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Julia P Snyder

Explore the profile of Julia P Snyder including associated specialties, affiliations and a list of published articles. Areas
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Articles 5
Citations 57
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Recent Articles
1.
Peterson K, Snyder J, Despres H, Schmidt M, Eckstrom K, Unger A, et al.
Access Microbiol . 2023 Nov; 5(10). PMID: 37970082
Background: As the COVID-19 pandemic continues, efforts to better understand severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) viral shedding and transmission in both unvaccinated and vaccinated populations remain critical to...
2.
Snyder J, Gullickson S, Del Rio-Guerra R, Sweezy A, Vagher B, Hogan T, et al.
J Immunol . 2021 Dec; 208(1):97-109. PMID: 34872978
Dendritic cell (DC) activation is characterized by sustained commitment to glycolysis that is a requirement for survival in DC subsets that express inducible NO synthase () due to NO-mediated inhibition...
3.
Curtis K, Smith P, Despres H, Snyder J, Hogan T, Rodriguez P, et al.
Cells . 2020 Mar; 9(3). PMID: 32183271
Dendritic cells (DCs) increase their metabolic dependence on glucose and glycolysis to support their maturation, activation-associated cytokine production, and T-cell stimulatory capacity. We have previously shown that this increase in...
4.
Thwe P, Fritz D, Snyder J, Smith P, Curtis K, ODonnell A, et al.
J Leukoc Biol . 2019 Sep; 106(6):1325-1335. PMID: 31509298
Dendritic cells (DCs) activated via TLR ligation experience metabolic reprogramming, in which the cells are heavily dependent on glucose and glycolysis for the synthesis of molecular building blocks essential for...
5.
Snyder J, Amiel E
Front Immunol . 2019 Jan; 9:3145. PMID: 30692999
Dendritic cell (DC) activation is characterized by an acute increase in glucose metabolic flux that is required to fuel the high anabolic rates associated with DC activation. Inhibition of glycolysis...