Monroe Jerry D, Millay Matthew H, Patty Blaine G, Smith Michael E
Department of Biology, Western Kentucky University, 1906 College Heights Boulevard, #11080, Bowling Green, KY 42101-1080, United States.
Department of Biology, Western Kentucky University, 1906 College Heights Boulevard, #11080, Bowling Green, KY 42101-1080, United States.
J Clin Neurosci. 2018 Nov;57:152-156. doi: 10.1016/j.jocn.2018.09.002. Epub 2018 Sep 20.
Cisplatin is a widely used chemotherapy drug that can damage auditory and vestibular tissue and cause hearing and balance loss through the intracellular release of reactive oxygen species (ROS). Curcumin has anticancer efficacy and can also counteract cisplatin's damaging effect against sensory tissue by scavenging intracellular ROS, but curcumin's applicability is limited due to its low bioavailability. EF-24 is a synthetic curcumin analog that is more bioavailable than curcumin and can target cancer, but its effects against cisplatin-mediated ROS in auditory and vestibular tissue is currently unknown. In this study, we employed a novel zebrafish inner ear tissue culture system to determine if EF-24 counteracted cisplatin-mediated ROS release in two sensory endorgans, the saccule and the utricle. The zebrafish saccule is associated with auditory function and the utricle with vestibular function. Trimmed endorgans were placed in tissue culture media with a fluorescent reactive oxygen species indicator dye, and intracellular ROS release was measured using a spectrophotometer. We found that cisplatin treatment significantly increased ROS compared to controls, but that EF-24 treatment did not alter or even decreased ROS. Importantly, when equimolar cisplatin and EF-24 treatments are combined, ROS did not increase compared to controls. This suggests that EF-24 may be able to prevent intracellular ROS caused by cisplatin treatment in inner ear tissue.
顺铂是一种广泛使用的化疗药物,它可损害听觉和前庭组织,并通过细胞内活性氧(ROS)的释放导致听力和平衡丧失。姜黄素具有抗癌功效,还可通过清除细胞内ROS来抵消顺铂对感觉组织的损害作用,但由于其低生物利用度,姜黄素的适用性受到限制。EF-24是一种合成的姜黄素类似物,其生物利用度比姜黄素更高,且可靶向癌症,但目前尚不清楚其对顺铂介导的听觉和前庭组织中的ROS的影响。在本研究中,我们采用了一种新型斑马鱼内耳组织培养系统,以确定EF-24是否能抵消顺铂介导的在两个感觉终器即球囊和椭圆囊中的ROS释放。斑马鱼球囊与听觉功能相关,椭圆囊与前庭功能相关。将修剪后的终器置于含有荧光活性氧指示剂染料的组织培养基中,并使用分光光度计测量细胞内ROS释放。我们发现,与对照组相比,顺铂处理显著增加了ROS,但EF-24处理并未改变甚至降低了ROS。重要的是,当等摩尔的顺铂和EF-24联合处理时,与对照组相比ROS并未增加。这表明EF-24可能能够预防顺铂处理在内耳组织中引起的细胞内ROS。