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5篇 您的检索式:作者名="Guangjun Ran"
    题名 作者 年代 出处 被引量
1Precise nanomedicine for intelligent therapy of cancer显示文摘Precise nanomedicine has been extensively explored for efficient cancer imaging and targeted cancer therapy, as evidenced by a few breakthroughs in their preclinical and clinical explorations. Here, we demonstrate the recent advances of intelligent cancer nanomedicine, and discuss the comprehensive understanding of their structure-function relationship for smart and efficient cancer nanomedicine including various imaging and therapeutic applications, as well as nanotoxicity. In particular, a few emerging strategies that have advanced cancer nanomedicine are also highlighted as the emerging focus such as tumor imprisonment, supramolecular chemotherapy, and DNA nanorobot. The challenge and outlook of some scientific and engineering issues are also discussed in future development. We wish to highlight these new progress of precise nanomedicine with the ultimate goal to inspire more successful explorations of intelligent nanoparticles for future clinical translations.Huabing Chen Zhanjun Gu Hongwei An Chunying Chen Jie Chen Ran Cui Siqin Chen Weihai Chen Xuesi Chen Xiaoyuan Chen Zhuo Chen Baoquan Ding Qian Dong Qin Fan Ting Fu Dayong Hou Qiao Jiang Hengte Ke Xiqun Jiang Gang Liu Suping Li Tianyu Li Zhuang Liu Guangjun Nie Muhammad Ovais Daiwen Pang Nasha Qiu Youqing Shen Huayu Tian Chao Wang Hao Wang Ziqi Wang Huaping Xu Jiang-Fei Xu Xiangliang Yang Shuang Zhu Xianchuang Zheng Xianzheng Zhang Yanbing Zhao Weihong Tan Xi Zhang Yuliang Zhao 2018Science China Chemistry2018,61,12:19
2Direct self-assembly of CTAB-capped Au nanotriangles显示文摘浓密地收拾行李并且命令 suprastructures 是展出宽广应用的 nanomaterials 的新类型。cetyltrimethylammonium 溴化物(CTAB ) 直接自己组装形成 suprastructures 的盖住的金 nanotriangles 被改变温度系统地调查并且倾斜在汇编进程使用的硅晶片的角度。在最佳的条件下面, nanotriangles 变成常规模式,维持他们的正直,并且形成 edge-to-edge,点对点,并且在几百方形的微米的一个区域以内形成订的 suprastructures 的面对面连接,完成整齐的高水平。在最佳的条件下面的 suprastructures 的形成能主要被归因于在多重温度依赖者因素之间的复杂平衡,包括原子散开率,溶剂蒸发率,自己组装率,和 nanoparticle 呆在湿媒介的时间。Qiang Fu Guangjun Ran Weilin Xu 2016Nano Research2016,9,11:3
3Synthesis of Lignin-Modified Silica Nanoparticles from Black Liquor of Rice Straw Pulping显示文摘ZHANG Xiaojun ZHAO Zhihai RAN Guangjun 2013Powder Technology2013,246,:1
4Synthesis of lig- nin-modified silica nanoparticles from black liquor of rice straw pul- ping显示文摘Xiaojun Zhang Zhihai Zhao Guangjun Ran 2013Powder Technology2013,246,:1
5Highly sensitive electrochemical determination of rutin based on the synergistic effect of 3D porous carbon and cobalt tungstate nanosheets显示文摘Rutin,a flavonoid found in fruits and vegetables,is a potential anticancer compound with strong anticancer activity.Therefore,electrochemical sensor was developed for the detection of rutin.In this study,CoWO_(4) nanosheets were synthesized via a hydrothermal method,and porous carbon(PC)was prepared via high-temperature pyrolysis.Successful preparation of the materials was confirmed,and characterization was performed by transmission electron microscopy,scanning electron microscopy,and X-ray photoelectron spectroscopy.A mixture of PC and CoWO_(4) nanosheets was used as an electrode modifier to fabricate the electrochemical sensor for the electrochemical determination of rutin.The 3D CoWO_(4) nanosheets exhibited high electrocatalytic activity and good stability.PC has a high surface-to-volume ratio and superior conductivity.Moreover,the hydrophobicity of PC allows large amounts of rutin to be adsorbed,thereby increasing the concentration of rutin at the electrode surface.Owing to the synergistic effect of the 3D CoWO_(4) nanosheets and PC,the developed electrochemical sensor was employed to quantitively determine rutin with high stability and sensitivity.The sensor showed a good linear range(5-5000 ng/mL)with a detection limit of 0.45 ng/mL.The developed sensor was successfully applied to the determination of rutin in crushed tablets and human serum samples.Guangjun Feng Yang Yang Jiantao Zeng Jun Zhu Jingjian Liu Lun Wu Zhiming Yang Guanyi Yang Quanxi Mei Qinhua Chen Fengying Ran 2022Journal of Pharmaceutical Analysis2022,12,3:1
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