Javier G. Blanco

Affiliations: 
Pharmaceutical Sciences State University of New York, Buffalo, Buffalo, NY, United States 
Area:
Pharmacy, Molecular Biology
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"Javier Blanco"
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Publications

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Singh P, Wang X, Hageman L, et al. (2020) Association of GSTM1 null variant with anthracycline-related cardiomyopathy after childhood cancer-A Children's Oncology Group ALTE03N1 report. Cancer
Lombraña AQ, Blanco JG. (2019) Comparative analysis of the DYRK1A-SRSF6-TNNT2 pathway in myocardial tissue from individuals with and without Down syndrome. Experimental and Molecular Pathology. 104268
Quiñones-Lombraña A, Intini A, Blanco JG. (2019) Insights into the transcriptional regulation of the anthracycline reductase AKR7A2 in human cardiomyocytes. Toxicology Letters. 307: 11-16
Singh P, Wang X, Hageman L, et al. (2019) A novel association between GSTM1 null variant and anthracycline-induced cardiac dysfunction (ACD) in childhood cancer survivors (CCS): A COG ALTE03N1 report. Journal of Clinical Oncology. 37: 10030-10030
Wang X, Chen Y, Hageman L, et al. (2019) Risk prediction of anthracycline-related cardiomyopathy (AC) in childhood cancer survivors (CCS): A COG-ALTE03N1 and CCSS report. Journal of Clinical Oncology. 37: 10015-10015
Lang J, Quinones A, Blair RH, et al. (2019) Abstract P1-12-08: Association of CBR3 polymorphisms with an early change in cardiac function as assessed by left ventricular global longitudinal strain in breast cancer patients treated with doxorubicin Cancer Research
Lombraña AQ, Li N, Del Solar V, et al. (2018) CBR1 rs9024 genotype status impacts the bioactivation of loxoprofen in human liver. Biopharmaceutics & Drug Disposition
Quiñones-Lombraña A, Blair RH, Blanco JG. (2017) Investigation of the role of DNA methylation in the expression of ERBB2 in human myocardium. Gene
Quiñones-Lombraña A, Cheng Q, Ferguson DC, et al. (2016) Transcriptional regulation of the canine carbonyl reductase 1 gene (cbr1) by the specificity protein 1 (Sp1). Gene
Hoefer CC, Blair RH, Blanco JG. (2016) Development of a CART Model to Predict the Synthesis of Cardiotoxic Daunorubicinol in Heart Tissue Samples From Donors With and Without Down Syndrome. Journal of Pharmaceutical Sciences. 105: 2005-8
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