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| 1 | RNA-seq analysis of prostate cancer in the Chinese population identifies recurrent gene fusions, cancer-associated long noncoding RNAs and aberrant alternative splicings显示文摘在有前列腺癌症的不同赛跑的病人之中有显著不同;然而,位于这差别下面的机制仍然保持不清楚。这里,我们在场 transcriptome 的一处全面风景用 RNA-seq,越过关于基因熔化的前列腺癌症 transcriptomes 的揭示巨大的差异,长 noncoding RNA (长 ncRNA ) ,其他的拼接和体的变化从中国人口 14 主要前列腺癌症和他们的配对的正常对应物介绍。14 个肿瘤(21.4%) 中的三个在中国病人怀有 TMPRSS2 尔格熔化,和这熔化的低流行进一步在一个另外的肿瘤集合(10/54=18.5%) 被证实。尤其是,二新奇基因熔化, CTAGE5-KHDRBS3 (20/54=37%) 和 USP9Y-TTTY15 (19/54=35.2%) ,在我们的耐心的队经常发生了。介绍的进一步系统的 transcriptional 识别了是在肿瘤表示的差别的众多的长 ncRNAs。在长 ncRNA 和基因的表示之间的关联的分析建议长 ncRNAs 可以在 transcriptional 规定以外有功能。这研究在中国人口产出新卓见进前列腺癌症的致病。 | Shancheng Ren Zhiyu Peng Jian-Hua Mao Yongwei Yu Changjun Yin Xin Gao Zilian Cui Jibin Zhang Kang Yi Weidong Xu Chao Chen Fubo Wang Xinwu Guo Ji Lu Jun Yang Min Wei Zhijian Tian Yinghui Guan Liang Tang Chuanliang Xu Linhui Wang Xu Gao Wei Tian Jian Wang Huanming Yang Jun Wang Yinghao Sun | 2012 | Cell Research2012,22,5: | 66 |
| 2 | A scalable sulfuration of WS2 to improve cyclability and capability of lithium-ion batteries显示文摘二维的转变金属 dichalcogenides (WS 2 和 SnS 2) 最近加入了精力存储材料的家庭(为锂离子电池和 supercapacitors ) 由于他们的有利离子置闰。到目前为止,在阶段纯的 WS 2, 的合成的挑战严重地在 WS 2 nanosheets,低电子传导性,和 WS 2, 的易碎的性质之间重新叠限制它的使用 Li 离子电池申请。此处,我们开发灵巧的低温度解决方案硫化进程戏剧性地改进电池性能。硫化过程被表明在把 WO 3 杂质变换成 WS 2, 并且在修理硫空缺有效,到改进 cyclability 和率能力。锂离子电池大小证明 WS 2 阳极的稳定的能力能被 48.4% 经由硫化 reprocessing 提高,即,从在 0.8 的相对高的当前的密度的 381.7 ~ 566.8 mAh/g,在 50 以后的 A/g 骑车。我们进一步证明硫化进程能乐意地被扩大到另外的 dichalcogenides,并且可以为锂离子电池向万用的电极材料的一个类提供改进电气化学的特征。 | Liyan Zhou Shancheng Yan Lijia Pan Xinran Wang Yuqiao Wang Yi Shi | 2016 | Nano Research2016,9,3: | 7 |
| 3 | Long Noncoding RNA MALAT-1 is a New Potential Therapeutic Target for Castration-Resistant Prostate Cancer显示文摘 | Shancheng Ren Yawei Liu Weidong Xu Yi Sun Ji Lu Fubo Wang Min Wei Jian Shen Jianguo Hou Xu Gao Chuanliang Xu Jiaoti Huang Yi Zhao Yinghao Sun | 2013 | The Journal of Urology2013,,: | 2 |
| 4 | Developments in stability and passivation strategies for black phosphorus显示文摘Black phosphorus(BP),a promising two-dimensional layer material,has attracted increasing attention due to its high carrier mobility,thickness-dependent tunable bandgap,in-plane anisotropy,and other advantageous characteristics.Because of these excellent characteristics,BP has been considered for applications in optics,electronics,optoelectronics,sensors,and energy storage.However,early studies found that BP has high chemical activity due to the lone pair electrons of P atoms on the surface and edges,resulting in rapid degradation under ambient conditions and limiting many applications.Recently,these thorny issues have been alleviated through superior physical and chemical passivation techniques,and passivated BP can be used in various devices under ambient and water conditions with excellent performance over a long period.This review,highlights the critical problems addressed in solving the serious instability of BP in a harsh environment by effective passivation technology.These unique strategies can provide more researchers with a fundamental study of the fascinating properties of BP.Finally,we found that passivated BP not only showed good stability under ambient conditions but also exhibited excellent performance compared with the original BP.Therefore,it is anticipated that this overview can contribute to the application of BP. | Haizeng Song Han Wu Tianqi Ren Shancheng Yan Tianhong Chen Yi Shi | 2021 | Nano Research2021,14,12: | 1 |
| 5 | Odorant-binding protein 19 in Monochamus alternatus involved in the recognition of a volatile strongly emitted from ovipositing host pines显示文摘Monochamus alternatus is the primary carrier of pine wood nematodes,which pose a serious threat to Pinus spp.in many countries.Newly emerging M.alternatus adults feed on heathy host pines,while matured adults transfer to stressed host pines for mating and oviposition.Several odorant-binding proteins(OBPs)of M.alternatus have been proved to aid in the complex process of host location.To clarify the corresponding relations between OBPs and pine volatiles,more OBPs need to be studied.In this research,MaltOBP19 showed a specific expression in the antennae and mouthparts of M.alternatus,and it was marked in 4 types of antenna sensilla by immunolocalization.Fluorescence binding assays demonstrated the high binding affinity of MaltOBP19 with camphene and myrcene in vitro.In Y-tube olfactory experiments,M.alternatus adults were attracted by camphene and RNAi of OBP19 via microinjection significantly decreased their attraction index.Myrcene induced phobotaxis,but RNAi had no significant effect on this behavior.Further,we found that ingesting dsOBP19 produced by a bacteria-expressed system with a newly constructed vector could lead to the knockdown of MaltOBP19.These results suggest that MaltOBP19 may play a role in the process of host conversion via the recognition of camphene,which has been identified to be strongly released in stressed host pines.In addition,it is proved that knockdown of OBP can be achieved by oral administration of bacteria-expressed double-stranded RNA in M.alternatus adults,providing a new perspective in the control of M.alternatus. | Ruinan Yang Dongzhen Li Shancheng Yi Yi Wei Manqun Wang | 2024 | Insect Science2024,31,1: | 0 |