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Protection against ischemic brain injury by protein therapeutics

机译:蛋白质疗法可预防缺血性脑损伤

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Preventing massive cell death is an important therapeutic strategy for various injuries and disorders. Protein therapeutics have the advantage of delivering proteins in a short period. We have engineered the antiapoptotic bcl-x gene to generate the super antiapoptotic factor, FNK, with a more powerful cytoprotective activity. In this study, we fused the protein transduction domain (PTD) of the HIV/Tat protein to FNK and used the construct in an animal model of ischemic brain injury. When added into culture media of human neuroblastoma cells and rat neocortical neurons, PTD-FNK rapidly transduced into cells and localized to mitochondria within 1 h. It protected the neuroblastomas and neurons against staurosporine-induced apoptosis and glutamate-induced excitotoxicity, respectively. The cytoprotective activity of PTD-FNK was found at concentrations as low as 0.3 pM. Additionally, PTD-FNK affected the cytosolic movement of calcium ions, which may relate to its neuroprotective action. Immunohistochemical analysis revealed that myc-tagged PTD-FNK (PTD-myc-FNK) injected i.p. into mice can have access into brain neurons. When injected i.p. into gerbils, PTD-FNK prevented delayed neuronal death in the hippocampus caused by transient global ischemia. These results suggest that PTD-FNK has a potential for clinical utility as a protein therapeutic strategy to prevent cell death in the brain.
机译:防止大量细胞死亡是各种损伤和疾病的重要治疗策略。蛋白质治疗剂具有在短时间内递送蛋白质的优势。我们已经设计了抗凋亡bcl-x基因,以产生具有更强大的细胞保护活性的超级抗凋亡因子FNK。在这项研究中,我们将HIV / Tat蛋白的蛋白转导域(PTD)与FNK融合在一起,并将该构建体用于缺血性脑损伤的动物模型中。当添加到人类神经母细胞瘤细胞和大鼠新皮层神经元的培养基中时,PTD-FNK在1小时内迅速转导进入细胞并定位于线粒体。它可以保护神经母细胞瘤和神经元免受星形孢菌素诱导的细胞凋亡和谷氨酸诱导的兴奋性毒性。发现在低至0.3 pM的浓度下PTD-FNK的细胞保护活性。此外,PTD-FNK影响钙离子的胞质运动,这可能与其神经保护作用有关。免疫组织化学分析显示,经i.p.注射myc标签的PTD-FNK(PTD-myc-FNK)。进入小鼠体内可以进入大脑神经元。注射时PTD-FNK进入沙鼠后,可防止因短暂性整体缺血导致海马神经元延迟死亡。这些结果表明,PTD-FNK作为防止脑细胞死亡的蛋白质治疗策略,具有潜在的临床应用价值。

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