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姜黄素通过调节 BDNF/DARPP32/CREB 对砷诱导的大鼠纹状体多巴胺能信号改变的保护作用。

Protective Effect of Curcumin by Modulating BDNF/DARPP32/CREB in Arsenic-Induced Alterations in Dopaminergic Signaling in Rat Corpus Striatum.

机构信息

Developmental Toxicology Laboratory, Systems Toxicology and Health Risk Assessment Group, CSIR-Indian Institute of Toxicology Research (CSIR-IITR), Vishvigyan Bhawan; 31, Mahatma Gandhi Marg, Lucknow, Uttar Pradesh, 226 001, India.

School of Pharmacy, Babu Banarasi Das University, BBD City, Faizabad Road, Lucknow, 227 015, India.

出版信息

Mol Neurobiol. 2018 Jan;55(1):445-461. doi: 10.1007/s12035-016-0288-2. Epub 2016 Dec 13.

Abstract

Earlier, protective role of curcumin in arsenic-induced dopamine (DA)-D2 receptor dysfunctions in corpus striatum has been demonstrated by us. In continuation to that, the present study is focused to decipher the molecular mechanisms associated with alterations in dopaminergic signaling on arsenic exposure in corpus striatum and assess the protective efficacy of curcumin. Exposure to arsenic (20 mg/kg, body weight p.o. for 28 days) in rats resulted to decrease the expression of presynaptic proteins-tyrosine hydroxylase and VMAT2 while no effect was observed on the expression of DAT in comparison to controls. A significant decrease in the expression of DA-D2 receptors associated with alterations in the expression of PKA, pDARPP32 (Thr 34), and PP1 α was clearly evident on arsenic exposure. Expression of BDNF and pGSK3β in corpus striatum was found decreased in arsenic-exposed rats. Simultaneous treatment with curcumin (100 mg/kg, body weight p.o. for 28 days) resulted to protect arsenic-induced alterations in the expression of DA-D2 receptors, PKA, pDARPP32, pCREB, and pPP1α. Neuroprotective efficacy of curcumin can possibly be attributed to its antioxidant potential which significantly protected arsenic-induced mitochondrial dysfunctions by modulating the ROS generation and apoptosis. Modulation in the expression of BDNF and pGSK3β in corpus striatum by curcumin exhibits the importance of neuronal survival pathway in arsenic-induced dopaminergic dysfunctions. Interestingly, curcumin was also found to protect arsenic-induced ultrastructural changes in corpus striatum. The results exhibit that curcumin modulates BDNF/DARPP32/CREB in arsenic-induced alterations in dopaminergic signaling in rat corpus striatum.

摘要

早些时候,我们已经证明姜黄素在砷诱导的纹状体多巴胺 (DA)-D2 受体功能障碍中具有保护作用。在此基础上,本研究专注于阐明砷暴露引起纹状体多巴胺能信号转导改变相关的分子机制,并评估姜黄素的保护效果。在大鼠中,暴露于砷(20mg/kg,口服,持续 28 天)导致与对照组相比,突触前蛋白酪氨酸羟化酶和 VMAT2 的表达减少,而对 DAT 的表达没有影响。在砷暴露时,与 DA-D2 受体表达改变相关的 PKA、pDARPP32(Thr34)和 PP1α的表达明显下降。纹状体中的 BDNF 和 pGSK3β 的表达发现,在暴露于砷的大鼠中减少。同时用姜黄素(100mg/kg,口服,持续 28 天)治疗可防止砷引起的 DA-D2 受体、PKA、pDARPP32、pCREB 和 pPP1α表达改变。姜黄素的神经保护作用可能归因于其抗氧化潜力,它通过调节 ROS 生成和凋亡,显著保护砷诱导的线粒体功能障碍。姜黄素在纹状体中调节 BDNF 和 pGSK3β 的表达,显示了神经元存活途径在砷诱导的多巴胺能功能障碍中的重要性。有趣的是,姜黄素还发现可以保护砷诱导的纹状体超微结构变化。结果表明,姜黄素调节 BDNF/DARPP32/CREB 在砷诱导的大鼠纹状体多巴胺能信号转导改变中的作用。

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