FENG Yuqi
Gender:Male
Education Level:研究生毕业
Paper Publications
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[1]. FAHFAs: Biological Functions, Analysis and Synthesis. Progress in Chemistry. 33. 1115~ 1125.
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[2]. Boron Isotope Tag-Assisted Ultrahigh-Performance Liquid Chromatography Coupled with High-Resolution Mass Spectrometry for Discovery and Annotation of cis-Diol-Containing Metabolites. Analytical Chemistry. 93. 3002–3009. 2021.
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[3]. C60-based chemical labeling strategy for the determination of polyamines in biological samples using matrix-assisted laser desorption/ionization mass spectrometry. Talanta. 224. 121790. 2021.
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[4]. Transformation of 5-carboxylcytosine to cytosine through C–C bond cleavage in human cells constitutes a novel pathway for DNA demethylation. CCS Chemistry. 3. 994-1008. 2021.
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[5]. Chemical Tagging Assisted Mass Spectrometry Analysis Enables Sensitive Determination of Phosphorylated Compounds in a Single Cell. Analytical Chemistry. 93. 6848-6856. 2021.
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[6]. Sensitive and Simultaneous Determination of Uridine Thiolation and Hydroxylation Modifications in Eukaryotic RNA by Derivatization Coupled with Mass Spectrometry Analysis. Analytical Chemistry. 93. 6938-6946. 2021.
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[7]. Quantitative analysis of the relationship of derivatization reagents and detection sensitivity of electrospray ionization-triple quadrupole tandem mass spectrometry: Hydrazines as prototypes. Analytica Chimica Acta. 1158. 338402. 2021.
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[8]. A Mathematical Method for Calibrating the Signal Drift in Liquid Chromatography-Mass Spectrometry Analysis. Talanta. 122511. 2021.
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[9]. Treatment of Lime Witches’ Broom Phytoplasma-Infected Mexican Lime with a Resistance Inducer and Study of its Effect on Systemic Resistance. Journal of Plant Growth Regulation. 40. 1409-1421. 2021.
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[10]. A structure–guided screening strategy for the discovery and identification of potential gibberellins from plant samples using liquid chromatography–mass spectrometry assisted by chemical isotope labeling. Analytica Chimica Acta. 1163. 338505. 2021.
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[11]. Screening and identification of epoxy/dihydroxy-oxylipins by chemical labeling-assisted ultrahigh-performance liquid chromatography coupled with high-resolution mass spectrometry. Analytical Chemistry. 93. 9904-9911. 2021.
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[12]. Integration of Chemical Derivatization and in-Source Fragmentation Mass Spectrometry for High-Coverage Profiling of Submetabolomes. Analytical Chemistry. 93. 11321-11328. 2021.
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[13]. CRB-SWATH: A Method for Enhancing Untargeted Precursor Ion Extraction and Automatically Constructing Their Tandem Mass Spectra from SWATH Datasets by Chromatographic Retention Behaviors. Analytical Chemistry. 93. 12273–12280. 2021.
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[14]. Highly sensitive analysis of cyanogenic glycosides in cold-pressed flaxseed oil by employing cigarette filter fiber-based SPE coupled with ultra-performance liquid chromatography-tandem mass spectrometry. Food Chemistry. 377. 131962.
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[15]. Simultaneous determination of indole metabolites of tryptophan in rat feces by chemical labeling assisted liquid chromatography-tandem mass spectrometry. Chinese Chemical Letters. 2022.
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[16]. Cinnamoyl coA: NADP oxidoreductase-like 1 regulates abscisic acid response by modulating phaseic acid homeostasis in Arabidopsis thaliana. Journal of Experimental Botany. 73. 860-872. 2022.
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[17]. 6-Thioguanine incorporates into RNA and induces adenosine-to-inosine editing in acute lymphoblastic leukemia cells. Chinese Chemical Letters. 2022.
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[18]. Carboxylic submetabolome-driven signature characterization of COVID-19 asymptomatic infection. Talanta. 239. 123086. 2022.
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[19]. Identification of Inosine and 2′-O-Methylinosine Modifications in Yeast Messenger RNA by Liquid Chromatography–Tandem Mass Spectrometry Analysis. Analytical Chemistry. 2022.
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[20]. Alternating Dual-Collision Energy Scanning Mass Spectrometry Approach: Discovery of Novel Microbial Bile-Acid Conjugates. Analytical Chemistry. 94 (5). 2655–2664. 2022.
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[21]. Ultrasensitive Determination of Sugar Phosphates in Trace Samples by Stable Isotope Chemical Labeling Combined with RPLC–MS. Analytical Chemistry. 2022.
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