21 results on '"Mutchler, Ashley"'
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2. Abstract 19164: The Role of Klf6 in Hypertensive Inflammation
3. Abstract 19133: Sodium Induced-RGMa Plays a Role in Salt-Sensitive Hypertension
4. Myeloid Cell Glucocorticoid, Not Mineralocorticoid Receptor Signaling, Contributes to Salt-Sensitive Hypertension in Humans via Cortisol
5. Myeloid-Specific JAK2 Contributes to Inflammation and Salt Sensitivity of Blood Pressure.
6. Myeloid Specific Hypoxia Inducible Factor 1 Alpha contributes to Immune Metabolic Reprogramming in Human Salt Sensitive Hypertension
7. Immune Metabolic Reprogramming by Excess Dietary Salt in Salt Sensitive Hypertension via CXCL8
8. Eicosanoid-Regulated Myeloid ENaC and Isolevuglandin Formation in Human Salt-Sensitive Hypertension
9. Abstract 126: Nlrp3 Chromatin Availability And Isolg-adducted Histones In Salt-sensitivity Of Blood Pressure
10. Abstract P109: Antigen Presenting Cell Activator Protein 1 Mediates Salt-sensitive Hypertension In Humans
11. Abstract P418: Antigen-presenting Cell-specific MAP-kinase Signaling Contributes To Inflammation And Salt-sensitivity Of Blood Pressure In Humans
12. Regulation of human salt-sensitivite hypertension by myeloid cell renin-angiotensin-aldosterone system
13. The role of dietary magnesium deficiency in inflammatory hypertension
14. Dendritic cell-specific SMAD3, downstream of JAK2, contributes to inflammation and salt-sensitivity of blood pressure
15. IsoLG-adducted Histone Epigenetic Regulation of NLRP3 Inflammasome in Salt-Sensitivity of Blood Pressure
16. Inflammation and oxidative stress in salt sensitive hypertension; The role of the NLRP3 inflammasome
17. The role of dietary magnesium deficiency in inflammatory hypertension.
18. Multifaceted regulation of the sumoylation of the Sgs1 DNA helicase
19. Multifaceted regulation of the sumoylation of the Sgs1 DNA helicase.
20. Esc2 orchestrates substrate-specific sumoylation by acting as a SUMO E2 cofactor in genome maintenance
21. Myeloid Cell Glucocorticoid, Not Mineralocorticoid Receptor Signaling, Contributes to Salt-Sensitive Hypertension in Humans via Cortisol.
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