Javascript must be enabled to continue!
State-Dependent Blockade of Dorsal Root Ganglion Voltage-Gated Na+ Channels by Anethole
View through CrossRef
Anethole is a phenolic compound synthesized by many aromatic plants. Anethole is a substance that humans can safely consume and has been studied for years as a biologically active molecule to treat a variety of conditions, including nerve damage, gastritis, inflammation, and nociception. Anethole is thought to carry out its biological activities through direct interaction with ion channels. Anethole is beneficial for neurodegenerative Alzheimer’s and Parkinson’s diseases. Nevertheless, nothing has been investigated regarding the effects of anethole on voltage-gated Na+ channels (VGSCs), which are major players in neuronal function. We used cultured dorsal root ganglion neurons from neonatal rats as a source of natively expressed VGSCs for electrophysiological studies using the whole-cell patch-clamp technique. Our data show that anethole interacts directly with VGSCs. Anethole quickly blocks and unblocks (when removed) voltage-activated Na+ currents in this preparation in a fully reversible manner. Anethole’s binding affinity to these channels increases when the inactive states of these channels are populated, similar to lidocaine’s effect on the same channels. Our data show that anethole inhibits neuronal activity by blocking VGSCs in a state-dependent manner. These findings relate to the putative anesthetic activity attributable to anethole, in addition to its potential benefit in neurodegenerative diseases.
Title: State-Dependent Blockade of Dorsal Root Ganglion Voltage-Gated Na+ Channels by Anethole
Description:
Anethole is a phenolic compound synthesized by many aromatic plants.
Anethole is a substance that humans can safely consume and has been studied for years as a biologically active molecule to treat a variety of conditions, including nerve damage, gastritis, inflammation, and nociception.
Anethole is thought to carry out its biological activities through direct interaction with ion channels.
Anethole is beneficial for neurodegenerative Alzheimer’s and Parkinson’s diseases.
Nevertheless, nothing has been investigated regarding the effects of anethole on voltage-gated Na+ channels (VGSCs), which are major players in neuronal function.
We used cultured dorsal root ganglion neurons from neonatal rats as a source of natively expressed VGSCs for electrophysiological studies using the whole-cell patch-clamp technique.
Our data show that anethole interacts directly with VGSCs.
Anethole quickly blocks and unblocks (when removed) voltage-activated Na+ currents in this preparation in a fully reversible manner.
Anethole’s binding affinity to these channels increases when the inactive states of these channels are populated, similar to lidocaine’s effect on the same channels.
Our data show that anethole inhibits neuronal activity by blocking VGSCs in a state-dependent manner.
These findings relate to the putative anesthetic activity attributable to anethole, in addition to its potential benefit in neurodegenerative diseases.
Related Results
Morphological study of dorsal Barton's fracture based on three-dimensional CT imaging
Morphological study of dorsal Barton's fracture based on three-dimensional CT imaging
Abstract
Background
Dorsal Barton's fracture is a distinct type of distal radius fracture. The treatment of dorsal Barton's fracture is contentious and may lead to severe ...
Anethole ameliorates inflammation induced by monosodium urate in an acute gouty arthritis model via inhibiting TLRs/MyD88 pathway
Anethole ameliorates inflammation induced by monosodium urate in an acute gouty arthritis model via inhibiting TLRs/MyD88 pathway
Objective: To assess the effects of anethole on monosodium urate (MSU)-induced inflammatory response, investigate its role in acute gouty arthritis (AGA), and verify its molecular ...
The Power of the Wave: Activism Rainbow Region-Style
The Power of the Wave: Activism Rainbow Region-Style
Introduction The counterculture that arose during the 1960s and 1970s left lasting social and political reverberations in developed nations. This was a time of increasing affluenc...
Nociceptors are functionally male or female: from mouse to monkey to man
Nociceptors are functionally male or female: from mouse to monkey to man
Abstract
The prevalence of many pain conditions often differs between sexes. In addition to such quantitative distinctions, sexual dimorphism may also be qualitative...
Efficacy of Toluidine Blue Staining in Rectal Biopsy with Patients of Hirschsprung Disease
Efficacy of Toluidine Blue Staining in Rectal Biopsy with Patients of Hirschsprung Disease
Background: The diagnosis of Hirschsprung disease (HD) is dependent on the histological study of rectal biopsy for ganglion cells and nerve fibers. Hematoxylin and Eosin (H&E) ...
Parameterizing complex root water uptake models – the arrangement of root hydraulic properties within the root architecture affects dynamics and efficiency of root water uptake
Parameterizing complex root water uptake models – the arrangement of root hydraulic properties within the root architecture affects dynamics and efficiency of root water uptake
Abstract. Detailed three-dimensional models of root water uptake have become increasingly popular for investigating the process of root water uptake. However they suffer from a lac...
Management of Oblique Root Fracture Using Mineral Trioxide Aggregate: A Case Report
Management of Oblique Root Fracture Using Mineral Trioxide Aggregate: A Case Report
Root fractures are relatively uncommon compared to other types of dental traumas. It is sometimes extremely difficult for practitioners to decide what should be done and which appr...
Covariation in root traits of Leymus chinensis in response to grazing in steppe rangeland
Covariation in root traits of Leymus chinensis in response to grazing in steppe rangeland
Root traits are closely related to nutrient absorption and resource competition and can even influence plant recovery and community succession. Grazing can influence root traits di...

