Genetically regulated expression underlies cellular sensitivity to chemotherapy in diverse populations is a research paper published in Human Molecular Genetics (2021). On theSindex it has a DataRank of 0. It has been cited 22 times.
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National Institutes of Health
Grant: R15HG009569
National Institutes of Health
Grant: 1R15HG009569-01
Predicting gene regulation across populations to understand mechanisms underlying complex traits
University of Chicago Comprehensive Cancer Center Women's Board
Loyola University Chicago Biology Summer
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Sustainable Development Goals
Additional file 1 of Eleven metabolism‑related genes composed of Stard5 predict prognosis and contribute to EMT phenotype in HCC
Additional file 1 of Eleven metabolism‑related genes composed of Stard5 predict prognosis and contribute to EMT phenotype in HCC
Additional file 2 of Eleven metabolism‑related genes composed of Stard5 predict prognosis and contribute to EMT phenotype in HCC
Additional file 2 of Eleven metabolism‑related genes composed of Stard5 predict prognosis and contribute to EMT phenotype in HCC
Additional file 3 of Eleven metabolism‑related genes composed of Stard5 predict prognosis and contribute to EMT phenotype in HCC
Additional file 3 of Eleven metabolism‑related genes composed of Stard5 predict prognosis and contribute to EMT phenotype in HCC
Additional file 5 of Eleven metabolism‑related genes composed of Stard5 predict prognosis and contribute to EMT phenotype in HCC
Additional file 5 of Eleven metabolism‑related genes composed of Stard5 predict prognosis and contribute to EMT phenotype in HCC
Additional file 4 of Eleven metabolism‑related genes composed of Stard5 predict prognosis and contribute to EMT phenotype in HCC
Additional file 4 of Eleven metabolism‑related genes composed of Stard5 predict prognosis and contribute to EMT phenotype in HCC