殷諾雅

殷諾雅,女,中國科學院大學專任教師。

基本介紹

  • 中文名:殷諾雅
  • 國籍中國
  • 畢業院校:中國科學院大學
  • 職業:老師
研究方向,科研成果,專利成果,出版信息,科研項目,

研究方向

幹細胞毒理學
幹細胞生物學
環境污染物的健康效應評估

科研成果

專利成果

( 1 ) 一種篩選和/或評價物質的方法及其套用, 2020, 第 3 作者, 專利號: ZL201910310805.9
( 2 ) 一種微孔模具, 2019, 第 3 作者, 專利號: ZL201821538823.X

出版信息

發表論文
(1) A human embryonic syem cell-based in vitro model revealed that ultrafine carbon particles may cause skin inflammation and psoriasis, Journal of Environmental Sciences (China), 2020, 第 4 作者
(2) The short-chain perfluorinated compounds PFBS, PFHxS, PFBA and PFHxA, disrupt human mesenchymal stem cell self-renewal and adipogenic differentiation, Journal of Environmental Sciences (China), 2020, 第 3 作者
(3) "Bisphenol A and several derivatives exert neural toxicity in human neuronlike cells by decreasing neurite length", Food and Chemical Toxicology, 2020, 第 2 作者
(4) F-53B and PFOS treatments skew human embryonic stem cell in vitro cardiac differentiation towards epicardial cells by partly disrupting the WNT signaling pathway, Environmental Pollution, 2020, 第 4 作者
(5) Non-cytotoxic silver nanoparticle levels perturb human embryonic stem cell-dependent specification of the cranial placode in part via FGF signaling, Journal of Hazardous Materials, 2020, 通訊作者
(6) Silver nanoparticles (AgNPs) and AgNO3 perturb the specification of human hepatocyte-like cells and cardiomycytes, Science of the Total Environment, 2020, 通訊作者
(7) Effects of Per- And Poly-Fluorinated Alkyl Substances on Pancreatic and Endocrine Differentiation of Human Pluripotent Stem Cells, Chemosphere, 2020, 第 3 作者
(8) Environmental and human relevant PFOS and PFOA doses alter human mesenchymal stem cell self-renewal, adipogenesis and osteogenesis, Ecotoxicology and Environmental Safety, 2019, 第 3 作者
(9) Establishment of a human embryonic stem cell-based liver differentiation model for hepatotoxicity evaluations, Ecotoxicology and Environmental Safety, 2019, 第 3 作者
(10) Human Pluripotent Stem Cells as Tools for Predicting Developmental Neural Toxicity of Chemicals: Strategies, Applications, and Challenges, Stem Cells and Development, 2019, 第 2 作者
(11) Embryonic stem cell- and transcriptomics-based in vitro analyses reveal that bisphenols A, F and S have similar and very complex potential developmental toxicities, Ecotoxicology and Environmental Safety, 2019, 第 1 作者
(12) Embryoid body-based RNA-seq analyses reveal a potential TBBPA multifaceted developmental toxicity, Journal of Hazardous Materials, 2019, 第 3 作者
(13) Toxicogenomic analyses of the effects of BDE-47/209, TBBPA/S and TCBPA on early neural development with a human embryonic stem cell in vitro differentiation system, Toxicology and Applied Pharmacology, 2019, 第 3 作者
(14) Typical halogenated flame retardants affect human neural stem cell gene expression during proliferation and differentiation via glycogen synthase kinase 3 beta and T3 signaling, Ecotoxicology and Environmental Safety, 2019, 第 4 作者
(15) Assessment of the developmental neurotoxicity of silver nanoparticles and silver ions with mouse embryonic stem cells in vitro, Journal of Interdisciplinary Nanomedicine, 2018, 第 1 作者
(16) Evaluation of the early developmental neural toxicity of F-53B, as compared to PFOS, with an in vitro mouse stem cell differentiation model, Chemosphere, 2018, 第 1 作者
(17) Non-cytotoxic nanomolar concentrations of bisphenol A induce human mesenchymal stem cell adipogenesis and osteogenesis, Ecotoxicology and Environmental Safety, 2018, 第 4 作者
(18) 幹細胞毒理學在大氣污染健康風險評估中的套用, 中國科學:化學, 2018, 第 2 作者
(19) TBBPA and Its Alternatives Disturb the Early Stages of Neural Development by Interfering with the NOTCH and WNT Pathways, Environmental Science & Technology, 2018, 第 1 作者
(20) PFOA and PFOS Disrupt the Generation of Human Pancreatic Progenitor Cells, Environmental Science & Technology Letters, 2018, 第 2 作者
(21) DEP and DBP induce cytotoxicity in mouse embryonic stem cells and abnormally enhance neural ectoderm development, Environmental Pollution, 2018, 第 1 作者

科研項目

( 1 ) 基於胚胎幹細胞研究雙酚A及其替代物在神經發育過程中對軸突導向的影響, 主持, 國家級, 2018-01--2020-12
( 2 ) 基於人胚胎幹細胞分化模型研究全氟類化合物的心臟毒性, 主持, 國家級, 2020-01--2023-12

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