): 62 .
Liu F B , Zhang Y , Wang J F , Zhou P L , Hou X L . J. Instrum. Anal. (刘富邦,张瑛,王继芬,周沛龙,侯晓龙,分析测试学报), 2024 , 43 ( 2 ): 309 - 314 .
Kumar B , Chung B , Lee Y , Yi H , Lee B , Jung B . Anal. Biochem. , 2011 , 408 ( 2 ): 242 - 252 .
Dewaele D , Annaert P , Hoeben E . Experimental Cholestasis Research . New York : Springer Nature , 2019 : 15 - 23 .
Krautbauer S , Liebisch G . Clinical Metabolomics . New York : Springer Science , 2018 : 103 - 110 .
Mi S , Lim D , Turner J , Wales P , Curtis J . Lipids , 2016 , 51 ( 3 ): 359 - 372 .
Zheng J P , Ye C , Hu B F , Yang H B , Yao Q F , Ma J , Liu Y , Liu H T . Biotechnol. Appl. Biochem . , 2020 . DOI: 10.1002/bab.2055 http://dx.doi.org/10.1002/bab.2055 .
Li Q , Chen S L , Wang Q , Chen H B , Jin M , Chen Z M , Wu L X . J. Instrum. Anal . (李沁,陈三理,王倩,陈海滨,金鸣,陈在敏,吴丽璇. 分析测试学报), 2024 , 43 ( 6 ): 891 - 897 .
Ma Z Y , Sheng N , Zhang J L . The Analyst , 2023 , 148 ( 20 ): 5190 - 5202 .
Shen Y , Liu K , Luo X , Guan Q , Cheng L M . J. Clin. Lab. Anal. , 2022 , 36 ( 3 ): e24279 .
Food and Drug Administration . Bioanalytical Method Validation Guidance for Industry .[ 2018-05-22 ]. https://www.fda.gov/regulatory-information/search-fda-guidance-documents#guidancesearch https://www.fda.gov/regulatory-information/search-fda-guidance-documents#guidancesearch .
GB/ T27417 - 2017 . Conformity Assessment—Guidance on Validation and Verification of Chemical.National Standards of the People's Republic of China(合格评定 化学分析方法确认和验证指南. 中华人民共和国国家标准) .