Javascript must be enabled to continue!
T-type calcium channel modulation by hydrogen sulfide in neuropathic pain conditions
View through CrossRef
Neuropathic pain can appear as a direct or indirect nerve damage lesion or disease that affects the somatosensory nervous system. If the neurons are damaged or indirectly stimulated, immune cells contribute significantly to inflammatory and neuropathic pain. After nerve injury, peripheral macrophages/spinal microglia accumulate around damaged neurons, producing endogenous hydrogen sulfide (H2S) through the cystathionine-γ-lyase (CSE) enzyme. H2S has a pronociceptive modulation on the Cav3.2 subtype, the predominant Cav3 isoform involved in pain processes. The present review provides relevant information about H2S modulation on the Cav3.2 T-type channels in neuropathic pain conditions. We have discussed that the dual effect of H2S on T-type channels is concentration-dependent, that is, an inhibitory effect is seen at low concentrations of 10 µM and an augmentation effect on T-current at 100 µM. The modulation mechanism of the Cav3.2 channel by H2S involves the direct participation of the redox/Zn2+ affinity site located in the His191 in the extracellular loop of domain I of the channel, involving a group of extracellular cysteines, comprising C114, C123, C128, and C1333, that can modify the local redox environment. The indirect interaction pathways involve the regulation of the Cav3.2 channel through cytokines, kinases, and post-translational regulators of channel expression. The findings conclude that the CSE/H2S/Cav3.2 pathway could be a promising therapeutic target for neuropathic pain disorders.
Title: T-type calcium channel modulation by hydrogen sulfide in neuropathic pain conditions
Description:
Neuropathic pain can appear as a direct or indirect nerve damage lesion or disease that affects the somatosensory nervous system.
If the neurons are damaged or indirectly stimulated, immune cells contribute significantly to inflammatory and neuropathic pain.
After nerve injury, peripheral macrophages/spinal microglia accumulate around damaged neurons, producing endogenous hydrogen sulfide (H2S) through the cystathionine-γ-lyase (CSE) enzyme.
H2S has a pronociceptive modulation on the Cav3.
2 subtype, the predominant Cav3 isoform involved in pain processes.
The present review provides relevant information about H2S modulation on the Cav3.
2 T-type channels in neuropathic pain conditions.
We have discussed that the dual effect of H2S on T-type channels is concentration-dependent, that is, an inhibitory effect is seen at low concentrations of 10 µM and an augmentation effect on T-current at 100 µM.
The modulation mechanism of the Cav3.
2 channel by H2S involves the direct participation of the redox/Zn2+ affinity site located in the His191 in the extracellular loop of domain I of the channel, involving a group of extracellular cysteines, comprising C114, C123, C128, and C1333, that can modify the local redox environment.
The indirect interaction pathways involve the regulation of the Cav3.
2 channel through cytokines, kinases, and post-translational regulators of channel expression.
The findings conclude that the CSE/H2S/Cav3.
2 pathway could be a promising therapeutic target for neuropathic pain disorders.
Related Results
Differential Diagnosis of Neurogenic Thoracic Outlet Syndrome: A Review
Differential Diagnosis of Neurogenic Thoracic Outlet Syndrome: A Review
Abstract
Thoracic outlet syndrome (TOS) is a complex and often overlooked condition caused by the compression of neurovascular structures as they pass through the thoracic outlet. ...
Types of Chronic Pain After Total Knee Arthroplasty and Their Relationship with Pain Intensity, Disability, and Quality of Life
Types of Chronic Pain After Total Knee Arthroplasty and Their Relationship with Pain Intensity, Disability, and Quality of Life
OBJECTIVE: To determine the prevalence of different pain mechanisms, including nociplastic pain, and to evaluate the associations of these mechanisms with pain intensity, disabilit...
NLRP3 inflammasome: a key driver of neuroinflammation and a novel therapeutic target for neuropathic pain
NLRP3 inflammasome: a key driver of neuroinflammation and a novel therapeutic target for neuropathic pain
Neuropathic pain represents a serious complication arising from a spectrum of disorders that precipitate lesions within the central and peripheral nervous systems. This disabling p...
Safe Boundaries of High-Temperature Fracturing Fluids
Safe Boundaries of High-Temperature Fracturing Fluids
Abstract
In successful hydraulic fracturing operations, fracturing fluids should possess sufficient viscosity in order to transmit high pumping pressure downhole. Th...
A Chinese Guideline for the Diagnosis and Treatment of Neuropathic Pain
A Chinese Guideline for the Diagnosis and Treatment of Neuropathic Pain
<i>Background</i>: Neuropathic pain refers to pain caused by injury or disease affecting the somatosensory nervous system, which is a common and frequen...
En skvatmølle i Ljørring
En skvatmølle i Ljørring
A Horizontal Mill at Ljørring, Jutland.Horizontal water-mills have been in use in Jutland since the beginning of the Christian era 2). But the one here described shows so close a c...
Burden of Neuropathic Pain in Indian Patients Attending Urban, Specialty Clinics: Results from a Cross Sectional Study
Burden of Neuropathic Pain in Indian Patients Attending Urban, Specialty Clinics: Results from a Cross Sectional Study
▪ AbstractBackground and Objective: Recent studies in Western populations have reported high patient burden of neuropathic pain. No data are currently available on the burden of n...
Classification of Neuropathic Pain
Classification of Neuropathic Pain
Neuropathic pain encompasses a category of chronic pain conditions that are caused by disease or lesion of the somatosensory nervous system. Depending on the location of the lesion...

