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Biography and Research Information
OverviewAI-generated summary
Latambria Hampton's research investigates the molecular mechanisms underlying immune cell function, with a particular focus on T cell metabolism and exhaustion. Her recent publications explore the role of PCK2 in T cell metabolic plasticity, specifically in the context of glioblastoma. Hampton also has experience with proteomic analysis to understand the DNA damage response in T cells. Her work involves collaborations with researchers at the University of Arkansas for Medical Sciences, including Brian Koss, Daniel Fil, Lora J. Rogers, and Sydnye L. Shuttleworth. Hampton has published five papers and has an h-index of 2, with recent activity in 2024.
Metrics
- h-index: 2
- Publications: 5
- Citations: 7
Selected Publications
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932 Defining the role for PCK2 in T-cell metabolic plasticity (2024)
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1020 Proteomic analysis of T cell exhaustion unveils differential modulation of the DNA damage response (2023)
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1211 Defining the role of PCK2 in T cell metabolic plasticity in Glioblastoma (2023)
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An Automated Approach to Synechocystis Cell Analysis in TEM Image Datasets (2023)
Collaboration Network
Top Collaborators
- 1020 Proteomic analysis of T cell exhaustion unveils differential modulation of the DNA damage response
- 1211 Defining the role of PCK2 in T cell metabolic plasticity in Glioblastoma
- 932 Defining the role for PCK2 in T-cell metabolic plasticity
- 1020 Proteomic analysis of T cell exhaustion unveils differential modulation of the DNA damage response
- 1211 Defining the role of PCK2 in T cell metabolic plasticity in Glioblastoma
- 932 Defining the role for PCK2 in T-cell metabolic plasticity
- 1020 Proteomic analysis of T cell exhaustion unveils differential modulation of the DNA damage response
- 1211 Defining the role of PCK2 in T cell metabolic plasticity in Glioblastoma
- 932 Defining the role for PCK2 in T-cell metabolic plasticity
- 1020 Proteomic analysis of T cell exhaustion unveils differential modulation of the DNA damage response
- 1211 Defining the role of PCK2 in T cell metabolic plasticity in Glioblastoma
- 932 Defining the role for PCK2 in T-cell metabolic plasticity
- 1211 Defining the role of PCK2 in T cell metabolic plasticity in Glioblastoma
- 932 Defining the role for PCK2 in T-cell metabolic plasticity
- 1020 Proteomic analysis of T cell exhaustion unveils differential modulation of the DNA damage response
- 932 Defining the role for PCK2 in T-cell metabolic plasticity
- An Automated Approach to Synechocystis Cell Analysis in TEM Image Datasets
- An Automated Approach to Synechocystis Cell Analysis in TEM Image Datasets
- An Automated Approach to Synechocystis Cell Analysis in TEM Image Datasets
- An Automated Approach to Synechocystis Cell Analysis in TEM Image Datasets
- 1211 Defining the role of PCK2 in T cell metabolic plasticity in Glioblastoma
- 1211 Defining the role of PCK2 in T cell metabolic plasticity in Glioblastoma
- 1211 Defining the role of PCK2 in T cell metabolic plasticity in Glioblastoma
- 932 Defining the role for PCK2 in T-cell metabolic plasticity
- 932 Defining the role for PCK2 in T-cell metabolic plasticity
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