Canpolat Sinan, Ozcan Mete, Saral Sinan, Kalkan Omer Faruk, Ayar Ahmet
a Department of Physiology , Faculty of Medicine, Firat University , Elazig , Turkey .
b Department of Biophysics , Faculty of Medicine, Firat University , Elazig , Turkey , and.
J Recept Signal Transduct Res. 2016;36(3):243-7. doi: 10.3109/10799893.2015.1080274. Epub 2015 Oct 13.
Apelin-13 is an endogenous peptide with potential analgesic action, although the sites of its analgesic effects remain uncertain and the results are even controversial with regard to its pain modulating action. This study evaluated the possible pain-modulating action of peripherally administered apelin-13 using heat-induced, withdrawal latency to the thermal stimuli, acute pain model in mice. Involvement of peripheral mechanisms was tested, by using the intracellular calcium concentrations as a key signal for nociceptive transmission, in cultured rat dorsal root ganglion (DRG) neurons.
DRG neurons were cultured on glass coverslips following enzymatic digestion and mechanical agitation, and loaded with the calcium-sensitive dye Fura-2 acetoxymethyl ester (1 µM). Intracellular calcium responses in individual DRG neurons were quantified by ratiometric calcium imaging technique.
Peripheral injection of a single dose of apelin-13 (100 mg/kg and 300 mg/kg) significantly decreases the latency to painful stimuli in a dose and time-dependent manner (p < 0.01, p < 0.05, respectively, n = 8 each). Apelin-13 (0.1 µM and 1 µM) did not produce a significant effect on cytoplasmic Ca(2+) (Ca(2+)) responses, evoked by membrane depolarization, in cultured rat DRG neurons.
Together these results indicate that apelin-13 can cause increased pain sensitivity after peripheral administration, but this effect does not involve calcium mediated signaling in primary sensory neurons.
Apelin-13是一种具有潜在镇痛作用的内源性肽,尽管其镇痛作用位点尚不确定,且关于其疼痛调节作用的结果甚至存在争议。本研究使用热诱导的小鼠急性疼痛模型,通过测量对热刺激的撤腿潜伏期,评估外周给予apelin-13可能的疼痛调节作用。通过使用细胞内钙浓度作为伤害性感受传递的关键信号,在培养的大鼠背根神经节(DRG)神经元中测试外周机制的参与情况。
酶消化和机械搅拌后,将DRG神经元培养在玻璃盖玻片上,并用钙敏染料Fura-2乙酰甲酯(1μM)加载。通过比率钙成像技术对单个DRG神经元中的细胞内钙反应进行定量。
外周注射单剂量的apelin-13(100mg/kg和300mg/kg)以剂量和时间依赖性方式显著缩短了对疼痛刺激的潜伏期(分别为p<0.01,p<0.05,每组n = 8)。Apelin-13(0.1μM和1μM)对培养的大鼠DRG神经元中由膜去极化诱发的细胞质Ca(2+)([Ca(2+)]i)反应没有显著影响。
这些结果共同表明,外周给予apelin-13后可导致疼痛敏感性增加,但这种作用不涉及初级感觉神经元中的钙介导信号传导。