Noer Helle, Kristensen Bjarne W, Noraberg Jens, Zimmer Jens, Gramsbergen Jan Bert
Anatomy and Neurobiology, SDU-Odense University, Denmark
Exp Neurol. 2002 Jul;176(1):237-46. doi: 10.1006/exnr.2002.7934.
We investigated whether neurotoxic effects of the mitochondrial toxin 3-nitropropionic acid (3-NP) in hippocampal slice cultures are dependent on glucose levels in the culture medium and whether such effects occur via apoptosis or necrosis. In addition, 3-NP toxicity was investigated at two developmental stages of the cultures, prepared from rat brain at postnatal day 5-7 and grown in Neurobasal medium for 1 or 3 weeks. Cultures were exposed to 3-NP in the presence of high (25 mM), normal (5 mM), or low (3 mM) glucose for 48 h, followed by 48 h incubation in medium without 3-NP. Cellular propidium iodide (PI) uptake and lactate dehydrogenase (LDH) efflux into the medium revealed time- and dose-dependent cell death by 3-NP, with EC(50) values of about 60 microM in high or normal glucose. Regional vulnerability, as assessed by PI uptake and MAP2 immunostaining, in 3-week-old cultures was as follows: CA1 > CA3 > fascia dentata. In low glucose much lower concentrations of 3-NP (25 microM) triggered neurotoxicity. One-week-old cultures were less susceptible to 3-NP toxicity than 3-week-old cultures, but the dentate granule cells were relatively more affected in the immature cultures. We found no evidence for apoptotic cell death by 3-NP in 3-week-old cultures, but in 1-week-old cultures the putative apoptotic marker c-JUN/AP1 and nuclear fragmentation (Hoechst) were significantly increased in the dentate granule cells.
我们研究了线粒体毒素3-硝基丙酸(3-NP)对海马脑片培养物的神经毒性作用是否依赖于培养基中的葡萄糖水平,以及这种作用是否通过凋亡或坏死发生。此外,还在培养物的两个发育阶段研究了3-NP的毒性,培养物由出生后第5-7天的大鼠脑制备,并在Neurobasal培养基中生长1或3周。培养物在高(25 mM)、正常(5 mM)或低(3 mM)葡萄糖存在下暴露于3-NP 48小时,然后在不含3-NP的培养基中孵育48小时。细胞碘化丙啶(PI)摄取和乳酸脱氢酶(LDH)释放到培养基中显示3-NP导致时间和剂量依赖性细胞死亡,在高糖或正常葡萄糖条件下EC(50)值约为60 microM。通过PI摄取和MAP2免疫染色评估,3周龄培养物中的区域易损性如下:CA1>CA3>齿状回。在低糖条件下,低得多的3-NP浓度(25 microM)引发神经毒性。1周龄培养物比3周龄培养物对3-NP毒性更不敏感,但在未成熟培养物中齿状颗粒细胞受影响相对更大。我们在3周龄培养物中未发现3-NP导致凋亡细胞死亡的证据,但在1周龄培养物中,齿状颗粒细胞中假定的凋亡标志物c-JUN/AP1和核碎裂(Hoechst)显著增加。