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7篇 您的检索式:作者名="Chenlin Yan"
    题名 作者 年代 出处 被引量
1Refractive Index and Strain Sensitivities of a Long Period Fiber Grating显示文摘CO2 激光照耀在所有固体 photonic bandgap 纤维之上制作的一个长时期纤维栅栏(LPFG ) 被调查,并且它的回声波长在有 15 dB 的调整深度和 2.6 nm 的 3-dB 带宽的 1335.76 nm。我们学习了它的种类,温度,和索引传感器特征, 0.992 pm/ 的种类敏感被使用获得线性适合,并且在折射索引和波长之间的关系服从了二次的功能的分发。另外,我们证明它的温度反应是相对感觉迟钝的(21.51 pm/Quandong Huang Yongqin Yu Zhilong Ou Xue Chen Jishun Wang Peiguang Yan Chenlin Du 2014Photonic Sensors2014,4,1:2
2Preparation of magnesium hydroxide nanoflowers 显示文摘Chenlin Yan Dongfeng Xue Longjiang Zou 2005Journal of Crystal Growth2005,282,34:1
3Contributions of the Visual Ventral Pathway to Long-Range Apparent Motion(视腹侧通路在长距离似动中的贡献)显示文摘Zhuo Yan Zhou Tian gang Rao Heng yi Jiong jiongWang Meng Ming Chen Ming Zhou Cheng and ChenLin 2003SCIENCE2003,299,:1
4Room Temperature Fabrication of Hollow ZnS and ZnO Architectures by a Sacrificial Template Route显示文摘Yan Chenlin Xue Dongfeng Journal of Physical Chemistry B0,110,14:1
5Temperature Insensitive Bending Sensor Based on In-Line Mach-Zehnder Interferometer显示文摘基于 Mach-Zehnder 干涉仪把传感器弄弯的简单、紧缩的纤维被建议。有一段 10 公里的 photonic 水晶纤维(PCF ) 被与二常规单个模式纤维折叠空气洞由组成拼接一弯曲的所有纤维传感器。0.53 nm/m 的敏感 < 啜 class= “ a-plus-plus ” > 1 从 0 ~ 8.514 m 为弯曲范围在 1586 nm 被获得 < 啜 class= “ a-plus-plus ” > 1 。温度敏感是很低的。测量错误由于温度效果是大约 8.Xue CHEN Yongqin YU Xiaomei XU Quandong HUANG Zhilong OU Jishun WANG Peiguang YAN and Chenlin DU 2014Photonic Sensors2014,4,3:1
6Preparation of magnesium hydroxide nanoflowers 显示文摘Yan Chenlin Xue Dongfeng Zou Longjiang 2005Journal of Crystal Growth2005,282,34:1
7Synergistic anti-tumor therapy by a homotypic cell membranecloaked biomimetic nanocarrier with exceptionally potent activity against hepatic carcinoma显示文摘Hepatic carcinoma(HC)is the sixth most frequently occurring malignancies and the third leading cause of cancer death worldwide.Sepantronium bromide(YM155)is a small molecule inhibitor of survivin,which has broad-spectrum anticancer therapeutic effects in various xenograft models.However,several-day continuous infusion is required to achieve greater antitumor efficacy because of rapid elimination from the blood circulation.Herein,a SMMC-7721 cancerous cyto-membrane-cloaked drug delivery system(DDS)(named as iM7721@GQD-YM),was developed for co-encapsulation of YM155 and graphene quantum dots(GQDs).Cytomembrane coating endowed iM7721@GQD-YM with effective targeting for homologous HC cells,excellent biocompatibility and favorable immunocompatibility for in vivo application.Surface decoration of iRGD peptide further enhanced its tumor targeting activity by iRGD-integrin recognition.In addition,under the irradiation of near-infrared ray(NIR),GQDs can directly kill tumors through photothermal effect and cause cell membrane rupture,accurately releasing YM155 at tumor sites.The physicochemical properties,in vivo and ex vivo anti-tumor efficacy,and mechanisms of iM7721@GQD-YM nanoparticles(NPs)were systematically investigated in this work.The experimental results clearly indicate that the versatile biomimetic DDS holds great potential for the treatment of HC,which merits further investigation in both pre-clinical and clinical studies.Shini Feng Pinyue Ni Yan Gong Bijiang Geng Hui Li Chenlin Miao Ruyu Fan Levon Galstyan Dengyu Pan Fuxue Chen Huafei Li 2022Nano Research2022,15,9:1
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