School of Pharmacy, University of East Anglia, Norwich, NR4 7TJ, UK.
AstraZeneca, Alderley Park, Macclesfield, SK10 4TF, UK.
Arch Toxicol. 2019 Mar;93(3):659-671. doi: 10.1007/s00204-018-2376-8. Epub 2019 Jan 8.
Cyclin-dependent kinases (CDKs) are a family of kinases associated predominantly with cell cycle control, making CDK inhibitors interesting candidates for anti-cancer therapeutics. However, retinal toxicity (loss of photoreceptors) has been associated with CDK inhibitors, including the pan-CDK inhibitor AG-012896. The purpose of this research was to use a novel planar sectioning technique to determine CDK expression profiles in the ex vivo human retina with the aim of identifying isoforms responsible for CDK retinotoxicity. Four CDK isoforms (CDK11, 16, 17 and 18) were selected as a result of IC data comparing neurotoxic (AG-012986 and NVP-1) and non-neurotoxic (dinaciclib and NVP-2) CDK inhibitors, with ICs at CDK11 showing a clear difference between the neurotoxic and non-neurotoxic drugs. CDK11 was maximally expressed in the photoreceptor layer, whereas CDK16, 17 and 18 showed maximal expression in the inner nuclear layer. CDK5 (an isoform associated with retinal homeostasis) was maximally expressed in the retinal ganglion cell layer. Apart from CDK18, each isoform showed expression in the photoreceptor layer. The human Müller cell line MIO-M1 expressed CDK5, 11, 16 and 17 and AG-01298 (0.02-60 µM) caused a dose-dependent increase in MIO-M1 cell death. In conclusion, CDK11 appears the most likely candidate for mediation of photoreceptor toxicity. RNA profiling can be used to determine the distribution of genes of interest in relation to retinal toxicity in the human retina.
细胞周期蛋白依赖性激酶 (CDKs) 是一组与细胞周期控制密切相关的激酶,使 CDK 抑制剂成为有前途的抗癌治疗药物。然而,视网膜毒性(光感受器丧失)与 CDK 抑制剂有关,包括泛 CDK 抑制剂 AG-012896。本研究旨在使用新型平面切片技术确定离体人视网膜中的 CDK 表达谱,目的是确定导致 CDK 视网膜毒性的同工型。由于 IC 数据比较了神经毒性(AG-012986 和 NVP-1)和非神经毒性(dinaciclib 和 NVP-2)的 CDK 抑制剂,因此选择了四个 CDK 同工型(CDK11、16、17 和 18),结果表明神经毒性和非神经毒性药物之间的 IC 在 CDK11 上存在明显差异。CDK11 在光感受器层中表达最高,而 CDK16、17 和 18 在内核层中表达最高。CDK5(与视网膜内稳态相关的同工型)在视网膜神经节细胞层中表达最高。除了 CDK18 之外,每个同工型在光感受器层中均有表达。人 Müller 细胞系 MIO-M1 表达 CDK5、11、16 和 17,并且 AG-01298(0.02-60 μM)导致 MIO-M1 细胞死亡呈剂量依赖性增加。总之,CDK11 似乎是介导光感受器毒性的最可能候选者。RNA 谱分析可用于确定与人类视网膜毒性相关的感兴趣基因的分布。