19 results on '"Fortin, Marie C"'
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2. Lower cardiotoxicity of CPX-351 relative to daunorubicin plus cytarabine free-drug combination in hiPSC-derived cardiomyocytes in vitro
3. Beyond MABEL: An Integrative Approach to First in Human Dose Selection of Immunomodulators by the Health and Environmental Sciences Institute (HESI) Immuno‐Safety Technical Committee (ITC)
4. In silico approaches in carcinogenicity hazard assessment: Current status and future needs
5. Exploring rabbit as a nonrodent species for general toxicology studies
6. Genetic toxicology in silico protocol
7. In silico toxicology protocols
8. Air pollution and the epigenome: A model relationship for the exploration of toxicoepigenetics
9. Remembering the dynamic changes in pain intensity and unpleasantness: A psychophysical study
10. Increased Lead Biomarker Levels Are Associated with Changes in Hormonal Response to Stress in Occupationally Exposed Male Participants
11. CPX-351, a Dual-Drug Liposomal Formulation, Alleviates the Cardiotoxicity of Daunorubicin and Cytarabine to Induced Human Pluripotent Stem Cell-Derived Cardiomyocytes
12. CPX-351, a Dual-Drug Liposomal Formulation, Alleviates the Cardiotoxicity of Daunorubicin and Cytarabine to Induced Human Pluripotent Stem Cell-Derived Cardiomyocytes
13. 136 - CPX-351, a Dual-Drug Liposomal Formulation, Alleviates the Cardiotoxicity of Daunorubicin and Cytarabine to Induced Human Pluripotent Stem Cell-Derived Cardiomyocytes
14. Adverse outcome pathway networks II: Network analytics
15. Adverse outcome pathway networks I: Development and applications
16. Alteration of the Expression of Pesticide-Metabolizing Enzymes in Pregnant Mice: Potential Role in the Increased Vulnerability of the Developing Brain
17. Fused-core silica column ultra-performance liquid chromatography–ion trap tandem mass spectrometry for determination of global DNA methylation status
18. Alteration of the Expression of Pesticide-Metabolizing Enzymes in Pregnant Mice: Potential Role in the Increased Vulnerability of the Developing Brain
19. In silicoapproaches in carcinogenicity hazard assessment: Current status and future needs
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