Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Trigeminal Nociceptors Express Prostaglandin Receptors

View through CrossRef
Orofacial inflammation is associated with prostaglandin release and the sensitization of nociceptive receptors such as the transient receptor potential subtype V 1 (TRPV 1 ). We hypothesized that certain PGE 2 receptor subtypes (EP1–EP4) are co-expressed with TRPV 1 in trigeminal nociceptors and sensitize responses to a TRPV 1 agonist, capsaicin. Accordingly, combined in situ hybridization was performed with immunohistochemistry on rat trigeminal ganglia. We next evaluated the effects of specific EP2 and EP3 agonists (butaprost and sulprostone) in cultured trigeminal ganglia neurons. The results showed that EP2 and EP3 are expressed in trigeminal neurons (58% and 53% of total neurons, respectively) and are co-expressed in TRPV 1 -positive neurons (64% and 67 % of TRPV 1 -positive neurons, respectively). Moreover, most of the cells expressing EP2 or EP3 mRNA were of small to medium diameter (< 30 μm). The application of butaprost and sulprostone triggered neuropeptide exocytosis, and butaprost sensitized capsaicin responses. Analysis of these data, collectively, supports the hypothesis that prostaglandins regulate trigeminal TRPV 1 nociceptors via activation of the EP2 and EP3 receptors.
Title: Trigeminal Nociceptors Express Prostaglandin Receptors
Description:
Orofacial inflammation is associated with prostaglandin release and the sensitization of nociceptive receptors such as the transient receptor potential subtype V 1 (TRPV 1 ).
We hypothesized that certain PGE 2 receptor subtypes (EP1–EP4) are co-expressed with TRPV 1 in trigeminal nociceptors and sensitize responses to a TRPV 1 agonist, capsaicin.
Accordingly, combined in situ hybridization was performed with immunohistochemistry on rat trigeminal ganglia.
We next evaluated the effects of specific EP2 and EP3 agonists (butaprost and sulprostone) in cultured trigeminal ganglia neurons.
The results showed that EP2 and EP3 are expressed in trigeminal neurons (58% and 53% of total neurons, respectively) and are co-expressed in TRPV 1 -positive neurons (64% and 67 % of TRPV 1 -positive neurons, respectively).
Moreover, most of the cells expressing EP2 or EP3 mRNA were of small to medium diameter (< 30 μm).
The application of butaprost and sulprostone triggered neuropeptide exocytosis, and butaprost sensitized capsaicin responses.
Analysis of these data, collectively, supports the hypothesis that prostaglandins regulate trigeminal TRPV 1 nociceptors via activation of the EP2 and EP3 receptors.

Related Results

Quantifying peripheral modulation of olfaction by trigeminal agonists
Quantifying peripheral modulation of olfaction by trigeminal agonists
Abstract In the mammalian nose, two chemosensory systems, the trigeminal and the olfactory mediate the detection of volatile chemicals. Most odor...
Hubungan prostaglandin terhadap kejadian premenstrual syndrome (PMS) pada remaja putri
Hubungan prostaglandin terhadap kejadian premenstrual syndrome (PMS) pada remaja putri
Background: Young women and middle-aged women during the luteal phase of the menstrual cycle will experience emotional and physical  problems called premenstrual syndrome (PMS).Pur...
BMP Signaling Downstream of the Highwire E3 Ligase Sensitizes Nociceptors
BMP Signaling Downstream of the Highwire E3 Ligase Sensitizes Nociceptors
AbstractA comprehensive understanding of the molecular machinery important for nociception is essential to improving the treatment of pain. Here, we show that the BMP signaling pat...
Anatomical Variations of the Trigeminal Nerve, Trigeminal Ganglion and Foramen Ovale: A Systematic Review
Anatomical Variations of the Trigeminal Nerve, Trigeminal Ganglion and Foramen Ovale: A Systematic Review
Introduction: The trigeminal nerve is principally responsible for controlling the sensory modalities of the face. The Foramen Ovale (FO) is one of the apertures present in the skul...
Trigeminal Nerve Morphology in Alligator mississippiensis and Its Significance for Crocodyliform Facial Sensation and Evolution
Trigeminal Nerve Morphology in Alligator mississippiensis and Its Significance for Crocodyliform Facial Sensation and Evolution
Modern crocodylians possess a derived sense of face touch, in which numerous trigeminal nerve‐innervated dome pressure receptors speckle the face and mandible and sense mechanical ...
An Approach of Trigeminal Neuralgia for General Practitioner: A Literature Review
An Approach of Trigeminal Neuralgia for General Practitioner: A Literature Review
Abstract: Trigeminal neuralgia is a chronic neuropathic pain of the face caused by the dysfunction of the fifth cranial nerve (trigeminal). The characteristics of the pain are desc...
Neural Processing of Pain and Itch
Neural Processing of Pain and Itch
Abstract Pain is defined as “An unpleasant sensory and emotional experience associated with, or resembling that associated with, actual or potential tissue damage...

Back to Top