Yiying Wang
This is a likely match — the affiliation was inferred from OpenAlex, ORCID, and web sources but has not been fully confirmed. Treat with appropriate caution.
Researcher
Faculty Researcher
Research Areas
Biomedical Subjects
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Biography and Research Information
OverviewAI-generated summary
Yiying Wang's research focuses on genetic toxicity and DNA damage assessment, particularly employing in vitro human organotypic airway cultures. This work involves evaluating mutagenesis using advanced techniques like Duplex Sequencing and assessing DNA damage with the CometChip system. Wang also investigates genome-wide DNA methylation profile changes, as demonstrated in studies on scallop shell coloration. Further research extends to the degradation of specific chemical compounds, such as di-n-butyl phthalate, and explores microbial pathways involved in environmental remediation. Additional studies examine the effects of ultrasonic treatment on the physicochemical properties of materials like buckwheat starch and the response of plant traits to environmental changes, such as precipitation variations in tropical trees. Wang has 42 publications and an h-index of 12.
Metrics
- h-index: 12
- Publications: 42
- Citations: 488
Selected Publications
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Comparative genotoxicity assessment of ortho-phthalaldehyde using human in vitro organotypic airway epithelial cultures and standard in vitro genotoxicity assays (2026)
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Characterizing the Pulmonary Toxicity and Potential Mutagenicity of Formaldehyde Fumes in a Human Bronchial Epithelial Tissue Model (2025)
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Genetic toxicity testing using human in vitro organotypic airway cultures: Assessing <scp>DNA</scp> damage with the <scp>CometChip</scp> and mutagenesis by Duplex Sequencing (2021)
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Assessing the respiratory toxicity of dihydroxyacetone using an in vitro human airway epithelial tissue model (2019)
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Effects of cellular differentiation in human primary bronchial epithelial cells: Metabolism of 4-(methylnitrosamine)-1-(3-pyridyl)-1-butanone (2018)
Collaboration Network
Top Collaborators
- Genetic toxicity testing using human in vitro organotypic airway cultures: Assessing <scp>DNA</scp> damage with the <scp>CometChip</scp> and mutagenesis by Duplex Sequencing
- Characterizing the Pulmonary Toxicity and Potential Mutagenicity of Formaldehyde Fumes in a Human Bronchial Epithelial Tissue Model
- Comparative genotoxicity assessment of ortho-phthalaldehyde using human in vitro organotypic airway epithelial cultures and standard in vitro genotoxicity assays
- Genetic toxicity testing using human in vitro organotypic airway cultures: Assessing <scp>DNA</scp> damage with the <scp>CometChip</scp> and mutagenesis by Duplex Sequencing
- Comparative genotoxicity assessment of ortho-phthalaldehyde using human in vitro organotypic airway epithelial cultures and standard in vitro genotoxicity assays
- Genetic toxicity testing using human in vitro organotypic airway cultures: Assessing <scp>DNA</scp> damage with the <scp>CometChip</scp> and mutagenesis by Duplex Sequencing
- Characterizing the Pulmonary Toxicity and Potential Mutagenicity of Formaldehyde Fumes in a Human Bronchial Epithelial Tissue Model
- Genetic toxicity testing using human in vitro organotypic airway cultures: Assessing <scp>DNA</scp> damage with the <scp>CometChip</scp> and mutagenesis by Duplex Sequencing
- Characterizing the Pulmonary Toxicity and Potential Mutagenicity of Formaldehyde Fumes in a Human Bronchial Epithelial Tissue Model
- Genetic toxicity testing using human in vitro organotypic airway cultures: Assessing <scp>DNA</scp> damage with the <scp>CometChip</scp> and mutagenesis by Duplex Sequencing
- Characterizing the Pulmonary Toxicity and Potential Mutagenicity of Formaldehyde Fumes in a Human Bronchial Epithelial Tissue Model
- Characterizing the Pulmonary Toxicity and Potential Mutagenicity of Formaldehyde Fumes in a Human Bronchial Epithelial Tissue Model
- Comparative genotoxicity assessment of ortho-phthalaldehyde using human in vitro organotypic airway epithelial cultures and standard in vitro genotoxicity assays
- Characterizing the Pulmonary Toxicity and Potential Mutagenicity of Formaldehyde Fumes in a Human Bronchial Epithelial Tissue Model
- Comparative genotoxicity assessment of ortho-phthalaldehyde using human in vitro organotypic airway epithelial cultures and standard in vitro genotoxicity assays
- Genetic toxicity testing using human in vitro organotypic airway cultures: Assessing <scp>DNA</scp> damage with the <scp>CometChip</scp> and mutagenesis by Duplex Sequencing
- Genetic toxicity testing using human in vitro organotypic airway cultures: Assessing <scp>DNA</scp> damage with the <scp>CometChip</scp> and mutagenesis by Duplex Sequencing
- Genetic toxicity testing using human in vitro organotypic airway cultures: Assessing <scp>DNA</scp> damage with the <scp>CometChip</scp> and mutagenesis by Duplex Sequencing
- Genetic toxicity testing using human in vitro organotypic airway cultures: Assessing <scp>DNA</scp> damage with the <scp>CometChip</scp> and mutagenesis by Duplex Sequencing
- Genetic toxicity testing using human in vitro organotypic airway cultures: Assessing <scp>DNA</scp> damage with the <scp>CometChip</scp> and mutagenesis by Duplex Sequencing
- Genetic toxicity testing using human in vitro organotypic airway cultures: Assessing <scp>DNA</scp> damage with the <scp>CometChip</scp> and mutagenesis by Duplex Sequencing
- Genetic toxicity testing using human in vitro organotypic airway cultures: Assessing <scp>DNA</scp> damage with the <scp>CometChip</scp> and mutagenesis by Duplex Sequencing
- Genetic toxicity testing using human in vitro organotypic airway cultures: Assessing <scp>DNA</scp> damage with the <scp>CometChip</scp> and mutagenesis by Duplex Sequencing
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