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M DeCamp

Showing results (221-230 of 235) with videos related to

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Cell Reports. Medicine|June 2, 2020
Repression of LKB1 by <i>miR-17∼92</i> Sensitizes <i>MYC</i>-Dependent Lymphoma to Biguanide TreatmentSaid Izreig, Alexandra Gariepy, Irem Kaymak, et al.
Clinical Cancer Research : an Official Journal of the American Association for Cancer Research|July 8, 2005
Early stage lung cancer--new approaches to evaluation and treatment: conference summary statementThomas J Lynch, Jeffrey A Bogart, Walter J Curran, et al.
Nature Immunology|June 27, 2025
The prostacyclin receptor PTGIR is a NRF2-dependent regulator of CD8<sup>+</sup> T cell exhaustionMichael S Dahabieh, Lisa M DeCamp, Brandon M Oswald, et al.
Biorxiv : the Preprint Server for Biology|November 28, 2024
Dietary Restriction Enhances CD8<sup>+</sup> T Cell Ketolysis to Limit Exhaustion and Boost Anti-Tumor ImmunityBrandon M Oswald, Lisa M DeCamp, Joseph Longo, et al.
Science Advances|May 29, 2024
<sup>13</sup>C metabolite tracing reveals glutamine and acetate as critical in vivo fuels for CD8 T cellsEric H Ma, Michael S Dahabieh, Lisa M DeCamp, et al.
Biorxiv : the Preprint Server for Biology|October 28, 2024
Glucose-dependent glycosphingolipid biosynthesis fuels CD8<sup>+</sup> T cell function and tumor controlJoseph Longo, Lisa M DeCamp, Brandon M Oswald, et al.
The Lancet. Respiratory Medicine|February 5, 2021
Use of fibrinolytics and deoxyribonuclease in adult patients with pleural empyema: a consensus statementUdit Chaddha, Abhinav Agrawal, David Feller-Kopman, et al.
Cell Metabolism|August 6, 2025
Glucose-dependent glycosphingolipid biosynthesis fuels CD8<sup>+</sup> T cell function and tumor controlJoseph Longo, Lisa M DeCamp, Brandon M Oswald, et al.
Science (New York, N.Y.)|December 12, 2024
Nutrient-driven histone code determines exhausted CD8<sup>+</sup> T cell fatesShixin Ma, Michael S Dahabieh, Thomas H Mann, et al.
Cell Reports|October 21, 2023
High-calorie diets uncouple hypothalamic oxytocin neurons from a gut-to-brain satiation pathway via κ-opioid signalingTim Gruber, Franziska Lechner, Cahuê Murat, et al.
Pageof 24

Showing results (221-230 of 235) with videos related to

Sort By:
Pageof 24
Cell Reports. Medicine|June 2, 2020
Repression of LKB1 by <i>miR-17∼92</i> Sensitizes <i>MYC</i>-Dependent Lymphoma to Biguanide TreatmentSaid Izreig, Alexandra Gariepy, Irem Kaymak, et al.
Clinical Cancer Research : an Official Journal of the American Association for Cancer Research|July 8, 2005
Early stage lung cancer--new approaches to evaluation and treatment: conference summary statementThomas J Lynch, Jeffrey A Bogart, Walter J Curran, et al.
Nature Immunology|June 27, 2025
The prostacyclin receptor PTGIR is a NRF2-dependent regulator of CD8<sup>+</sup> T cell exhaustionMichael S Dahabieh, Lisa M DeCamp, Brandon M Oswald, et al.
Biorxiv : the Preprint Server for Biology|November 28, 2024
Dietary Restriction Enhances CD8<sup>+</sup> T Cell Ketolysis to Limit Exhaustion and Boost Anti-Tumor ImmunityBrandon M Oswald, Lisa M DeCamp, Joseph Longo, et al.
Science Advances|May 29, 2024
<sup>13</sup>C metabolite tracing reveals glutamine and acetate as critical in vivo fuels for CD8 T cellsEric H Ma, Michael S Dahabieh, Lisa M DeCamp, et al.
Biorxiv : the Preprint Server for Biology|October 28, 2024
Glucose-dependent glycosphingolipid biosynthesis fuels CD8<sup>+</sup> T cell function and tumor controlJoseph Longo, Lisa M DeCamp, Brandon M Oswald, et al.
The Lancet. Respiratory Medicine|February 5, 2021
Use of fibrinolytics and deoxyribonuclease in adult patients with pleural empyema: a consensus statementUdit Chaddha, Abhinav Agrawal, David Feller-Kopman, et al.
Cell Metabolism|August 6, 2025
Glucose-dependent glycosphingolipid biosynthesis fuels CD8<sup>+</sup> T cell function and tumor controlJoseph Longo, Lisa M DeCamp, Brandon M Oswald, et al.
Science (New York, N.Y.)|December 12, 2024
Nutrient-driven histone code determines exhausted CD8<sup>+</sup> T cell fatesShixin Ma, Michael S Dahabieh, Thomas H Mann, et al.
Cell Reports|October 21, 2023
High-calorie diets uncouple hypothalamic oxytocin neurons from a gut-to-brain satiation pathway via κ-opioid signalingTim Gruber, Franziska Lechner, Cahuê Murat, et al.
Pageof 24