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Health Communication
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August 26, 2024
From the United States to the United Kingdom: Hope, Blended Family Social Support, and Computer-Mediated Communication Amidst Chronic Illness
Samuel J Taylor
Molecular & Cellular Oncology
|
December 7, 2017
Hitting the snooze button: Inducing quiescence with the FLT3 inhibitor quizartinib protects hematopoietic progenitors from chemotherapy
Samuel J Taylor, Wallace Y Langdon
Molecular Cell
|
September 3, 2021
Exploiting a key transcriptional dependency: ZMYND8 and IRF8 in AML
Samuel J Taylor, Sriram Sundaravel, Ulrich Steidl
The Journal of Pharmacology and Experimental Therapeutics
|
November 9, 2011
Influence of influenza A infection on capsaicin-induced responses in murine airways
Samuel J Taylor, Tracy S Mann, Peter J Henry
Experimental Hematology
|
February 28, 2016
Dasatinib promotes the activation of quiescent hematopoietic stem cells in mice
Johanna M Duyvestyn, Samuel J Taylor, Samantha A Dagger, et al.
Scientific Reports
|
December 31, 2024
Description and phylogenetic implications of a de novo mitochondrial genome of Rhinichthys atratulus (Teleostei: Leuciscidae) from Connecticut
Timothy S Earley, Naomi Whitlock, Samuel J Taylor, et al.
Biorxiv : the Preprint Server for Biology
|
July 14, 2025
NMNAT1 Binding at Promoters and Enhancers Couples NAD <sup>+</sup> Synthesis to RNA Polymerase II Engagement
Yessenia Cedeño-Cedeño, Samuel J Taylor, Matthew J Gamble, et al.
Integrative and Comparative Biology
|
May 10, 2019
Bony Patchwork: Mosaic Patterns of Evolution in the Skull of Electric Fishes (Apteronotidae: Gymnotiformes)
Kory M Evans, Marta Vidal-García, Victor A Tagliacollo, et al.
Blood
|
September 20, 2012
Flt3 inhibitor AC220 is a potent therapy in a mouse model of myeloproliferative disease driven by enhanced wild-type Flt3 signaling
Samuel J Taylor, Samantha A Dagger, Christine B F Thien, et al.
Nucleic Acids Research
|
February 12, 2022
The DNA dioxygenase Tet1 regulates H3K27 modification and embryonic stem cell biology independent of its catalytic activity
Stephanie Chrysanthou, Qin Tang, Joun Lee, et al.
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of 3
Search research articles
Search
Showing results (1-10 of 24) with videos related to
Sort By:
Page
of 3
Health Communication
|
August 26, 2024
From the United States to the United Kingdom: Hope, Blended Family Social Support, and Computer-Mediated Communication Amidst Chronic Illness
Samuel J Taylor
Molecular & Cellular Oncology
|
December 7, 2017
Hitting the snooze button: Inducing quiescence with the FLT3 inhibitor quizartinib protects hematopoietic progenitors from chemotherapy
Samuel J Taylor, Wallace Y Langdon
Molecular Cell
|
September 3, 2021
Exploiting a key transcriptional dependency: ZMYND8 and IRF8 in AML
Samuel J Taylor, Sriram Sundaravel, Ulrich Steidl
The Journal of Pharmacology and Experimental Therapeutics
|
November 9, 2011
Influence of influenza A infection on capsaicin-induced responses in murine airways
Samuel J Taylor, Tracy S Mann, Peter J Henry
Experimental Hematology
|
February 28, 2016
Dasatinib promotes the activation of quiescent hematopoietic stem cells in mice
Johanna M Duyvestyn, Samuel J Taylor, Samantha A Dagger, et al.
Scientific Reports
|
December 31, 2024
Description and phylogenetic implications of a de novo mitochondrial genome of Rhinichthys atratulus (Teleostei: Leuciscidae) from Connecticut
Timothy S Earley, Naomi Whitlock, Samuel J Taylor, et al.
Biorxiv : the Preprint Server for Biology
|
July 14, 2025
NMNAT1 Binding at Promoters and Enhancers Couples NAD <sup>+</sup> Synthesis to RNA Polymerase II Engagement
Yessenia Cedeño-Cedeño, Samuel J Taylor, Matthew J Gamble, et al.
Integrative and Comparative Biology
|
May 10, 2019
Bony Patchwork: Mosaic Patterns of Evolution in the Skull of Electric Fishes (Apteronotidae: Gymnotiformes)
Kory M Evans, Marta Vidal-García, Victor A Tagliacollo, et al.
Blood
|
September 20, 2012
Flt3 inhibitor AC220 is a potent therapy in a mouse model of myeloproliferative disease driven by enhanced wild-type Flt3 signaling
Samuel J Taylor, Samantha A Dagger, Christine B F Thien, et al.
Nucleic Acids Research
|
February 12, 2022
The DNA dioxygenase Tet1 regulates H3K27 modification and embryonic stem cell biology independent of its catalytic activity
Stephanie Chrysanthou, Qin Tang, Joun Lee, et al.
Page
of 3