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Blood|October 28, 2008
RAS oncogene suppression induces apoptosis followed by more differentiated and less myelosuppressive disease upon relapse of acute myeloid leukemiaWon-Il Kim, Ilze Matise, Miechaleen D Diers, et al.The Journal of Pharmacology and Experimental Therapeutics|December 26, 2001
In vivo selection of antifolate-resistant transgenic hematopoietic stem cells in a murine bone marrow transplant modelChristopher A Warlick, Michaeleen D Diers, John E Wagner, et al.Blood|August 15, 2000
Mild preconditioning and low-level engraftment confer methotrexate resistance in mice transplanted with marrow expressing drug-resistant dihydrofolate reductase activityR I James, C A Warlick, M D Diers, et al.Cancer Research|March 14, 2001
Methotrexate accumulates to similar levels in animals transplanted with normal versus drug-resistant transgenic marrowL R Belur, D Boelk-Galvan, M D Diers, et al.The Journal of Pharmacology and Experimental Therapeutics|February 28, 2002
Methotrexate exacerbates tumor progression in a murine model of chronic myeloid leukemiaColin L Sweeney, Miechaleen D Diers, Joel L Frandsen, et al.Plant Disease|June 10, 2020
Evaluation of Foliar Diseases for Soybean Entries in the Pan-African Trials in Malawi and ZambiaChristabell Nachilima, Godfree Chigeza, Mwila Chibanda, et al.The Journal of Pharmacology and Experimental Therapeutics|April 29, 2005
Methotrexate preconditioning allows sufficient engraftment to confer drug resistance in mice transplanted with marrow expressing drug-resistant dihydrofolate reductase activityLalitha R Belur, Rohaizah I James, Chad May, et al.American Journal of Hematology|June 18, 2011
Nf1 mutant mice with p19ARF gene loss develop accelerated hematopoietic disease resembling acute leukemia with a variable phenotypeStephen M Wiesner, Jennifer L Geurts, Miechaleen D Diers, et al.Blood|November 9, 2006
Beta common receptor inactivation attenuates myeloproliferative disease in Nf1 mutant miceAndrew Kim, Kelly Morgan, Diane E Hasz, et al.Nature Biomedical Engineering|December 13, 2023
Cas9-induced targeted integration of large DNA payloads in primary human T cells via homology-mediated end-joining DNA repairBeau R Webber, Matthew J Johnson, Joseph G Skeate, et al.Pageof 4