About
Tingting earned her MSc in Pharmaceutical Sciences in 2015 from Tianjin University, followed by a PhD in Analytical Food Chemistry from the Technical University of Denmark in 2020. Her doctoral research focused on developing analytical methods for the identification and semi-quantification of compounds in untargeted screening, utilizing prediction models. After completing her PhD, Tingting pursued a two-year postdoctoral fellowship in the Department of Forensic Medicine at Aarhus University. There, her research centered on employing advanced data analysis and various machine learning techniques for drug metabolomics studies in humans. Since 2022, she has been part of the metabolomics group at COPSAC, investigating the changes in metabolic profiles of pregnant mothers and their offspring related to neurodevelopmental disorders, such as ADHD and autism, during childhood. Additionally, Tingting is involved in multi-omics integration projects aiming to deeply understand the potential mechanisms underlying neurodevelopmental disorder endpoints.
Employment
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COPSAC Senior Researcher2024 - Present
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COPSAC Researcher2022 - 2024
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Aarhus University Post doc2020 - 2022
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Technical University of Denmark Research assistant2020 - 2020
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Technical University of Denmark PhD2016 - 2020
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (35)
- Early Life Neurodevelopmental Indicators of Attention‐Deficit/Hyperactivity Disorder at Age 10: A Prospective Cohort Study Save
- Plasma metabolomics in infancy reveals early signatures of a stringently‐defined otitis‐prone phenotype Save
- Longitudinal metabolome profiling from pregnancy through childhood and risk of neurodevelopmental disorders at age 10 Save
- A metabolomic signature of maternal BMI is associated with pregnancy complications across two independent pregnancy cohorts Save
- Reactivity-based metabolomics reveal cysteine has glyoxalase 1-like and glyoxalase 2-like activities Save
- Air pollution-induced proteomic alterations increase the risk of child respiratory infections Save
- Maternal Inflammatory Proteins in Pregnancy and Neurodevelopmental Disorders at Age 10 Years Save
- Bilirubin metabolism in early life and respiratory health during preschool age: A combined analysis of two independent birth cohorts Save
- Prenatal Fish Oil Supplementation, Maternal COX1 Genotype, and Childhood Atopic Dermatitis Save
- Urinary eicosanoid levels in early life and risk of atopic disease in childhood Save