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Autonomic nervous system network and liver regeneration 被引量:3
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作者 Kenya Kamimura ryosuke Inoue +5 位作者 Takuro Nagoya Norihiro Sakai ryo goto Masayoshi Ko Yusuke Niwa Shuji Terai 《World Journal of Gastroenterology》 SCIE CAS 2018年第15期1616-1621,共6页
To date, various signal transducers, cytokines, growth factors, and hormones have been reported to play an important role in homeostasis of various organs. Various cells and organs are involved in the hepatic regenera... To date, various signal transducers, cytokines, growth factors, and hormones have been reported to play an important role in homeostasis of various organs. Various cells and organs are involved in the hepatic regeneration process, which proceeds as a result of the coordination of many factors. While these factors are well known to be involved in the liver regeneration after the liver injury, however, as the details of such mechanisms have not been sufficiently elucidated, the practical applicability of hepatic regeneration based on the action of these and cytokines growth factors is still unclear. In terms of the involvement of the autonomic nervous system in hepatic regeneration, cell proliferation resulting from direct signal transduction to the liver has also been reported and recent studies focusing on the inter-organ communication via neural network opened a novel aspect of this field for therapeutic applicability. Therefore, the appropriate understanding of the relationship between autonomic neural network and liver regeneration through various organs including brain, afferent nerve, efferent nerve, etc. is essential. This mini-review explains the principle of neural system involved in the inter-organ communication and its contribution on the liver regeneration upon the liver injury reviewing recent progress in this field. 展开更多
关键词 AUTONOMIC NERVE NEURAL NETWORK Liver REGENERATION HORMONE
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Liver-targeted hydrodynamic gene therapy: Recent advances in the technique 被引量:3
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作者 Takeshi Yokoo Kenya Kamimura +7 位作者 Hiroyuki Abe Yuji Kobayashi Tsutomu Kanefuji Kohei Ogawa ryo goto Masafumi Oda Takeshi Suda Shuji Terai 《World Journal of Gastroenterology》 SCIE CAS 2016年第40期8862-8868,共7页
One of the major research focuses in the field of gene therapy is the development of clinically applicable, safe, and effective gene-delivery methods. Since the first case of human gene therapy was performed in 1990, ... One of the major research focuses in the field of gene therapy is the development of clinically applicable, safe, and effective gene-delivery methods. Since the first case of human gene therapy was performed in 1990, a number of gene-delivery methods have been developed, evaluated for efficacy and safety, and modified for human application. To date, viral-vectormediated deliveries have shown effective therapeutic results. However, the risk of lethal immune response and carcinogenesis have been reported, and it is still controversial to be applied as a standard therapeutic option. On the other hand, delivery methods for nonviral vector systems have been developed, extensively studied, and utilized in in vivo gene-transfer studies. Compared to viral-vector mediated gene transfer, nonviral systems have less risk of biological reactions. However, the lower gene-transfer efficiency was a critical hurdle for applying them to human gene therapy. Among a number of nonviral vector systems, our studies focus on hydrodynamic gene delivery to utilize physical force to deliver naked DNA into the cells in the living animals. This method achieves a high gene-transfer level by DNA solution injections into the tail vein of rodents, especially in the liver. With the development of genome editing methods, in vivo gene-transfer therapy using this method is currently the focus in this research field. This review explains the method principle, efficiency, safety, and procedural modifications to achieve a high level of reproducibility in large-animal models. 展开更多
关键词 基因治疗 水动力学基因交货 非病毒 指导图象
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Study on Dynamic Response of Fiber-Reinforced Plastic Float for Light Seaplane
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作者 Yoshio Aoki Akihisa Tabata +1 位作者 ryo goto Goichi Ben 《Journal of Civil Engineering and Architecture》 2016年第2期175-182,共8页
关键词 超轻型水上飞机 纤维增强塑料 动态响应 光纤维 日本海域 专属经济区 动力学方法 垂直加速度
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