主要致力于河流及近海水环境污染物分布特征、典型污染物对水生生物潜在的毒性效应及分子机制、以及生态修复等研究。曾先后主持国家自然基金青年项目、捷克自然基金项目、科技部重点研发计划子任务、山东省自然基金面上项目、中央院所基本科研业务费等多项课题。先后发表学术论文90余篇,其中第一作者(或通讯作者)48篇,参编中英文专著4部,获得授权发明专利3项。
Zhang, S.Q.#, Zhao, X.L.#, He, S.W., Xing, S.Y., Cao, Z.H.,Li, P.*, Li, Z.H.*, 2022. Effects of long-term exposure of norfloxacin on the HPG and HPT axes in juvenile common carp. Environmental Science and Pollution Research, 29, 44513-44522.
Cao, X.Q., He, S.W., Liu, B., Wang, X., Xing, S.Y., Cao, Z.H., Chen, C.Z.,Li, P.*, Li, Z.H.*, 2022. Exposure to enrofloxacin and depuration: Endocrine disrupting effect in juvenile grass carp (Ctenopharyngodon idella), Comparative Biochemistry and Physiology Part C: Toxicology & Pharmacology, 257, 109358.
Ru, J.C., Zhao, X.L., Cao, Z.H., Chen, C.Z.,Li, P.*, Li, Z.H.*, 2022. Chronic toxic effects of polystyrene micro-plastics, DCOIT and their combination on Marine Chlorella sp. Comparative Biochemistry and Physiology Part C: Toxicology & Pharmacology, 261, 109426.
Wang, X.#,Li, P.#, He, S.W., Xing, S.Y., Cao, Z.H., Liu, B., Li, Z.H.*, 2022. Effects of tralopyril on histological, biochemical and molecular impacts in Pacific oyster,Crassostrea gigas. Chemosphere, 289, 133157.
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Cao, Z.H.#,Li, P.#, Cao, X.Q., Wang, X., Liu, B., He, S.W., Gao, G., Lu, R.*, Li, Z.H.*, 2022. Reproductive toxicity of environmental levels of triphenyltin to the marine rotifer,Brachionus plicatilis. Comparative Biochemistry and Physiology Part C: Toxicology & Pharmacology, 254, 109272.
Liu, B.#,Li, P.#, He, S.W., Xing, S.Y., Cao, Z.H., Cao, X.Q., Wang, X., Li, Z.H.*, 2022. Effects of short-term exposure to tralopyril on physiological indexes and endocrine function in turbot (Scophthalmus maximus), Aquatic Toxicology, 245, 106118.
Chen, C.Z.#,Li, P.#, Liu, L., Li, Z.H.*, 2022. Transcriptomic and proteomic analysis of Chinese rare minnow (Gobiocypris rarus) larvae in response to acute waterborne cadmium or mercury stress. Aquatic Toxicology, 246, 106134.
Liu, B.#,Li, P.#, He, S.W., Xing, S.Y., Liu, L., Li, Z.H.*, 2022. Chronic exposure to Tralopyril induced abnormal growth and calcium regulation of turbot (Scophthalmus maximus), Chemosphere, 299, 134405.
Zhao, X.L.#,Li, P.#, Qu, C.F., Lu, R.*, Li, Z.H.*, 2022. Phytotoxicity of environmental norfloxacin concentrations on the aquatic plantSpirodela polyrrhiza: evaluation of growth parameters, photosynthetic toxicity and biochemical traits. Comparative Biochemistry and Physiology Part C: Toxicology & Pharmacology, 258, 109365.
Wang, X.#,Li, P.#, Cao, X.Q., Liu, B., He, S.W., Cao, Z.H., Xing, S.Y., Liu, L., Li, Z.H.*, 2022. Effects of ocean acidification and tralopyril on bivalve biomineralization and carbon cycling: a study of the Pacific Oyster (Crassostrea gigas) Environmental Pollution, 313, 120161.
Xing, S.Y.#,Li, P.#, He, S.W., Cao, Z.H., Wang X., Cao, X.Q., Liu, B., You, H., Li, Z.H.*, 2022. Physiological responses in Nile tilapia (Oreochromis niloticus) induced by combined stress of environmental salinity and triphenyltin. Marine Environmental Research, 180, 105736.
Li, P., Li, Z.H.*,2021. Neurotoxicity and physiological stress in brain of zebrafish chronically exposed to tributyltin. Journal of Toxicology and Environmental Health, Part A Current Issues, 84, 20-30.
Li Z.H.*,Li P.*,Wu Y.H., 2021. Effects of temperature fluctuation on endocrine disturbance of grass carpCtenopharyngodon idellaunder mercury chloride stress. Chemosphere. 263: 128137.
Li, Z.H.*,Li, P*. 2021. Effects of the tributyltin on the blood parameters, immune responses and thyroid hormone system in zebrafish.Environmental Pollution, 268, 115707.
Li Z.H.*,Li P.*,Wu Y.H., 2021. Regulation of glutathione-dependent antioxidant defense system of grass carpCtenopharyngodon idellaunder the combined stress of mercury and temperature. Environmental Science and Pollution Research, 28, 1689-1696.
Li, P., Li, Z.H.*,2020. Tributyltin induces the tissue-specific stresses in zebrafish, a study in various tissues of muscle, gill and intestine. Bulletin of Environmental Contamination and Toxicology, 105, 847–852.
Li P., Li Z.H.*, Wu Y.H.,2020. Interactive effects of temperature and mercury exposure on the stress-related responses in the freshwater fishCtenopharyngodon idella. Aquaculture Research,00: 1-8.DOI: 10.1111/are.15058
Li P.,Li Z.H.*, 2020. Toxicity evaluation of triphenyltin in zebrafish larvae by embryonic malformation, retinal development, and GH/IGF axis. Fish Physiology and Biochemistry.46, 2101-2107
Li P.,Li Z.H.*, 2020. Environmental co-exposure to TBT and Cd caused neurotoxicity and thyroid endocrine disruption in zebrafish, a three-generation study in a simulated environment. Environmental Pollution. 259: 113868.
Li P.,Li Z.H.*, Zhong L., 2020.Parental exposure to triphenyltin inhibits growth and disrupts thyroid function in zebrafish larvae.Chemosphere. 240: 124936.