學歷:國立中央大學化學系博士 (2008)
經歷: 東海大學化學系 助理教授 (2022.02-至今)
國立臺灣大學食品安全與健康研究所專案計畫助理教授 (2017.08-2022.01)
國立臺灣大學職業醫學與工業衛生研究所專案計畫助理教授 (2016.08-2017.08)
基龍米克斯生物科技股份有限公司健康事業部實驗室主任 (2015.01-2016.07)
國立臺灣大學職業醫學與工業衛生研究所博士後研究員 (2014.01-2014.12)
財團法人國家衛生研究院國家環境毒物研究中心博士後研究員 (2012.06-2013.12)
國立中央大學化學系博士後研究員 (2009.09-2012.05)
專長: 質譜技術、環境分析、食品安全、標靶代謝體學
期刊 (2017- ) :
1. Chen, H.C.; Chang, J.W.; Sun, Y.C.; Chang, W.T.; Huang, P.C.. Determination of Parabens, Bisphenol A and Its Analogs, Triclosan, and Benzophenone-3 Levels in Human Urine by Isotope-Dilution-UPLC-MS/MS Method Followed by Supported Liquid Extraction. Toxics, 2022, 10(1), 21. (SCIE)
2. Chen, M.L.; Chen, C.H.; Huang, Y.F.; Chen, H.C.; Chang, J.W.. Cumulative Dietary Risk Assessment of Benzophenone-Type Photoinitiators from Packaged Foodstuffs. Foods, 2022, 11(2), 152. (SCIE)
3. Cheng, P.K.; Chen, H.C.; Kuo, P.L.; Chang, J.W.; Chang, W.T.; Huang, P.C.. Associations between Oxidative/Nitrosative Stress and Thyroid Hormones in Pregnant Women–Tainan Birth Cohort Study (TBCS). Antioxidants, 2022, 11(2), 334. (SCIE)
4. Huang, Y.F.; Chang, J.P.; Chen, H.C.; Liu, X.R.. Fish consumption is an indicator of exposure to benzophenone derivatives: A probabilistic risk assessment in Taiwanese population. Science of The Total Environment, 2022,812, 152421. (SCIE)
5. Huang, Y.F.; Chang, J.P.; Chen, H.C.; Huang, Y.M.. Simultaneous trace analysis of 10 benzophenone-type ultraviolet filters in fish through liquid chromatography-tandem mass spectrometry. Environ Pollut. 2021, 286:117306. (SCIE)
6. Huang, Y.F.; Chien, J.T.; Chen, H.C.; Liu, X.R.; Chang, J.P.; and Huang, J.J.. Rapid determination of benzophenone derivatives in cereals using FaPEx coupled with ultra–high-performance liquid chromatography–tandem mass spectrometry, J. Food Drug Anal. 2021, 29(2):287-302. (SCIE)
7. Chang, C.H.; Yu, C.J.; Du, J.C.; Chiou, H.C.; Hou, J.W.; Yang, W.; Chen, C.F.; Chen, H.C.; Chen, Y.S.; Hwang, B.; Chen, M.L.. The associations among organophosphate pesticide exposure, oxidative stress, and genetic polymorphisms of paraoxonases in children with attention deficit/hyperactivity disorder. Sci Total Environ. 2021, 773:145604. (SCIE)
8. Huang, P.C.; Waits, A.; Chen H.C.*; Chang, W.T.; Jaakkola, J.J.K.; Huang, H.B.*. Mediating role of oxidative/nitrosative stress biomarkers in the associations between phthalate exposure and thyroid function in Taiwanese adults. Environ Int. 2020, 140:105751. (SCIE) 共同通訊作者
9. Waits, A.; Chen, H.C.; Kuo, P.L.; Wang, C.W.; Huang, H.B.; Chang, W.H.; Shih, C.F.; Huang, P.C. Urinary Phthalate Metabolites are Associated with Biomarkers of DNA Damage and Lipid Peroxidation in Pregnant Women – Tainan Birth Cohort Study (TBCS). Environ. Res. 2020, 188:109863. (SCIE)
10. Chuang, H.C.; Chen, H.C.;Chai, P.J.; Liao, H.T.; Wu, C.F.; Chen, C.L.; Jhan, M.K.; Hsieh, H.I.; Wu, K.Y.; Chen, T.F.; Cheng, T.J. Neuropathology changed by 3- and 6-months low-level PM2.5 inhalation exposure in spontaneously hypertensive rats.Part. Fibre Toxicol.2020,17(1):59. doi:10.1186/s12989-020-00388-6 (SCIE)
11. Chuang, H.C.; Yang, Y.T.; Chen, H.C.; Hwang, Y.H.; Wu, K.Y.; Chen, T.F.; Chen, C.L.; Jhan, M.K.; Cheng, T.J.. Acute effects of pulmonary exposure to zinc oxide nanoparticles on the brain in vivo. Aerosol Air Qual. Res. 2020, 20(7):1651-1664. (SCIE)
12. Chien, H. J.; Xue, Y. T.; Chen, H. C.; Wu, K. Y.; Lai, C. C. “Proteomic analysis of rat kidney under maleic acid treatment by SWATH-MS technology.” 2020 Rapid Commun Mass Spectrom. Apr;34 Suppl 1:e8633. doi: 10.1002/rcm.8633. Epub 2020 Feb 12. PMID: 31677360.
13. Jian, S.H.; Yeh, P.J.; Wang, C.H.; Chen, H.C.; Chen, S.F. “Analysis of heterocyclic amines in meat products by liquid chromatography – Tandem mass spectrometry”, J. Food Drug Anal. 2019, 27(2):595-602. (SCIE)
14. Chang, C.H.; Huang, Y.F.; Wang, P.W.; Lai, C.H.; Huang, L.W.; Chen, H.C.; et al. Associations between prenatal exposure to bisphenol a and neonatal outcomes in a Taiwanese cohort study: Mediated through oxidative stress? Chemosphere. 2019, 226:290-7. (SCIE)
15. Chang, C.H.; Wang, P.W.; Liang, H.W.; Huang, Y.F.; Huang, L.W.; Chen, H.C.; Pan, W.C.; Lin, M.H.; Yang,W.; Mao, I.F.; Chen, M.L. “The sex-specific association between maternal paraben exposure and size at birth.” Int J Hyg Environ Health, 2019, 222(6):955-964. (SCIE)
16. 17. 18. Chang, C. H.; Yu, C. J.; Du, J. C.; Chiou, H. C.; Chen, H. C.; Yang, W.; Chung, M. Y.; Chen, Y. S.; Hwang, B.; Mao, I. F.; Chen, M. L. “The interactions among organophosphate pesticide exposure, oxidative stress, and genetic polymorphisms of dopamine receptor D4 increase the risk of attention deficit/hyperactivity disorder in children”, Environ. Res.2018, 160:339-346. (SCIE)
19. Huang, Y.F.; Wang, P.W.; Huang, L.W.; Lin, M.H.; Yang, W.; Chen, H.C.; Yu, K.P.; Chen, M.L., “Interactive effects of nonylphenol and bisphenol A exposure with oxidative stress on fetal reproductive indices”, Environ. Res. 2018.167:567-574. (SCIE)
20. Yong, Y.S.; Chong, E.T.J; Chen, H.C.; Lee, P.C.; Ling, Y.S. “A comparative study of pentafluorophenyl and octadecylsilane columns in high-throughput profiling of biological fluids”, J. Chin. Chem. Soc. 2017, 64:699-710. (SCIE)
21. Huang, Y.F.; Wang, P.W.; Huang, L.W.; Lai, C.H.; Yang, W.; Wu, K.Y.; Lu, C.A.; Chen, H.C.; Chen, M.L. “Prenatal nonylphenol and bisphenol A exposures and inflammation are determinants of oxidative/nitrative stress: A Taiwanese cohort study”, Environ. Sci. Technol. 2017, 51:6422-6429. (SCIE)
22. Wu, C.; Chen, C.H.; Chen, H.C.; Liang, H.J.; Chen, S.T.; Lin, W.Y.; Wu, K.Y.; Chiang, S.Y.; Lin, C.Y. “Nuclear magnetic resonance- and mass spectrometry-based metabolomics to study maleic acid toxicity from repeated dose exposure in rats”, J. Appl. Toxicol. 2017, 37:1493-1506.(SCIE)
23. Wu, C.*; Chen, H.C.*; Chen, S.T.; Chiang, S.Y.; Wu, K.Y. Elevation in and persistence of multiple urinary biomarkers indicative of oxidative DNA stress and inflammation: Toxicological implications of maleic acid consumption using a rat model. PLOS ONE, 2017 12(10):e0183675. Correction: Elevation in and persistence of multiple urinary biomarkers indicative of oxidative DNA stress and inflammation: Toxicological implications of maleic acid consumption using a rat model PLOS ONE 2019, 14(3):e0214188.(SCIE)共同第一作者