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Investigation about effects on endoplasmic reticulum stress responses by applying nanosecond pulsed electric fields

机译:纳秒脉冲电场对内质网应激反应影响的研究

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The application area of pulsed power technology has been expanding into biological and medical fields. In particular, nanosecond pulsed electric fields (nsPEFs) could directly act on intercellular components without destruction of cell membrane. Clarification of biological effect of endoplasmic reticulum (ER) stress response by nsPEFs would suggest new methods of prevention or therapy of disorders, such as diabetes and obesity. Activation of ER stress response with nsPEFs was investigated in vitro and in vivo experiments. Skeletal muscle of mice was exposed to nsPEFs in vivo experiment. The cell solutions of HEK293, HeLa and C2C12 were exposed to nsPEFs in vitro experiments. Blumlein-type pulse forming network (B-PFN) was used to apply nsPEFs, whose pulse-width was 80 ns, on them. Phosphorylation of eIF2α was investigated by western blot analysis and RT-quantitative PCR analysis to confirm activation of ER stress response. In vivo experiment, Phosphorylation of eIF2α was confirmed, but it was not strong. In vitro experiment, activation of HeLa cell was confirmed by applying nsPEFs. Therefore it is considered that activation of ER stress response by nsPEFs depends on the type of cells.
机译:脉冲功率技术的应用领域已经扩展到生物和医学领域。特别是,纳秒脉冲电场(nsPEF)可以直接作用于细胞间成分,而不会破坏细胞膜。 nsPEFs阐明内质网(ER)应激反应的生物学效应将为预防或治疗疾病(例如糖尿病和肥胖症)提供新的方法。在体外和体内实验中研究了用nsPEFs激活ER应激反应。在体内实验中,小鼠骨骼肌暴露于nsPEF。在体外实验中,将HEK293,HeLa和C2C12的细胞溶液暴露于nsPEF。使用Blumlein型脉冲形成网络(B-PFN)在其上施加脉冲宽度为80 ns的nsPEF。通过Western印迹分析和RT定量PCR分析研究eIF2α的磷酸化,以确认ER应激反应的激活。在体内实验中,确认了eIF2α的磷酸化,但强度不强。在体外实验中,通过应用nsPEFs证实了HeLa细胞的激活。因此,认为通过nsPEF激活ER应激反应取决于细胞的类型。

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