Research Areas
Biomedical Subjects
Biography and Research Information
OverviewAI-generated summary
Dennis Province's research investigates mechanisms underlying disease progression, utilizing both in vivo models and advanced microphysiological systems. His work includes studying the progression of calcific aortic valve disease, employing a three-dimensional valve-on-chip system to identify factors such as cell cycle progression, cholesterol metabolism, and protein homeostasis. Province also examines the protective effects of Factor XI inhibition in sepsis models, specifically using abelacimab in baboons challenged with Staphylococcus aureus. Further research explores how anthrax toxins impact sepsis-induced coagulopathy and endothelial dysfunction in baboons. Additionally, his work touches on proteome turnover dynamics to uncover E3 ligases influencing T-cell persistence during exhaustion and investigates circulating extracellular vesicle protein biomarkers for early cancer detection, including diffuse large B-cell lymphoma and high-grade serous ovarian cancer. He also studies the intracellular tracking and protein interactomes of hemopexin in human immune and liver cell models.
Metrics
- h-index: 2
- Publications: 9
- Citations: 15
Selected Publications
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Proteomic consequences of male mate preference learning and female phenotype in the butterfly <i>Bicyclus anynana</i> (2026)
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Scaling of Neuronal Growth and Excitability Through Separable mTORC1 and mTORC2 Pathways (2026)
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A Suspension-Trapping Protocol for Bottom-Up Proteomics Sample Preparation (2026)
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Circulating Extracellular Vesicle Protein Biomarkers for the Early Detection of High-Grade Serous Ovarian Cancer (2026)
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Tracking hemopexin intracellularly and defining hemopexin protein “interactomes” in human immune and liver cell models (2025)
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277 Proteome turnover dynamics analysis uncovers E3 ligases that enhance T-cell persistence during exhaustion (2025)
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Anthrax toxins exacerbate sepsis-induced coagulopathy and endothelial dysfunction in a baboon model of anthrax (2025)
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Protective effects of factor XI inhibition by abelacimab in a baboon model of live Staphylococcus aureus sepsis (2025)
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Comprehensive Analysis of Proteome Turnover Dynamics During T Cell Exhaustion (2025)
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Abstract B017: MicroRNA and proteomic analyses of plasma extracellular vesicles detect diffuse large B-cell lymphoma (2024)
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319 Comprehensive analysis of proteome turnover dynamics during T cell exhaustion (2024)
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A three-dimensional valve-on-chip microphysiological system implicates cell cycle progression, cholesterol metabolism and protein homeostasis in early calcific aortic valve disease progression (2024)
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Significance of Multiple Bioactivation Pathways for Meclofenamate as Revealed through Modeling and Reaction Kinetics (2020)
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DISINFECTION OF B. SUBTILIS CELLS IN SUSPENSION USING ULTRAVIOLET LIGHT EMITTING DIODES (LEDS) IN THE PRESENCE OF TiO[sub 2] (2011)
Collaboration Network
Top Collaborators
- Protective effects of factor XI inhibition by abelacimab in a baboon model of live Staphylococcus aureus sepsis
- 319 Comprehensive analysis of proteome turnover dynamics during T cell exhaustion
- Comprehensive Analysis of Proteome Turnover Dynamics During T Cell Exhaustion
- Anthrax toxins exacerbate sepsis-induced coagulopathy and endothelial dysfunction in a baboon model of anthrax
- 277 Proteome turnover dynamics analysis uncovers E3 ligases that enhance T-cell persistence during exhaustion
- Protective effects of factor XI inhibition by abelacimab in a baboon model of live Staphylococcus aureus sepsis
- 319 Comprehensive analysis of proteome turnover dynamics during T cell exhaustion
- Anthrax toxins exacerbate sepsis-induced coagulopathy and endothelial dysfunction in a baboon model of anthrax
- 277 Proteome turnover dynamics analysis uncovers E3 ligases that enhance T-cell persistence during exhaustion
- 319 Comprehensive analysis of proteome turnover dynamics during T cell exhaustion
- Abstract B017: MicroRNA and proteomic analyses of plasma extracellular vesicles detect diffuse large B-cell lymphoma
- Comprehensive Analysis of Proteome Turnover Dynamics During T Cell Exhaustion
- Anthrax toxins exacerbate sepsis-induced coagulopathy and endothelial dysfunction in a baboon model of anthrax
- Protective effects of factor XI inhibition by abelacimab in a baboon model of live Staphylococcus aureus sepsis
- Abstract B017: MicroRNA and proteomic analyses of plasma extracellular vesicles detect diffuse large B-cell lymphoma
- Comprehensive Analysis of Proteome Turnover Dynamics During T Cell Exhaustion
- Anthrax toxins exacerbate sepsis-induced coagulopathy and endothelial dysfunction in a baboon model of anthrax
- A three-dimensional valve-on-chip microphysiological system implicates cell cycle progression, cholesterol metabolism and protein homeostasis in early calcific aortic valve disease progression
- Protective effects of factor XI inhibition by abelacimab in a baboon model of live Staphylococcus aureus sepsis
- 277 Proteome turnover dynamics analysis uncovers E3 ligases that enhance T-cell persistence during exhaustion
- 319 Comprehensive analysis of proteome turnover dynamics during T cell exhaustion
- Comprehensive Analysis of Proteome Turnover Dynamics During T Cell Exhaustion
- 277 Proteome turnover dynamics analysis uncovers E3 ligases that enhance T-cell persistence during exhaustion
- 319 Comprehensive analysis of proteome turnover dynamics during T cell exhaustion
- Comprehensive Analysis of Proteome Turnover Dynamics During T Cell Exhaustion
- 277 Proteome turnover dynamics analysis uncovers E3 ligases that enhance T-cell persistence during exhaustion
- 319 Comprehensive analysis of proteome turnover dynamics during T cell exhaustion
- Comprehensive Analysis of Proteome Turnover Dynamics During T Cell Exhaustion
- 277 Proteome turnover dynamics analysis uncovers E3 ligases that enhance T-cell persistence during exhaustion
- 319 Comprehensive analysis of proteome turnover dynamics during T cell exhaustion
- Comprehensive Analysis of Proteome Turnover Dynamics During T Cell Exhaustion
- 277 Proteome turnover dynamics analysis uncovers E3 ligases that enhance T-cell persistence during exhaustion
- 319 Comprehensive analysis of proteome turnover dynamics during T cell exhaustion
- Comprehensive Analysis of Proteome Turnover Dynamics During T Cell Exhaustion
- 277 Proteome turnover dynamics analysis uncovers E3 ligases that enhance T-cell persistence during exhaustion
- 319 Comprehensive analysis of proteome turnover dynamics during T cell exhaustion
- 277 Proteome turnover dynamics analysis uncovers E3 ligases that enhance T-cell persistence during exhaustion
- 319 Comprehensive analysis of proteome turnover dynamics during T cell exhaustion
- 277 Proteome turnover dynamics analysis uncovers E3 ligases that enhance T-cell persistence during exhaustion
- 319 Comprehensive analysis of proteome turnover dynamics during T cell exhaustion
- 277 Proteome turnover dynamics analysis uncovers E3 ligases that enhance T-cell persistence during exhaustion
- Abstract B017: MicroRNA and proteomic analyses of plasma extracellular vesicles detect diffuse large B-cell lymphoma
- Circulating Extracellular Vesicle Protein Biomarkers for the Early Detection of High-Grade Serous Ovarian Cancer
- Abstract B017: MicroRNA and proteomic analyses of plasma extracellular vesicles detect diffuse large B-cell lymphoma
- Circulating Extracellular Vesicle Protein Biomarkers for the Early Detection of High-Grade Serous Ovarian Cancer
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