Automated Patch Clamp Screening of Amiloride and 5- N , N -Hexamethyleneamiloride Analogs Identifies 6-Iodoamiloride as a Potent Acid-Sensing Ion Channel Inhibitor.
Rocio K Finol-UrdanetaJeffrey R McArthurAshraf AboelelaRichard S BujaroskiHiwa MajedAlejandra RangelDavid J AdamsMarie RansonMichael J KelsoBenjamin J BuckleyPublished in: Molecular pharmaceutics (2023)
Acid-sensing ion channels (ASICs) are transmembrane sensors of extracellular acidosis and potential drug targets in several disease indications, including neuropathic pain and cancer metastasis. The K + -sparing diuretic amiloride is a moderate nonspecific inhibitor of ASICs and has been widely used as a probe for elucidating ASIC function. In this work, we screened a library of 6-substituted and 5,6-disubstituted amiloride analogs using a custom-developed automated patch clamp protocol and identified 6-iodoamiloride as a potent ASIC1 inhibitor. Follow-up IC 50 determinations in tsA-201 cells confirmed higher ASIC1 inhibitory potency for 6-iodoamiloride 94 (hASIC1 94 IC 50 = 88 nM, cf. amiloride 11 IC 50 = 1.7 μM). A similar improvement in activity was observed in ASIC3-mediated currents from rat dorsal root ganglion neurons (rDRG single-concentration 94 IC 50 = 230 nM, cf. 11 IC 50 = 2.7 μM). 6-Iodoamiloride represents the amiloride analog of choice for studying the effects of ASIC inhibition on cell physiology.
Keyphrases
- neuropathic pain
- spinal cord
- spinal cord injury
- molecular docking
- cystic fibrosis
- deep learning
- induced apoptosis
- photodynamic therapy
- high throughput
- single cell
- emergency department
- randomized controlled trial
- oxidative stress
- stem cells
- gene expression
- papillary thyroid
- risk assessment
- heart failure
- bone marrow
- quantum dots
- squamous cell carcinoma
- mesenchymal stem cells
- decision making
- pi k akt
- acute heart failure