Macrophages and Schwann cell TRPA1 mediate chronic allodynia in a mouse model of complex regional pain syndrome type I

被引:50
作者
De Logu, Francesco [1 ]
De Pra, Samira Dal-Toe [2 ]
de David Antoniazzi, Caren Tatiane [3 ]
Kudsi, Sabrina Qader [3 ]
Ferro, Paula Ronsani [2 ]
Landini, Lorenzo [1 ]
Rigo, Flavia Karine [2 ]
Silveira, Gustavo de Bem [2 ]
Lock Silveira, Paulo Cesar [2 ]
Oliveira, Sara Marchesan [4 ]
Marini, Matilde [1 ]
Mattei, Gianluca [5 ]
Ferreira, Juliano [6 ]
Geppetti, Pierangelo [1 ]
Nassinia, Romina [1 ]
Trevisan, Gabriela [1 ,2 ,3 ]
机构
[1] Univ Florence, Dept Hlth Sci, I-50139 Florence, Italy
[2] Univ Extreme South Santa Catarina Unesc, Grad Program Hlth Sci, BR-88006000 Criciuma, SC, Brazil
[3] Fed Univ Santa Maria UFSM, Grad Program Pharmacol, Ave Roraima 1000,Bldg 21,Room 5207, BR-97105900 Santa Maria, RS, Brazil
[4] Fed Univ Santa Maria UFSM, Grad Program Biol Sci Toxicol Biochem, BR-97105900 Santa Maria, RS, Brazil
[5] Univ Florence, Dept Informat Engn, I-50139 Florence, Italy
[6] Univ Fed Santa Catarina, Grad Program Pharmacol, BR-88040900 Florianopolis, SC, Brazil
基金
欧洲研究理事会;
关键词
Macrophage; Nociception; Schwann cells; HC-030031; A-967079; 4-HNE; Allodynia; REFLEX SYMPATHETIC DYSTROPHY; INDUCED OXIDATIVE STRESS; VITAMIN-C; NEUROPATHIC PAIN; REPERFUSION; ISCHEMIA/REPERFUSION; ACTIVATION; FRACTURES; MECHANISM;
D O I
10.1016/j.bbi.2020.04.037
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Complex regional pain syndrome type I (CRPS-I) is characterized by intractable chronic pain. Poor understanding of the underlying mechanisms of CRPS-I accounts for the current unsatisfactory treatment. Antioxidants and antagonists of the oxidative stress-sensitive channel, the transient receptor potential ankyrin 1 (TRPA1), have been found to attenuate acute nociception and delayed allodynia in models of CRPS-I, evoked by ischemia and reperfusion (I/R) of rodent hind limb (chronic post ischemia pain, CPIP). However, it is unknown how I/R may lead to chronic pain mediated by TRPA1. Here, we report that the prolonged (day 1-15) mechanical and cold allodynia in the hind limb of CPIP mice was attenuated permanently in Trpa1(-/-) mice and transiently after administration of TRPA1 antagonists (A-967079 and HC-030031) or an antioxidant (alpha-lipoic acid). Indomethacin treatment was, however, ineffective. We also found that I/R increased macrophage (F4/80(+) cell) number and oxidative stress markers, including 4-hydroxynonenal (4-HNE), in the injured tibial nerve. Macrophage-deleted MaFIA (Macrophage Fas-Induced Apoptosis) mice did not show I/R-evoked endoneurial cell infiltration, increased 4-HNE and mechanical and cold allodynia. Furthermore, Trpa1(-/-) mice did not show any increase in macrophage number and 4-HNE in the injured nerve trunk. Notably, in mice with selective deletion of Schwann cell TRPA1 (Plp1-Cre(ERT);Trpa1(fl/fl) mice), increases in macrophage infiltration, 4-HNE and mechanical and cold allodynia were attenuated. In the present mouse model of CRPS-I, we propose that the initial oxidative stress burst that follows reperfusion activates a feed forward mechanism that entails resident macrophages and Schwann cell TRPA1 of the injured tibial nerve to sustain chronic neuroinflammation and allodynia. Repeated treatment one hour before and for 3 days after I/R with a TRPA1 antagonist permanently protected CPIP mice against neuroinflammation and allodynia, indicating possible novel therapeutic strategies for CRPS-I.
引用
收藏
页码:535 / 546
页数:12
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