Andrew C. Wilber, Ph.D.
Affiliations: | 2006 | University of Minnesota, Twin Cities, Minneapolis, MN |
Area:
Molecular Biology, Cell Biology, GeneticsGoogle:
"Andrew Wilber"Parents
Sign in to add mentorR Scott McIvor | grad student | 2006 | UMN | |
(Pre-clinical evaluation of the Sleeping Beauty transposon system for gene therapy.) |
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Publications
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Wang X, McKillop WM, Dlugi TA, et al. (2023) A mass spectrometry assay for detection of endogenous and lentiviral engineered hemoglobin in cultured cells and sickle cell disease mice. The Journal of Gene Medicine. e3567 |
Guan Y, Chambers CB, Tabatabai T, et al. (2020) Renal cell tumors convert natural killer cells to a proangiogenic phenotype. Oncotarget. 11: 2571-2585 |
Daniel-Moreno A, Lamsfus-Calle A, Wilber A, et al. (2020) Comparative analysis of lentiviral gene transfer approaches designed to promote fetal hemoglobin production for the treatment of β-hemoglobinopathies. Blood Cells, Molecules & Diseases. 84: 102456 |
Chambers CB, Gross J, Pratt K, et al. (2020) The mRNA-Binding Protein IGF2BP1 Restores Fetal Hemoglobin in Cultured Erythroid Cells from Patients with β-Hemoglobin Disorders. Molecular Therapy. Methods & Clinical Development. 17: 429-440 |
Volk-Draper L, Patel R, Bhattarai N, et al. (2019) Myeloid-Derived Lymphatic Endothelial Cell Progenitors Significantly Contribute to Lymphatic Metastasis in Clinical Breast Cancer. The American Journal of Pathology |
Volk-Draper LD, Hall KL, Wilber AC, et al. (2017) Lymphatic endothelial progenitors originate from plastic myeloid cells activated by toll-like receptor-4. Plos One. 12: e0179257 |
Alanee S, Delfino K, Wilber A, et al. (2017) Single nucleotide variant in Nucleoporin 107 may be predictive of sensitivity to chemotherapy in patients with ovarian cancer. Pharmacogenetics and Genomics |
Ran S, Wilber A. (2017) Novel role of immature myeloid cells in formation of new lymphatic vessels associated with inflammation and tumors. Journal of Leukocyte Biology |
Villamizar O, Chambers CB, Mo YY, et al. (2016) Data in support of transcriptional regulation and function of Fas-antisense long noncoding RNA during human erythropoiesis. Data in Brief. 7: 1288-95 |
Villamizar O, Chambers CB, Mo YY, et al. (2016) Fas-antisense long noncoding RNA is differentially expressed during maturation of human erythrocytes and confers resistance to Fas-mediated cell death. Blood Cells, Molecules & Diseases. 58: 57-66 |