Benammi Hind, Erazi Hasna, El Hiba Omar, Vinay Laurent, Bras Hélène, Viemari Jean-Charles, Gamrani Halima
Neuroscience, Pharmacology and Environment Team, faculty of Science Semlalia, Cadi Ayyad University, Marrakech, Morocco.
Department of Biology, faculty of Sciences, Chouaib Doukkali University, EL Jadida, Morocco.
PLoS One. 2017 Mar 7;12(3):e0172715. doi: 10.1371/journal.pone.0172715. eCollection 2017.
Lead poisoning is one of the most significant health problem of environmental origin. It is known to cause different damages in the central and peripheral nervous system which could be represented by several neurophysiological and behavioral symptoms. In this study we firstly investigated the effect of lead prenatal exposure in rats to (3g/L), from neonatal to young age, on the motor/sensory performances, excitability of the spinal cord and gaits during development. Then we evaluated neuroprotective effects of curcumin I (Cur I) against lead neurotoxicity, by means of grasping and cliff avoidance tests to reveal the impairment of the sensorimotor functions in neonatal rats exposed prenatally to lead. In addition, extracellular recordings of motor output in spinal cord revealed an hyper-excitability of spinal networks in lead treated rats. The frequency of induced fictive locomotion was also increased in treated rats. At the young age, rats exhibited an impaired locomotor gait. All those abnormalities were attenuated by Cur I treatment at a dose of 16g/kg. Based on our finding, Cur I has shown features of a potent chemical compound able to restore the neuronal and the relative locomotor behaviors disturbances induced by lead intoxication. Therefore, this chemical can be recommended as a new therapeutic trial against lead induced neurotoxicity.
铅中毒是最重要的环境源性健康问题之一。已知它会对中枢和外周神经系统造成不同损害,这可表现为多种神经生理和行为症状。在本研究中,我们首先研究了从新生期到幼年,大鼠产前暴露于3克/升铅对其运动/感觉性能、脊髓兴奋性和发育过程中步态的影响。然后,我们通过抓握和避崖试验评估姜黄素I(Cur I)对铅神经毒性的神经保护作用,以揭示产前暴露于铅的新生大鼠感觉运动功能的损害。此外,脊髓运动输出的细胞外记录显示,铅处理的大鼠脊髓网络兴奋性过高。处理组大鼠诱发的虚拟运动频率也增加。在幼年时,大鼠表现出运动步态受损。所有这些异常在给予16克/千克剂量的Cur I治疗后均得到缓解。基于我们的发现,Cur I已显示出一种强效化合物的特性,能够恢复铅中毒引起的神经元及相关运动行为障碍。因此,这种化合物可作为针对铅诱导神经毒性的新治疗试验药物被推荐。