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采用磁控调整和光固化光子晶体法实现结构色印刷 被引量:1
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作者 Hyoki Kim Jianping Ge +7 位作者 Junhoi Kim Sung-eun Choi hosuk lee Howon lee Wook Park Yadong Yin Sunghoon Kwon 何文(编译) 《中国印刷与包装研究》 CAS 2010年第4期97-98,共2页
大自然中的许多生物,如蝴蝶和孔雀,可显示出独特绚丽的色彩,这种依靠光与物体表面周期性纳米结构的相互作用而产生的色彩,被称为"结构色"。然而,即使是目前世界上最先进的纳米加工技术仍然存在速度慢、价格昂贵和无法扩展的问... 大自然中的许多生物,如蝴蝶和孔雀,可显示出独特绚丽的色彩,这种依靠光与物体表面周期性纳米结构的相互作用而产生的色彩,被称为"结构色"。然而,即使是目前世界上最先进的纳米加工技术仍然存在速度慢、价格昂贵和无法扩展的问题,难以模仿自然界中结构色的纳米结构。本文基于采用无掩膜光刻系统固化的新材料实现颜色连续可调,从而能在几秒钟内制作由多重结构色构成的高清晰图案。同时,发明了一种命名为"M-油墨"的新材料,其颜色可以通过磁场改变内部纳米结构周期而得到调整,也可通过光化学固定聚合物网络中的纳米结构而达到锁色效果。此外,本文也研发出一种实现结构色印刷的光子晶体。这种简单、可控、可扩展的结构色印刷方案的提出将对大众消费品的色彩生成产生重大影响。 展开更多
关键词 纳米结构 光子晶体 印刷 固化 调整 和光 相互作用 加工技术
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Biogenesis and regulation of the let-7 miRNAs and their functional implications 被引量:26
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作者 hosuk lee Sungwook Han +1 位作者 Chang Seob Kwon Daeyoup lee 《Protein & Cell》 SCIE CAS CSCD 2016年第2期100-113,共14页
The let-7 miRNAwas one of the first miRNAs discovered in the nematode, Caenorhabditis elegans, and its biological functions show a high level of evolutionary conservation from the nematode to the human. Unlike in C. e... The let-7 miRNAwas one of the first miRNAs discovered in the nematode, Caenorhabditis elegans, and its biological functions show a high level of evolutionary conservation from the nematode to the human. Unlike in C. elegans, higher animals have multiple isoforms of let-7 miRNAs; these isoforms share a consensus sequence called the 'seed sequence' and these isoforms are categorized into let-7 miRNA family. The expression of let-7 family is required for developmental timing and tumor suppressor function, but must be suppressed for the self-renewal of stem cells. Therefore, let-7 miRNA biogenesis must be carefully controlled. To generate a let-7 miRNA, a primary transcript is produced by RNA polymerase Ⅱ and then subsequently processed by Drosha/DGCR8, TUTase, and Dicer. Because dysregulation of let-7 processing is deleterious, biogenesis of let-7 is tightly regulated by cellular factors, such as the RNA binding proteins, LIN28A/B and DIS3L2. In this review, we discuss the biological functions and biogenesis of let-7 miRNAs, focusing on the molecular mechanisms of regulation of let-7 biogenesis in ver- tebrates, such as the mouse and the human. 展开更多
关键词 miRNA processing miRNA biogenesis let-7 family TUTase LIN28A/B
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