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Electrophysiology of Epithelial Sodium Channel (ENaC) Embedded in Supported  Lipid Bilayer Using a Single Nanopore Chip | Langmuir
Electrophysiology of Epithelial Sodium Channel (ENaC) Embedded in Supported Lipid Bilayer Using a Single Nanopore Chip | Langmuir

Accessibility of ENaC extracellular domain central core residues - Journal  of Biological Chemistry
Accessibility of ENaC extracellular domain central core residues - Journal of Biological Chemistry

Activation of the epithelial Na+ channel triggers prostaglandin E2 release  and production required for embryo implantation | Nature Medicine
Activation of the epithelial Na+ channel triggers prostaglandin E2 release and production required for embryo implantation | Nature Medicine

Mechanisms of ENaC Regulation and Clinical Implications | American Society  of Nephrology
Mechanisms of ENaC Regulation and Clinical Implications | American Society of Nephrology

Inhibition of ENaC by Nedd4. Coexpression of ENaC and Nedd4 in Xenopus... |  Download Scientific Diagram
Inhibition of ENaC by Nedd4. Coexpression of ENaC and Nedd4 in Xenopus... | Download Scientific Diagram

Cells | Free Full-Text | COVID-19 and Liquid Homeostasis in the  Lung—A Perspective through the Epithelial Sodium Channel (ENaC) Lens  | HTML
Cells | Free Full-Text | COVID-19 and Liquid Homeostasis in the Lung—A Perspective through the Epithelial Sodium Channel (ENaC) Lens | HTML

Epithelial Sodium Channel δ Subunit Is Expressed in Human Arteries and Has  Potential Association With Hypertension | Hypertension
Epithelial Sodium Channel δ Subunit Is Expressed in Human Arteries and Has Potential Association With Hypertension | Hypertension

Paolo Serafini - Captain - Silk Way West Airlines | LinkedIn
Paolo Serafini - Captain - Silk Way West Airlines | LinkedIn

Nedd4-2 Catalyzes Ubiquitination and Degradation of Cell Surface ENaC* -  Journal of Biological Chemistry
Nedd4-2 Catalyzes Ubiquitination and Degradation of Cell Surface ENaC* - Journal of Biological Chemistry

Zymogen‐locked mutant prostasin (Prss8) leads to incomplete proteolytic  activation of the epithelial sodium channel (ENaC) and severely compromises  triamterene tolerance in mice - Essigke - 2021 - Acta Physiologica - Wiley  Online Library
Zymogen‐locked mutant prostasin (Prss8) leads to incomplete proteolytic activation of the epithelial sodium channel (ENaC) and severely compromises triamterene tolerance in mice - Essigke - 2021 - Acta Physiologica - Wiley Online Library

ENaC in Salt-Sensitive Hypertension: Kidney and Beyond | SpringerLink
ENaC in Salt-Sensitive Hypertension: Kidney and Beyond | SpringerLink

Salt-deficient diet exacerbates cystogenesis in ARPKD via epithelial sodium  channel (ENaC) - eBioMedicine
Salt-deficient diet exacerbates cystogenesis in ARPKD via epithelial sodium channel (ENaC) - eBioMedicine

Lessons from Mouse Mutants of Epithelial Sodium Channel and Its Regulatory  Proteins | American Society of Nephrology
Lessons from Mouse Mutants of Epithelial Sodium Channel and Its Regulatory Proteins | American Society of Nephrology

IJMS | Free Full-Text | Regulators of Epithelial Sodium Channels in  Aldosterone-Sensitive Distal Nephrons (ASDN): Critical Roles of  Nedd4L/Nedd4-2 and Salt-Sensitive Hypertension | HTML
IJMS | Free Full-Text | Regulators of Epithelial Sodium Channels in Aldosterone-Sensitive Distal Nephrons (ASDN): Critical Roles of Nedd4L/Nedd4-2 and Salt-Sensitive Hypertension | HTML

TGF-β directs trafficking of the epithelial sodium channel ENaC which has  implications for ion and fluid transport in acute lung injury | PNAS
TGF-β directs trafficking of the epithelial sodium channel ENaC which has implications for ion and fluid transport in acute lung injury | PNAS

Figure 5 | Proteolytic activation of the epithelial sodium channel (ENaC)  by factor VII activating protease (FSAP) and its relevance for sodium  retention in nephrotic mice | SpringerLink
Figure 5 | Proteolytic activation of the epithelial sodium channel (ENaC) by factor VII activating protease (FSAP) and its relevance for sodium retention in nephrotic mice | SpringerLink

A) FLAG-epitope placement into the rat ENaC sequence. The alignment of... |  Download Scientific Diagram
A) FLAG-epitope placement into the rat ENaC sequence. The alignment of... | Download Scientific Diagram

Epithelial Sodium Channel δ Subunit Is Expressed in Human Arteries and Has  Potential Association With Hypertension | Hypertension
Epithelial Sodium Channel δ Subunit Is Expressed in Human Arteries and Has Potential Association With Hypertension | Hypertension

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Nutrients | Free Full-Text | Does ENaC Work as Sodium Taste Receptor in  Humans? | HTML
Nutrients | Free Full-Text | Does ENaC Work as Sodium Taste Receptor in Humans? | HTML

ENaC regulation by phospholipids and DGK explained through mathematical  modeling | Scientific Reports
ENaC regulation by phospholipids and DGK explained through mathematical modeling | Scientific Reports

Stimulation of the Epithelial Sodium Channel (ENaC) by cAMP Involves  Putative ERK Phosphorylation Sites in the C Termini of the Channel's β- and  γ-Subunit* - Journal of Biological Chemistry
Stimulation of the Epithelial Sodium Channel (ENaC) by cAMP Involves Putative ERK Phosphorylation Sites in the C Termini of the Channel's β- and γ-Subunit* - Journal of Biological Chemistry

DOMANDA PER IL TRASFERIMENTO DI UNA LICENZA PARTE 66 RILASCIATA DA ENAC  ALL'AUTORITÀ DI ALTRO STATO MEMBRO
DOMANDA PER IL TRASFERIMENTO DI UNA LICENZA PARTE 66 RILASCIATA DA ENAC ALL'AUTORITÀ DI ALTRO STATO MEMBRO

Coordinated Control of ENaC and Na+,K+-ATPase in Renal Collecting Duct |  American Society of Nephrology
Coordinated Control of ENaC and Na+,K+-ATPase in Renal Collecting Duct | American Society of Nephrology

SARS-CoV-2 strategically mimics proteolytic activation of human ENaC | eLife
SARS-CoV-2 strategically mimics proteolytic activation of human ENaC | eLife

Aprotinin prevents proteolytic epithelial sodium channel (ENaC) activation  and volume retention in nephrotic syndrome - Kidney International
Aprotinin prevents proteolytic epithelial sodium channel (ENaC) activation and volume retention in nephrotic syndrome - Kidney International