Javascript must be enabled to continue!
The Mysteries of Capsaicin-Sensitive Afferents
View through CrossRef
A fundamental subdivision of nociceptive sensory neurons is named after their unique sensitivity to capsaicin, the pungent ingredient in hot chili peppers: these are the capsaicin-sensitive afferents. The initial excitation by capsaicin of these neurons manifested as burning pain sensation is followed by a lasting refractory state, traditionally referred to as “capsaicin desensitization,” during which the previously excited neurons are unresponsive not only to capsaicin but a variety of unrelated stimuli including noxious heat. The long sought-after capsaicin receptor, now known as TRPV1 (transient receptor potential cation channel, subfamily V member 1), was cloned more than two decades ago. The substantial reduction of the inflammatory phenotype of Trpv1 knockout mice has spurred extensive efforts in the pharmaceutical industry to develop small molecule TRPV1 antagonists. However, adverse effects, most importantly hyperthermia and burn injuries, have so far prevented any compounds from progressing beyond Phase 2. There is increasing evidence that these limitations can be at least partially overcome by approaches outside of the mainstream pharmaceutical development, providing novel therapeutic options through TRPV1. Although ablation of the whole TRPV1-expressing nerve population by high dose capsaicin, or more selectively by intersectional genetics, has allowed researchers to investigate the functions of capsaicin-sensitive afferents in health and disease, several “mysteries” remain unsolved to date, including the molecular underpinnings of “capsaicin desensitization,” and the exact role these nerves play in thermoregulation and heat sensation. This review tries to shed some light on these capsaicin mechanisms.
Frontiers Media SA
Title: The Mysteries of Capsaicin-Sensitive Afferents
Description:
A fundamental subdivision of nociceptive sensory neurons is named after their unique sensitivity to capsaicin, the pungent ingredient in hot chili peppers: these are the capsaicin-sensitive afferents.
The initial excitation by capsaicin of these neurons manifested as burning pain sensation is followed by a lasting refractory state, traditionally referred to as “capsaicin desensitization,” during which the previously excited neurons are unresponsive not only to capsaicin but a variety of unrelated stimuli including noxious heat.
The long sought-after capsaicin receptor, now known as TRPV1 (transient receptor potential cation channel, subfamily V member 1), was cloned more than two decades ago.
The substantial reduction of the inflammatory phenotype of Trpv1 knockout mice has spurred extensive efforts in the pharmaceutical industry to develop small molecule TRPV1 antagonists.
However, adverse effects, most importantly hyperthermia and burn injuries, have so far prevented any compounds from progressing beyond Phase 2.
There is increasing evidence that these limitations can be at least partially overcome by approaches outside of the mainstream pharmaceutical development, providing novel therapeutic options through TRPV1.
Although ablation of the whole TRPV1-expressing nerve population by high dose capsaicin, or more selectively by intersectional genetics, has allowed researchers to investigate the functions of capsaicin-sensitive afferents in health and disease, several “mysteries” remain unsolved to date, including the molecular underpinnings of “capsaicin desensitization,” and the exact role these nerves play in thermoregulation and heat sensation.
This review tries to shed some light on these capsaicin mechanisms.
Related Results
Abstract 1591: Capsaicin enhances the effect of radiation in prostate cancer through NFκB suppression.
Abstract 1591: Capsaicin enhances the effect of radiation in prostate cancer through NFκB suppression.
Abstract
Introduction and Objective: Radio-sensitizing agents sensitize cells to the lethal effects of ionizing radiation (IR). This permits use of lower doses of ra...
Abstract 1775: Oncogenic reduction after exposure to capsaicin in oral squamous cell carcinoma
Abstract 1775: Oncogenic reduction after exposure to capsaicin in oral squamous cell carcinoma
Abstract
Background:
Oral Squamous Cell Carcinoma (OSCC) is the sixth most common type of cancer worldwide with an increasing de...
Quality of Reclaimed Domestic Water Irrigated Peppers - NPK Coupling Model and Optimized Combination Solution
Quality of Reclaimed Domestic Water Irrigated Peppers - NPK Coupling Model and Optimized Combination Solution
Focusing on the coupling between the NPK content in Reclaimed domestic water irrigated peppers and capsaicin, a field experiment in the three-factor, five-level quadratic g...
Phytochemical Study of Capsaicinoids Extracted From Indian Varieties of Capsicum Annuum and Quantification of Capsaicin By Chromatographic Methods
Phytochemical Study of Capsaicinoids Extracted From Indian Varieties of Capsicum Annuum and Quantification of Capsaicin By Chromatographic Methods
The flavour and aroma of chillies is because of the presence of capsaicinoids. Among the capsaicinoids, 90% of the pungency is due to the presence of capsaicin (8-methyl-N-vanillyl...
Anticarcinogenic Effects of Capsaicin-Loaded Nanoparticles on In vitro Hepatocellular Carcinoma
Anticarcinogenic Effects of Capsaicin-Loaded Nanoparticles on In vitro Hepatocellular Carcinoma
Background::
Hepatocellular Carcinoma (HCC) is the fifth most frequent cancer worldwide
with a low overall survival due to high metastasis and recurrence rates. The aim of this stu...
Capsaicin: A Two-Decade Systematic Review of Global Research Output and Recent Advances Against Human Cancer
Capsaicin: A Two-Decade Systematic Review of Global Research Output and Recent Advances Against Human Cancer
Capsaicin (8-methyl-N-vanillyl-6-nonenamide) is one of the most important natural products in the genus Capsicum. Due to its numerous biological effects, there has been extensive a...
Capsaicin from <i>Capsicum annuum</i> var. Cayenne: Isolation, GC-MS Analysis, Anticancer Activity on MG63 Osteosarcoma Cells, and <i>In Silico</i> Interaction with 6T2W
Capsaicin from <i>Capsicum annuum</i> var. Cayenne: Isolation, GC-MS Analysis, Anticancer Activity on MG63 Osteosarcoma Cells, and <i>In Silico</i> Interaction with 6T2W
Background: Capsicum annuum (cayenne pepper), a member of the Solanaceae family, is known for its bioactive compounds, particularly capsaicin, which have demonstrated anticancer po...
Direct Effects of Capsaicin on Voltage-Dependent Calcium Channels of Mammalian Skeletal Muscle
Direct Effects of Capsaicin on Voltage-Dependent Calcium Channels of Mammalian Skeletal Muscle
Capsaicin, a naturally occurring polyphenol, is known to affect energy expenditure and muscle fatigue and modulate contractions in skeletal muscle. The L-type Ca2+ channels are kno...

