|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | Application of next-generation sequencing technology to precision medicine in cancer: joint consensus of the Tumor Biomarker Committee of the Chinese Society of Clinical Oncology显示文摘Next-generation sequencing(NGS) technology is capable of sequencing millions or billions of DNA molecules simultaneously.Therefore, it represents a promising tool for the analysis of molecular targets for the initial diagnosis of disease, monitoring of disease progression, and identifying the mechanism of drug resistance. On behalf of the Tumor Biomarker Committee of the Chinese Society of Clinical Oncology(CSCO) and the China Actionable Genome Consortium(CAGC), the present expert group hereby proposes advisory guidelines on clinical applications of NGS technology for the analysis of cancer driver genes for precision cancer therapy. This group comprises an assembly of laboratory cancer geneticists, clinical oncologists, bioinformaticians,pathologists, and other professionals. After multiple rounds of discussions and revisions, the expert group has reached a preliminary consensus on the need of NGS in clinical diagnosis, its regulation, and compliance standards in clinical sample collection. Moreover, it has prepared NGS criteria, the sequencing standard operation procedure(SOP), data analysis, report, and NGS platform certification and validation. | Xuchao Zhang Zhiyong Liang Shengyue Wang Shun Lu Yong Song Ying Cheng Jianming Ying Weiping Liu Yingyong Hou Yangqiu Li Yi Liu Jun Hou Xiufeng Liu Jianyong Shao Yanhong Tai Zheng Wang Li Fu Hui Li Xiaojun Zhou Hua Bai Mengzhao Wang You Lu Jinji Yang Wenzhao Zhong Qing Zhou Xuening Yang Jie Wang Cheng Huang Xiaoqing Liu Xiaoyan Zhou Shirong Zhang Hongxia Tian Yu Chen Ruibao Ren Ning Liao Chunyan Wu Zhongzheng Zhu Hongming Pan Yanhong Gu Liwei Wang Yunpeng Liu Suzhan Zhang Tianshu Liu Gong Chen Zhimin Shao Binghe Xu Qingyuan Zhang Ruihua Xu Lin Shen Yilong Wu | 2019 | Cancer Biology & Medicine2019,16,1: | 14 |
| 2 | A review on protection of DC microgrids显示文摘The DC microgrid has become a typical distribution network due to its excellent performance. However,a well-designed protection scheme still remains a challenge for DC microgrids. At present, researches on DC microgrids primarily focus on the topology structure, control method and energy control, while researches on fault analysis, detection and isolation have not drawn enough attention. Therefore, this paper intends to depict the current research status in different relative areas and review the proposed protection strategies in order to help researchers have a clear understanding on DC microgrid protection.Meanwhile, to solve the protection issues and promote the development of the DC microgrids, this paper points out the key areas of future researches. The future protection researchdirections lie in the development of novel protection devices, which are based on electronic technology to provide loose protection constraints and the improvement of suitable protection schemes. In addition, the novel concept of coordinated control and protection strategy in the DCmicrogrids is explained. | Lin ZHANG Nengling TAI Wentao HUANG Jian LIU Yanhong WANG | 2018 | Journal of Modern Power Systems and Clean Energy2018,6,6: | 3 |
| 3 | The tumor suppressor role of Src homology phosphotyrosine phosphatase 2 in hepatocellular carcinoma显示文摘 | Chengying Jiang Fangke Hu Yanhong Tai Jingli Du Beibei Mao Zengqiang Yuan Yan Wang Lixin Wei | 2012 | Journal of Cancer Research and Clinical Oncology2012,,4: | 1 |
| 4 | Repression of endome- trial tumor growth by targeting SREBP1 and lipogenesis显示文摘 | Li Weihua Tai Yanhong Zhou Jie | 2012 | Cell Cy- cle2012,11,12: | 1 |
| 5 | Co-activation for enhanced K-ion storage in battery anodes显示文摘The relative natural abundance of potassium and potentially high energy density has established potassium-ion batteries as a promising technology for future large-scale global energy storage.However,the anodes'low capacity and high dis charge platform lead to low energy density,which impedes their rapid development.Herein,we present a possible co-activation mechanism between bismuth(Bi)and tin(Sn)that enhances K-ion storage in battery anodes.The co-activated Bi-Sn anode delivered a high capacity of634 mAh g^(-1),with a discharge plateau as low as 0.35 V,and operated continuously for 500 cycles at a current density of 50 mA g^(-1),with a high Coulombic efficiency of 99.2%.This possible co-activation strategy for high potassium storage may be extended to other Na/Zn/Ca/Mg/Al ion battery technologies,thus providing insights into how to improve their energy storage ability. | Yanhong Feng Yawei Lv Hongwei Fu Mihir Parekh Apparao MRao He Wang Xiaolin Tai Xianhui Yi Yue Lin Jiang Zhou Bingan Lu | 2023 | National Science Review2023,10,7: | 0 |
| 6 | The expression and function of long noncoding RNAs in hepatocellular carcinoma显示文摘With the deepening of the genome project study,attention on noncoding RNAs is increasing.Long noncoding RNAs(lncRNAs)have become a new research hotspot.A growing number of studies have revealed that lncRNAs are involved in tumorigenesis and tumor suppressor pathways.Aberrant expressions of lncRNAs have been found in a variety of human tumors including hepatocellular carcinoma(HCC).In this review,we provide a brief introduction to lncRNA and highlight recent research on the functions and clinical significance of lncRNAs in HCC. | Jingli Du Yue Su Jianzhi Gao Yanhong Tai | 2023 | Cancer Innovation2023,2,6: | 0 |