AIMS: Endothelin-1 (ET-1) has been suggested to be involved in different types of pain due to its neuromodulatory nature. However, its role in inflammatory pain processing, specifically the origin-specific effect, has not yet been clearly defined. Therefore, the aim of this study is to determine the role of cell-type specific ET-1 induction in the modulation of inflammatory pain processing. MAIN METHODS: The current study assesses the effects of ET-1 over-expression specifically targeted to astrocytes (GET-1) or endothelial cells (TET-1) on the expression of pain-like behaviors induced by a model of inflammatory pain, consisting of a formalin injection into the hind paw. KEY FINDINGS: The baseline sensitivity thresholds of GET-1 and TET-1 mice to the response elicited by tactile and radiant heat stimulation were similar to those observed in age-matched non-transgenic (NTg) controls. Relative to the NTg controls, GET-1 mice displayed a marked decrease in pain-like behavioral responses during the second phase of formalin-induced pain (i.e., 15-20 min after injection), whereas the responses elicited in TET-1 mice were unaltered. The levels of mRNA encoding adrenomedullin, calcitonin gene-related peptide and calcitonin-like receptor were elevated in the spinal cord of saline-injected GET-1 mice compared to those of NTg mice. SIGNIFICANCE: The current results support a suppressor role for astrocyte-derived ET-1 in inflammatory pain and suggest that the study of GET-1 mice might provide mechanistic insights for improving the treatment of inflammatory pain.
AIMS: Endothelin-1 (ET-1) has been suggested to be involved in different types of pain due to its neuromodulatory nature. However, its role in inflammatory pain processing, specifically the origin-specific effect, has not yet been clearly defined. Therefore, the aim of this study is to determine the role of cell-type specific ET-1 induction in the modulation of inflammatory pain processing. MAIN METHODS: The current study assesses the effects of ET-1 over-expression specifically targeted to astrocytes (GET-1) or endothelial cells (TET-1) on the expression of pain-like behaviors induced by a model of inflammatory pain, consisting of a formalin injection into the hind paw. KEY FINDINGS: The baseline sensitivity thresholds of GET-1 and TET-1mice to the response elicited by tactile and radiant heat stimulation were similar to those observed in age-matched non-transgenic (NTg) controls. Relative to the NTg controls, GET-1mice displayed a marked decrease in pain-like behavioral responses during the second phase of formalin-induced pain (i.e., 15-20 min after injection), whereas the responses elicited in TET-1mice were unaltered. The levels of mRNA encoding adrenomedullin, calcitonin gene-related peptide and calcitonin-like receptor were elevated in the spinal cord of saline-injected GET-1mice compared to those of NTgmice. SIGNIFICANCE: The current results support a suppressor role for astrocyte-derived ET-1 in inflammatory pain and suggest that the study of GET-1mice might provide mechanistic insights for improving the treatment of inflammatory pain.
Authors: Renata Bessa Pontes; Mario Roberto Pontes Lisboa; Anamaria Falcão Pereira; Juliana Arcanjo Lino; Francisco Fábio Bezerra de Oliveira; Aline Kelly Viana de Mesquita; Bruno Wesley de Freitas Alves; Roberto César Pereira Lima-Júnior; Mariana Lima Vale Journal: Neurotox Res Date: 2019-06-21 Impact factor: 3.911
Authors: Victor K L Hung; Lydia W Tai; Xin Luo; Xiao Min Wang; Sookja K Chung; Chi Wai Cheung Journal: J Mol Neurosci Date: 2015-05-21 Impact factor: 3.444
Authors: Karla G G Serafim; Suelen A Navarro; Ana C Zarpelon; Felipe A Pinho-Ribeiro; Victor Fattori; Thiago M Cunha; Jose C Alves-Filho; Fernando Q Cunha; Rubia Casagrande; Waldiceu A Verri Journal: Naunyn Schmiedebergs Arch Pharmacol Date: 2015-08-06 Impact factor: 3.000
Authors: Anthony P Davenport; Kelly A Hyndman; Neeraj Dhaun; Christopher Southan; Donald E Kohan; Jennifer S Pollock; David M Pollock; David J Webb; Janet J Maguire Journal: Pharmacol Rev Date: 2016-04 Impact factor: 25.468
Authors: Beatrice Mihaela Radu; Placido Bramanti; Francesco Osculati; Maria-Luisa Flonta; Mihai Radu; Giuseppe Bertini; Paolo Francesco Fabene Journal: Mediators Inflamm Date: 2013-06-05 Impact factor: 4.711