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Zebrafish Embryo as an In Vivo Model for Behavioral and Pharmacological Characterization of Methylxanthine Drugs.
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- International Journal of Molecular Sciences, 2017, v. 18, n. 3, p. 596, doi. 10.3390/ijms18030596
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- Article
Total reflection X-Ray fluorescence spectroscopy to study Pb and Zn accumulation in zebrafish embryos.
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- XRS: X-ray Spectrometry, 2015, v. 44, n. 3, p. 124, doi. 10.1002/xrs.2588
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- Article
Adrenocortical Carcinoma Xenograft in Zebrafish Embryos as a Model To Study the In Vivo Cytotoxicity of Abiraterone Acetate.
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- Endocrinology, 2019, v. 160, n. 11, p. 2620, doi. 10.1210/en.2019-00152
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- Article
Analysis of three μ1-AP1 subunits during zebrafish development.
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- Developmental Dynamics, 2014, v. 243, n. 2, p. 299, doi. 10.1002/dvdy.24071
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- Article
Characterization of the AP-1 μ1A and μ1B adaptins in zebrafish ( Danio rerio).
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- Developmental Dynamics, 2010, v. 239, n. 9, p. 2404, doi. 10.1002/dvdy.22372
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- Article
Methylxanthines induce structural and functional alterations of the cardiac system in zebrafish embryos.
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- BMC Pharmacology & Toxicology, 2017, v. 18, p. 1, doi. 10.1186/s40360-017-0179-9
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- Article
Parallelism of Chemicostructural Properties between Filgrastim Originator and Three of Its Biosimilar Drugs.
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- Journal of Chemistry, 2019, p. 1, doi. 10.1155/2019/2751461
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- Article
An Integrated Approach for a Structural and Functional Evaluation of Biosimilars: Implications for Erythropoietin.
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- BioDrugs, 2015, v. 29, n. 4, p. 285, doi. 10.1007/s40259-015-0136-3
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- Article