Jiang Nan, Cooper Brian Y, Nemenov Michael I
Dept. of Oral Surgery, University of Florida, Gainesville, FL, USA.
Proc SPIE Int Soc Opt Eng. 2007 Feb 21;6428. doi: 10.1117/12.699204.
We investigated diode laser (980 nm) evoked activation of transient receptor potential proteins (TRPV1 and TRPV2). C and A-delta (Aδ) nociceptor families are primarily responsible for pain mediation in the peripheral nervous system. TRPV1 proteins have been associated with heat evoked pain in C fibers while Aδ fibers have been associated with TRPV2. Diode laser stimulation allows a margin of safety between non-invasive activation and damage (19, 22, 34). Laser pulses (20-50 ms, 0.1-10 W, 980 nm) were used to stimulate: A) in vitro: excised patches from HEK293 cells expressing TRPV1; B) in vitro: rat DRG nociceptors expressing either TRPV1 or TRPV2; and C) in vivo: C-fibers of the rat saphenous nerve (SN) trunk. Cell currents were recorded using standard patch clamp methods. The SN was also stimulated electrically with bipolar electrodes. Stimulation (20-50 ms) of HEK and DRG cells expressing TRPV1 was highly reproducible. Activation and peak currents were achieved at estimated peak temperatures of 55°C and 70°C. Threshold activation was also observed in DRG neurons expressing TRPV2. The conduction velocity for laser-activated saphenous nerve afferents was in the C fiber range (0.5-1 m/s). Electrically stimulated nerve contained stimulation artifacts and complex neural components with conduction velocities ranging from 0.3-30 m/s. Diode laser activation of TRPV1 protein is a reproducible and effective means to probe TRP activity in both in vivo and in vitro preparations.
我们研究了二极管激光(980纳米)诱发的瞬时受体电位蛋白(TRPV1和TRPV2)激活情况。C类和A-δ(Aδ)伤害性感受器家族主要负责外周神经系统中的疼痛传导。TRPV1蛋白与C纤维中的热诱发疼痛有关,而Aδ纤维与TRPV2有关。二极管激光刺激在非侵入性激活和损伤之间提供了一定的安全边际(19、22、34)。使用激光脉冲(20 - 50毫秒,0.1 - 10瓦,980纳米)进行刺激:A)体外:对表达TRPV1的HEK293细胞的切除膜片进行刺激;B)体外:对表达TRPV1或TRPV2的大鼠背根神经节(DRG)伤害性感受器进行刺激;C)体内:对大鼠隐神经(SN)干的C纤维进行刺激。使用标准膜片钳方法记录细胞电流。还使用双极电极对SN进行电刺激。对表达TRPV1的HEK和DRG细胞进行刺激(20 - 50毫秒)具有高度可重复性。在估计峰值温度为55°C和70°C时实现了激活和峰值电流。在表达TRPV2的DRG神经元中也观察到了阈值激活。激光激活的隐神经传入纤维的传导速度在C纤维范围内(0.5 - 1米/秒)。电刺激的神经包含刺激伪迹和传导速度范围为0.3 - 30米/秒的复杂神经成分。二极管激光激活TRPV1蛋白是一种在体内和体外制剂中探测TRP活性的可重复且有效的方法。