Activation and desensitization of TRPV1 channels in sensory neurons by the PPARα agonist palmitoylethanolamide

被引:122
作者
Ambrosino, Paolo [1 ]
Soldovieri, Maria Virginia [1 ]
Russo, Claudio [1 ]
Taglialatela, Maurizio [1 ,2 ]
机构
[1] Univ Molise, Dept Med & Hlth Sci, I-86100 Campobasso, Italy
[2] Univ Naples Federico II, Dept Neurosci, Div Pharmacol, Naples, Italy
关键词
palmitoylethanolamide; transient receptor potential vanilloid type-1 channels; PPAR transcription factor; bradykinin; capsaicin; intracellular calcium concentrations; pain; HUMAN VANILLOID RECEPTORS; ROOT GANGLION NEURONS; CANNABINOID RECEPTOR; CELL-LINE; N-PALMITOYLETHANOLAMIDE; CA2+ INFLUX; ANANDAMIDE; CALCIUM; CAPSAICIN; IDENTIFICATION;
D O I
10.1111/bph.12029
中图分类号
R9 [药学];
学科分类号
100702 [药剂学];
摘要
Background and Purpose Palmitoylethanolamide (PEA) is an endogenous fatty acid amide displaying anti-inflammatory and analgesic actions. To investigate the molecular mechanism responsible for these effects, the ability of PEA and of pain-inducing stimuli such as capsaicin (CAP) or bradykinin (BK) to influence intracellular calcium concentrations ([Ca2+]i) in peripheral sensory neurons, has been assessed in the present study. The potential involvement of the transcription factor PPAR and of TRPV1 channels in PEA-induced effects was also studied. Experimental Approach [Ca2+]i was evaluated by single-cell microfluorimetry in differentiated F11 cells. Activation of TRPV1 channels was assessed by imaging and patch-clamp techniques in CHO cells transiently-transfected with rat TRPV1 cDNA. Key Results In F11 cells, PEA (130M) dose-dependently increased [Ca2+]i. The TRPV1 antagonists capsazepine (1M) and SB-366791 (1M), as well as the PPAR antagonist GW-6471 (10M), inhibited PEA-induced [Ca2+]i increase; blockers of cannabinoid receptors were ineffective. PEA activated TRPV1 channels heterologously expressed in CHO cells; this effect appeared to be mediated at least in part by PPAR. When compared with CAP, PEA showed similar potency and lower efficacy, and caused stronger TRPV1 currents desensitization. Sub-effective PEA concentrations, closer to those found in vivo, counteracted CAP- and BK-induced [Ca2+]i transients, as well as CAP-induced TRPV1 activation. Conclusions and Implications Activation of PPAR and TRPV1 channels, rather than of cannabinoid receptors, largely mediate PEA-induced [Ca2+]i transients in sensory neurons. Differential TRPV1 activation and desensitization by CAP and PEA might contribute to their distinct pharmacological profile, possibly translating into potentially relevant clinical differences.
引用
收藏
页码:1430 / 1444
页数:15
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