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2篇 您的检索式:关键字=Growth mechanisms
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1Novel miRNA, miR-sc14, promotes Schwann cell proliferation and migration显示文摘MicroRNAs refer to a class of endogenous,short non-coding RNAs that mediate numerous biological functions.MicroRNAs regulate various physiological and pathological activities of peripheral nerves,including peripheral nerve repair and regeneration.Previously,using a rat sciatic nerve injury model,we identified many functionally annotated novel microRNAs,including miR-sc14.Here,we used real-time reverse transcription-polymerase chain reaction to examine miR-sc14 expression in rat sciatic nerve stumps.Our results show that miRsc14 is noticeably altered following sciatic nerve injury,being up-regulated at 1 day and diminished at 7 days.EdU and transwell chamber assay results showed that miR-sc14 mimic promoted proliferation and migration of Schwann cells,while miR-sc14 inhiThe study was approved by the Jiangsu Provincial Laboratory Animal Management Committee,China on March 4,2015(approval No.20150304-004).bitor suppressed their proliferation and migration.Additionally,bioinformatic analysis examined potential target genes of miR-sc14,and found that fibroblast growth factor receptor 2 might be a potential target gene.Specifically,our results show changes of miR-sc14 expression in the sciatic nerve of rats at different time points after nerve injury.Appropriately,up-regulation of miR-sc14 promoted proliferation and migration of Schwann cells.Consequently,miR-sc14 may be an intervention target to promote repair of peripheral nerve injury.The study was approved by the Jiangsu Provincial Laboratory Animal Management Committee,China on March 4,2015(approval No.20150304-004).Xi-Meng Ji Shan-Shan Wang Xiao-Dong Cai Xing-Hui Wang Qian-Yan Liu Pan Wang Zhang-Chun Cheng Tian-Mei Qian 2019Neural Regeneration Research2019,14,9:6
2A growth kinetics model of rate decomposition for Sil-xGex alloy based on dimer theoryA growth kinetics model of rate decomposition for Sil-xGex alloy based on dimer theoryA growth kinetics model of rate decomposition for Sil-xGex alloy based on dimer theoryA growth kinetics model of rate decomposition for Sil-xGex alloy based on dimer theoryA growth kinetics model of rate decomposition for Sil-xGex alloy based on dimer theoryA growth kinetics model of rate decomposition for Sil-xGex alloy based on dimer theoryA growth kinetics model of rate decomposition for Sil-xGex alloy based on dimer theory显示文摘According to the dimer theory on semiconductor surface and chemical vapor deposition(CVD) growth characteristics of Sil_xGex, two mechanisms of rate decomposition and discrete flow density are proposed. Based on these two mech- anisms, the Grove theory and Fick's first law, a CVD growth kinetics model of Sil-xGex alloy is established. In order to make the model more accurate, two growth control mechanisms of vapor transport and surface reaction are taken into account. The paper also considers the influence of the dimer structure on the growth rate. The results show that the model calcuated valne is consistent with the experimental vahles at different ternnerntllres.戴显英 吉瑶 郝跃 2014Chinese Physics B2014,23,1:1
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