Match tier
Listed
Presence
Current · Arkansas
Last published
2019
Sources
OpenAlex · ORCID
Refreshed
2026-09-26
F
Research Areas
Biomedical Subjects
Biography and Research Information
Metrics
- h-index: 3
- Publications: 3
- Citations: 69
Selected Publications
-
Infection of Primary Human Alveolar Macrophages Alters Staphylococcus aureus Toxin Production and Activity (2019)
-
Coxiella burnetii Subverts p62/Sequestosome 1 and Activates Nrf2 Signaling in Human Macrophages (2018)
-
Vasodilator-Stimulated Phosphoprotein Activity Is Required for Coxiella burnetii Growth in Human Macrophages (2016)
Collaboration Network
Top Collaborators
Richard C. Kurten
Arkansas Children's Hospital
3 shared publications
In database
- Coxiella burnetii Subverts p62/Sequestosome 1 and Activates Nrf2 Signaling in Human Macrophages
- Infection of Primary Human Alveolar Macrophages Alters Staphylococcus aureus Toxin Production and Activity
- Vasodilator-Stimulated Phosphoprotein Activity Is Required for Coxiella burnetii Growth in Human Macrophages
Daniel E. Voth
University of Arkansas for Medical Sciences
3 shared publications
In database
- Coxiella burnetii Subverts p62/Sequestosome 1 and Activates Nrf2 Signaling in Human Macrophages
- Infection of Primary Human Alveolar Macrophages Alters Staphylococcus aureus Toxin Production and Activity
- Vasodilator-Stimulated Phosphoprotein Activity Is Required for Coxiella burnetii Growth in Human Macrophages
Caylin G. Winchell
University of Arkansas for Medical Sciences (US)
2 shared publications
- Coxiella burnetii Subverts p62/Sequestosome 1 and Activates Nrf2 Signaling in Human Macrophages
- Vasodilator-Stimulated Phosphoprotein Activity Is Required for Coxiella burnetii Growth in Human Macrophages
Katelynn R. Brann
University of Arkansas for Medical Sciences
2 shared publications
In database
- Coxiella burnetii Subverts p62/Sequestosome 1 and Activates Nrf2 Signaling in Human Macrophages
- Infection of Primary Human Alveolar Macrophages Alters Staphylococcus aureus Toxin Production and Activity
Punsiri M. Colonne
University of Arkansas for Medical Sciences
1 shared publication
In database
- Vasodilator-Stimulated Phosphoprotein Activity Is Required for Coxiella burnetii Growth in Human Macrophages
Joseph G. Graham
University of Arkansas for Medical Sciences (US)
1 shared publication
- Vasodilator-Stimulated Phosphoprotein Activity Is Required for Coxiella burnetii Growth in Human Macrophages
Laura J. MacDonald
University of Arkansas for Medical Sciences (US)
1 shared publication
- Vasodilator-Stimulated Phosphoprotein Activity Is Required for Coxiella burnetii Growth in Human Macrophages
Heike Doeppler
Mayo Clinic in Florida (US)
1 shared publication
- Vasodilator-Stimulated Phosphoprotein Activity Is Required for Coxiella burnetii Growth in Human Macrophages
Peter Störz
Mayo Clinic in Florida (US)
1 shared publication
- Vasodilator-Stimulated Phosphoprotein Activity Is Required for Coxiella burnetii Growth in Human Macrophages
Paul A. Beare
National Institutes of Health (US)
1 shared publication
- Vasodilator-Stimulated Phosphoprotein Activity Is Required for Coxiella burnetii Growth in Human Macrophages
Robert A. Heinzen
National Institutes of Health (US)
1 shared publication
- Vasodilator-Stimulated Phosphoprotein Activity Is Required for Coxiella burnetii Growth in Human Macrophages
Amanda L. Dragan
University of Arkansas for Medical Sciences
1 shared publication
In database
- Coxiella burnetii Subverts p62/Sequestosome 1 and Activates Nrf2 Signaling in Human Macrophages
Marissa S. Fullerton
University of Arkansas for Medical Sciences
1 shared publication
In database
- Infection of Primary Human Alveolar Macrophages Alters Staphylococcus aureus Toxin Production and Activity
Andrew A. Prince
University of Arkansas for Medical Sciences
1 shared publication
In database
- Infection of Primary Human Alveolar Macrophages Alters Staphylococcus aureus Toxin Production and Activity
Joseph S. Rom
University of Arkansas for Medical Sciences (US)
1 shared publication
- Infection of Primary Human Alveolar Macrophages Alters Staphylococcus aureus Toxin Production and Activity