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Gut
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February 19, 2016
α-Conotoxin Vc1.1 inhibits human dorsal root ganglion neuroexcitability and mouse colonic nociception via GABA<sub>B</sub> receptors
Joel Castro, Andrea M Harrington, Sonia Garcia-Caraballo, et al.
Journal of Medicinal Chemistry
|
June 24, 2021
Design of a Stable Cyclic Peptide Analgesic Derived from Sunflower Seeds that Targets the κ-Opioid Receptor for the Treatment of Chronic Abdominal Pain
Edin Muratspahić, Nataša Tomašević, Johannes Koehbach, et al.
ACS Chemical Biology
|
May 11, 2018
Structure-Activity Studies Reveal the Molecular Basis for GABA<sub>B</sub>-Receptor Mediated Inhibition of High Voltage-Activated Calcium Channels by α-Conotoxin Vc1.1
Mahsa Sadeghi, Bodil B Carstens, Brid P Callaghan, et al.
Nature Communications
|
January 31, 2014
Selenoether oxytocin analogues have analgesic properties in a mouse model of chronic abdominal pain
Aline Dantas de Araujo, Mehdi Mobli, Joel Castro, et al.
Nature
|
February 12, 2025
Topological segregation of stress sensors along the gut crypt-villus axis
Kouki K Touhara, Nathan D Rossen, Fei Deng, et al.
British Journal of Pharmacology
|
March 27, 2018
Co-expression of μ and δ opioid receptors by mouse colonic nociceptors
Raquel Guerrero-Alba, Eduardo Emmanuel Valdez-Morales, Nestor Nivardo Jiménez-Vargas, et al.
British Journal of Pharmacology
|
December 2, 2017
Cyclic analogues of α-conotoxin Vc1.1 inhibit colonic nociceptors and provide analgesia in a mouse model of chronic abdominal pain
Joel Castro, Luke Grundy, Annemie Deiteren, et al.
The Journal of Physiology
|
May 16, 2019
Na<sub>V</sub> 1.6 regulates excitability of mechanosensitive sensory neurons
Mathilde R Israel, Brian S Tanaka, Joel Castro, et al.
Gut
|
November 14, 2015
Apelin targets gut contraction to control glucose metabolism via the brain
Audren Fournel, Anne Drougard, Thibaut Duparc, et al.
Gut
|
July 7, 2012
Sensory neuro-immune interactions differ between irritable bowel syndrome subtypes
Patrick A Hughes, Andrea M Harrington, Joel Castro, et al.
Page
of 7
Search research articles
Search
Showing results (41-50 of 63) with videos related to
Sort By:
Page
of 7
Gut
|
February 19, 2016
α-Conotoxin Vc1.1 inhibits human dorsal root ganglion neuroexcitability and mouse colonic nociception via GABA<sub>B</sub> receptors
Joel Castro, Andrea M Harrington, Sonia Garcia-Caraballo, et al.
Journal of Medicinal Chemistry
|
June 24, 2021
Design of a Stable Cyclic Peptide Analgesic Derived from Sunflower Seeds that Targets the κ-Opioid Receptor for the Treatment of Chronic Abdominal Pain
Edin Muratspahić, Nataša Tomašević, Johannes Koehbach, et al.
ACS Chemical Biology
|
May 11, 2018
Structure-Activity Studies Reveal the Molecular Basis for GABA<sub>B</sub>-Receptor Mediated Inhibition of High Voltage-Activated Calcium Channels by α-Conotoxin Vc1.1
Mahsa Sadeghi, Bodil B Carstens, Brid P Callaghan, et al.
Nature Communications
|
January 31, 2014
Selenoether oxytocin analogues have analgesic properties in a mouse model of chronic abdominal pain
Aline Dantas de Araujo, Mehdi Mobli, Joel Castro, et al.
Nature
|
February 12, 2025
Topological segregation of stress sensors along the gut crypt-villus axis
Kouki K Touhara, Nathan D Rossen, Fei Deng, et al.
British Journal of Pharmacology
|
March 27, 2018
Co-expression of μ and δ opioid receptors by mouse colonic nociceptors
Raquel Guerrero-Alba, Eduardo Emmanuel Valdez-Morales, Nestor Nivardo Jiménez-Vargas, et al.
British Journal of Pharmacology
|
December 2, 2017
Cyclic analogues of α-conotoxin Vc1.1 inhibit colonic nociceptors and provide analgesia in a mouse model of chronic abdominal pain
Joel Castro, Luke Grundy, Annemie Deiteren, et al.
The Journal of Physiology
|
May 16, 2019
Na<sub>V</sub> 1.6 regulates excitability of mechanosensitive sensory neurons
Mathilde R Israel, Brian S Tanaka, Joel Castro, et al.
Gut
|
November 14, 2015
Apelin targets gut contraction to control glucose metabolism via the brain
Audren Fournel, Anne Drougard, Thibaut Duparc, et al.
Gut
|
July 7, 2012
Sensory neuro-immune interactions differ between irritable bowel syndrome subtypes
Patrick A Hughes, Andrea M Harrington, Joel Castro, et al.
Page
of 7