Latest Research in Ion channel regulation and function
23 research papers · 2026 median publication year
Top Research Topics in Ion channel regulation and function
- Ion channel regulation and function — 5 papers
- Receptor Mechanisms and Signaling — 2 papers
- ATP Synthase and ATPases Research — 2 papers
- Molecular Communication and Nanonetworks — 2 papers
- Glutathione Transferases and Polymorphisms — 1 papers
- Preterm Birth and Chorioamnionitis — 1 papers
- Biomedical Ethics and Regulation — 1 papers
- Autophagy in Disease and Therapy — 1 papers
- Cancer, Hypoxia, and Metabolism — 1 papers
- Ion Transport and Channel Regulation — 1 papers
Highest-Cited Papers
- Structures of the volume-regulated anion channel LRRC8A/D in activating and inhibiting conditions
- Naltrexone, Naloxone, Morphine, and Fentanyl Pharmacologically Chaperone a Mutant μ‐Opioid Receptor via an Endoplasmic Reticulum Exit Site‐Dependent Pathway
- Structural and mechanistic insights into OCTN1-mediated transport and cancer cell proliferation
- Discovery of an antagonist nanobody targeting the oxytocin receptor with tocolytic effect in mice
- Industry updates in advanced therapy medicinal products and regenerative medicine – August 2026
- Gating crosstalk in potassium channels
- Augmenting intracellular amino acid pools suppresses the phenotypes of autophagy-deficient cells
- The VHL tumor suppressor at the crossroad of protein folding, aggregation, and cancer
- Current–Voltage Characteristics of K+ Channels Estimated by MD Simulations and Markov State Models
- A designer pore-blocking peptide reveals an electrostatic complementation mechanism for the inhibition-resistant Kv1.5 channel
- High-resolution structures of human NHE6 and NHE9 elucidate endosomal ion and lipid interactions
- (Short Paper14) Quantum Biological Redefinition of Mitochon dria: In Vivo QPU Clock Generation via High Membrane Potential Shielding and ATP Synthase Rotation
- (Short Paper14) Quantum Biological Redefinition of Mitochon dria: In Vivo QPU Clock Generation via High Membrane Potential Shielding and ATP Synthase Rotation
- (Short Paper12) Overcoming Classical Neurotransmission Limits: An Extreme Motor Control Model Driven by ATP Hydrolysis Induced Quantum Pulse Communication (QPC)
- (Short Paper12) Overcoming Classical Neurotransmission Limits: An Extreme Motor Control Model Driven by ATP Hydrolysis Induced Quantum Pulse Communication (QPC)
- Protocol update to: Protocol for rapid manipulation of mitochondrial morphology in living cells using inducible counter mitochondrial morphology
- Mechanism of gating and isoform-specific inhibition in renal CLC chloride channels
- A metabolite-pair controlled quiescence switch via ATP-dependent phase separation
- Cytosolic Fe/S protein biogenesis: a crossroads of Fe/S cluster machineries
- Molecular basis of diverse ligand recognition and species-specific pharmacology at the complement anaphylatoxin receptor C3aR