A novel preventive therapy for paclitaxel-induced cognitive deficits: preclinical evidence from C57BL/6 mice

被引:51
作者
Huehnchen, P. [1 ,2 ,3 ,4 ,5 ,6 ]
Boehmerle, W. [1 ,2 ,3 ,4 ,5 ,6 ]
Springer, A. [7 ]
Freyer, D. [1 ,2 ,3 ,4 ,8 ]
Endres, M. [1 ,2 ,3 ,4 ,5 ,6 ,8 ,9 ,10 ]
机构
[1] Charite, Berlin, Germany
[2] Free Univ Berlin, Berlin, Germany
[3] Humboldt Univ, Berlin, Germany
[4] Berlin Inst Hlth, Klin & Hochschulambulanz Neurol, Berlin, Germany
[5] Berlin Inst Hlth, Neurocure Cluster Excellence, Berlin, Germany
[6] BIH, Berlin, Germany
[7] Free Univ Berlin, Grossgeratezentrum BioSupraMol, Dept Biol Chem & Pharm, Inst Chem & Biochem, Berlin, Germany
[8] Berlin Inst Hlth, Ctr Stroke Res Berlin, Berlin, Germany
[9] German Ctr Neurodegenerat Dis DZNE, Berlin, Germany
[10] DZHK German Ctr Cardiovasc Res, Partner Site Berlin, Berlin, Germany
来源
TRANSLATIONAL PSYCHIATRY | 2017年 / 7卷
关键词
BLOOD-BRAIN-BARRIER; TRANSIENT ENCEPHALOPATHY; HIPPOCAMPAL-NEURONS; MOUSE MODEL; IN-VITRO; CHEMOTHERAPY; LITHIUM; CANCER; CHEMOBRAIN; INHIBITION;
D O I
10.1038/tp.2017.149
中图分类号
R749 [精神病学];
学科分类号
100205 ;
摘要
Chemotherapy-induced central nervous system (CNS) neurotoxicity presents an unmet medical need. Patients often report a cognitive decline in temporal correlation to chemotherapy, particularly for hippocampus-dependent verbal and visuo-spatial abilities. We treated adult C57Bl/6 mice with 12 x 20 mg kg(-1) paclitaxel (PTX), mimicking clinical conditions of dose-dense chemotherapy, followed by a pulse of bromodesoxyuridine (BrdU) to label dividing cells. In this model, mice developed visuo-spatial memory impairments, and we measured peak PTX concentrations in the hippocampus of 230 nM l(-1), which was sevenfold higher compared with the neocortex. Histologic analysis revealed a reduced hippocampal cell proliferation. In vitro, we observed severe toxicity in slowly proliferating neural stem cells (NSC) as well as human neuronal progenitor cells after 2 h exposure to low nanomolar concentrations of PTX. In comparison, mature post-mitotic hippocampal neurons and cell lines of malignant cells were less vulnerable. In PTX-treated NSC, we observed an increase of intracellular calcium levels, as well as an increased activity of calpain-and caspase 3/7, suggesting a calcium-dependent mechanism. This cell death pathway could be specifically inhibited with lithium, but not glycogen synthase kinase 3 inhibitors, which protected NSC in vitro. In vivo, preemptive treatment of mice with lithium prevented PTX-induced memory deficits and abnormal adult hippocampal neurogenesis. In summary, we identified a molecular pathomechanism, which invokes PTX-induced cytotoxicity in NSC independent of cell cycle status. This pathway could be pharmacologically inhibited with lithium without impairing paclitaxel's tubulin-dependent cytostatic mode of action, enabling a potential translational clinical approach.
引用
收藏
页码:e1185 / e1185
页数:11
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