中國計量大學環境與健康科學研究院

中國計量大學環境與健康科學研究院

中國計量大學環境與健康科學研究院成立於2019年6月16日,為中國計量大學校級直屬研究機構。

基本介紹

  • 中文名:中國計量大學環境與健康科學研究院
  • 外文名:Instituteof Environmental and Health Sciences
  • 成立時間:2019年6月16日 
  • 機構地址:浙江省杭州市錢塘區學源街中國計量大學東校區方正樓
  • 所屬高校中國計量大學
  • 創院院長郭良宏
機構簡介,人才培養,科研設施,發表論文,

機構簡介

中國計量大學環境與健康科學研究院由國家傑青郭良宏研究員於2019年創辦,主要研究方向為環境污染物的識別檢測與環境過程、環境污染的生態與健康風險評估、環境污染物的毒性效應與分子機制、污染水體治理與飲用水安全保障技術、光電化學生物感測器的研製與套用。
根據官網顯示,中國計量大學環境與健康科學研究院分別與英國伯明罕大學、浙江省疾控中心聯合共建了“中國計量大學-英國伯明罕大學環境健康研究聯合實驗室”、“環境新污染物識別與健康危害防控實驗室”,與義大利卡梅里諾大學簽署了合作備忘錄。

人才培養

根據官網顯示,中國計量大學環境與健康科學研究院招收碩士研究生及“申請-考核制”博士研究生,碩士招收專業為質量與安全工程學院的“資源與環境”、“安全科學與工程”專業;生命科學學院的“生物學”、“藥學”專業;計量測試工程學院的“儀器科學與工程”專業,博士招收專業為計量測試工程學院的“儀器科學與技術”專業。

科研設施

詳情請見圖 科研設施

發表論文

(1) Koppel K, et al. Elevated Amyloidoses ofhuman IAPP and amyloid beta by lipopolysaccharide and their mitigation bycarbon quantum dots. Nanoscale, 2021, 2(23): 12317-12328.
(2)Javed I, et al. Implications of thehuman gut-brain and gut-cancer axes for future nanomedicine. ACS Nano, 2020,14(11): 14391-14416.
(3) Monika M, et al. Physical properties ofcarbon nanomaterials and nanoceria affect pathways important to the nodulationcompetitiveness of the symbiotic N2-fixing bacterium bradyrhizobiumdiazoefficiens. Small. 2020, 16(21): 1906055.
(4) Qin W P, et al. Perfluoroalkylsubstances stimulate insulin secretion by isletβcells via Gpro tein-coupledreceptor 40. Environmental Science &Technology, 2020, 54 (6): 3428-3436.
(5) Xin Y, et al. Chlorinatedpolyfluoroalkylether sulfonic acids exhibit stronger estrogenic effects thanperfluorooctane sulfonate by activating nuclear estrogen receptor pathways. EnvironmentalScience & Technology, 2020, 54(6): 3455-3464.
(6) Fadare O O, et al. Eco-Corona vs proteincorona: effects of humic substances on corona formation and nanoplasticparticle toxicity in daphnia magna. Environmental Science & Technology,2020, 54(13): 8001-8009.
(7) Li C H, et al. Receptor-boundperfluoroalkyl carboxylic acids dictate their activity on human and mouseperoxisome proliferator-activated receptory. Environmental Science &Technology, 2020, 54(15): 9529-9536.
(8) Piersanti A, et al. Transcriptomic responsesto silver nanoparticles in the freshwater unicellular eukaryote Tetrahymenathermophila. Environmental Pollution, 2020, 269: 115965.
(9) Mortimer M, et al. Evaluation offrameworks proposed as protective of antimicrobial resistance propagation in theenvironment. Environment International. 2020, 144: 106053.
(10) Zheng X Y, et al. Binding andactivation of estrogen related receptor y as possible molecular initiatingevents of hydroxylated benzophenones endocrine disruption toxicity. EnvironmentalPollution, 2020, 263: 114656.
(11) Zhang YR, et al. Interplay betweenengineered nanomaterials and microbiota. Environmental Science. Nano, 2020,7(9): 2454-2485.
(12) Hong WJ, et al. Soil concentrations andsoil-air exchange of polycyclic aromatic hydrocarbons in five Asian countries.Science of The Total Environment, 2020, 711: 135223.
(13) Huang WQ, et al. Antibacterialnanomaterials for environmental and consumer product applications. NanoImpact,2020, 20: 100268.
(14) Hong WJ, et al. Distribution, seasonaltrends, and lung cancer risk of atmospheric polycyclic aromatic hydrocarbons inNorth China: A three-year case study in Dalian city. Ecotoxicology andEnvironmental Safety, 2020, 196: 110526.
(15) Wang D, et al. Uptake, depuration,bioaccumulation and selective enrichment of dechlorane plus in common carp (Cyprinuscarpio). Environmental Science and Pollution Research, 2020, 27(6):6269-6277.
(16) Tao F, et al. Organohalogenated flameretardants and organophosphate esters in office air and dust from Sweden.Environmental Science & Technology. 2019, 53(4): 2124-2133.
(17) Xin Y, et al. Comparative in vitro andin vivo evaluation of the estrogenic effect of hexafluoro propylene oxidehomologues. Environmental Science & Technology, 2019, 53(14): 8371-8380
(18) Cao LY, et al. Estrogen-relatedreceptor yis a novel target for Lower-Chlorinated Polychlorinated Biphenyls andtheir hydroxylated and sulfated metabolites. Environmental Pollution, 2019, 254113088.
(19) Faridi A, et al. Graphene quantum dotsrescue protein dysregulation of pancreatic β-cells exposed to human isletamyloid polypeptide. Nano Research, 2019, 12(11): 2827-2834.

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