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首页> 外文期刊>Biochimica et biophysica acta. Molecular basis of disease: BBA >New therapeutic activity of metabolic enhancer piracetam in treatment of neurodegenerative disease: Participation of caspase independent death factors, oxidative stress, inflammatory responses and apoptosis
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New therapeutic activity of metabolic enhancer piracetam in treatment of neurodegenerative disease: Participation of caspase independent death factors, oxidative stress, inflammatory responses and apoptosis

机译:新的代谢增强剂吡酰胺治疗神经变性疾病的新治疗活性:胱天蛋白酶独立死亡因子的参与,氧化应激,炎症反应和凋亡

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Piracetam, a nootropic drug that has been clinically used for decades but remains enigmatic due to no distinct understanding of its mechanism of action. The present study aimed to investigate the role of caspase independent pathway in piracetam mediated neuroprotection. LPS administration caused significant alterations in oxidative stress related parameters like glutathione, glutathione reductase and increased lipid peroxidation. LPS administration also caused augmented expression of inflammatory cytokines and astrocytes activation. Piracetam treatment offered significant protection against LPS induced oxidative and inflammatory parameters and inhibited astrocytes activation. LPS administration caused augmented level of reactive oxygen species and depleted mitochondrial membrane potential which were attenuated with piracetam treatment. This study for the first time demonstrates the role of caspase independent death factors in piracetam induced neuroprotective effects in rat brain. Translocation of mitochondrial resident apoptosis inducing factor and endonuclease G to nucleus through cytosol after LPS administration was significantly blocked with piracetam treatment. Further, LPS induced DNA fragmentation along with up regulated Poly [ADP-ribose] polymerase 1 (PARP1) levels were also inhibited with piracetam treatment. Apoptotic death was confirmed by the cleavage of caspase 3 as well as histological alteration in rat brain regions. LPS administration caused significantly increased level of cleaved caspase 3, altered neuronal morphology and decreased neuronal density which were restored with piracetam treatment. Collectively our findings indicate that piracetam offered protection against LPS induced inflammatory responses and cellular death including its antioxidative antiapoptotic activity with its attenuation against mitochondria mediated caspase independent pathway.
机译:Piracetam,一种临床数十年的垂直药物,但由于对其行动机制没有明显理解而仍然是神秘的。本研究旨在探讨Caspase独立途径在Piracetam介导的神经保护作用中的作用。 LPS管理在谷胱甘肽,谷胱甘肽还原酶等氧化应激相关参数中引起显着的改变,谷胱甘肽还原酶和增加的脂质过氧化。 LPS管理还造成了炎症细胞因子和星形胶质细胞激活的增强表达。 Piracetam治疗对LPS诱导的氧化和炎症参数进行了显着的保护,并抑制了星形胶质细胞活化。 LPS施用引起了用Piracetam治疗衰减的反应性氧物质和耗尽的线粒体膜电位水平。本研究首次证明了胱天蛋白酶独立死亡因子在皮拉酮诱导大鼠脑中的神经保护作用中的作用。用Piracetam治疗显着阻止了通过细胞溶质通过细胞溶质的线粒体常规凋亡诱导因子和内切核酸酶G对核的易位。此外,LPS诱导的DNA碎片和上调的poly [Adp-ribose]聚合酶1(PARP1)水平也抑制了Piracetam治疗。通过Caspase 3的切割证实了凋亡的死亡以及大鼠脑区的组织学改变。 LPS施用导致切割的胱天蛋白酶3的显着增加,改变神经元形态和降低的神经元密度,恢复了Piracetam治疗。总而言之,我们的研究结果表明,Piracetam提供了针对LPS诱导的炎症反应和细胞死亡的保护,包括其抗氧化抗曝光活性,其衰减对线粒体介导的Caspase独立途径。

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