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    题名 作者 年代 出处 被引量
1A "green pathway" different from simple diffusion in soft matter: Fast molecular transport within micro/nanoscale multiphase porous systems显示文摘Jiantao Feng Fang Wang Xinxiao Han Zhuo Ao Quanmei Sun Wenda Hua Peipei Chen Tianwei Jing Hongyi Li Dong Han 2014Nano Research2014,7,3:18
2Application of atomic force microscopy to living samples from cells to fresh tissues显示文摘Atomic force microscopy is a novel method for imaging and characterization in biomedicine. However, high-resolution imaging of living samples from cells to tissues still remains a challenge. In this paper, two types of AFM working mode (contact mode and tapping mode) which are utilized for the imaging of living cells and tissues are discussed. A new magnetic tapping mode (MAC mode), which is more suitable for living samples, and a novel data collecting system named TREC, are also introduced.CHEN PeiPei DONG HongTao CHEN Long SUN QuanMei HAN Dong 2009Chinese Science Bulletin2009,54,14:8
3Special interstitial route can transport nanoparticles to the brain bypassing the blood-brain barrier显示文摘Nowadays,nanoparticles(NPs)are considered to be ideal tools for bioimaging and drug delivery.Although increasing research has focused on NP biodistribution,transportation in the interstitial architecture has been neglected.The entire body is connected by the interstitial architecture,which can provide a long-range and direct pathway for NP biodistribution in a nonvascular system.In this study,we report that 10-nm gold NPs injected directly into the interstitial architecture of the tarsal tunnel of rats(intervaginal space injection(ISI))were delivered to the brain without crossing the blood-brain barrier.Furthermore,NaGdF4 nanoparticles were used to explore the transportation route by magnetic resonance imaging.The results demonstrated that,after ISI,the NaGdF4 nanoparticles were transported through the perivascular interstitial space of the carotid arteries and brain vessels to the brain.This is a special nonvascular transportation route like a stream based on the interstitial architecture that provides an alternative pathway for NP biodistribution.Nan Hu Xiaoli Shi Qiang Zhang Wentao Liu Yuting Zhu Yuqing Wang Yi Hou Yinglu Ji Yupeng Cao Qian Zeng Zhuo Ao Quanmei Sun Xiaohan Zhou Xiaochun Wu Dong Han 2019Nano Research2019,12,11:2
4Fabrication of the nanometer A12Oa/Cu composite by internal oxidation 显示文摘Li Guobin Sun Jibing Guo Quanmei 2005J Mater Proces Techn2005,170,:1
5Fabrication of the nanometer Al2O3/Cu composite by internal oxidation显示文摘Li Guobin Sun jibing Guo Quanmei etc 2005Journal of Materials Processing Technology2005,,170:1
6Fabrication of the Nanometer Al2O3/Cu Composite by Internal Oxidation显示文摘Li Guobin Sun jibing Guo Quanmei 2005Journal of Materials Processing Technology2005,170,:1
7Interfacial reactions in glass/Al-Mg composite fabricated by powder metallurgy process 显示文摘Li Guobin Sun Jibing Guo Quanmei 2005Journal of Materials Processing Technology2005,161,3:1
8A multiple-labelling method for cells using Au nanoparticles with different shapes显示文摘An important and difficult issue is simultaneously identifying the detailed locations of various molecules on the cell surface, as this identification requires a synergistic effect between more than one molecule in a living cell. Au nanoparticles (NPs) with different shapes can be readily recognised under low vacuum scanning electron microscopy (lvSEM). Anisotropic Au nanorods (NRs) possess unique surface plasmon resonance (SPR) properties, which can be further utilised for two photon luminescence (TPL) and other optical imaging techniques. In this paper, Au NRs and Au nanooctahedra (Au NOs) are introduced as biomarkers for ICAM-1 and Integrin β1. Combined with the advantages of lvSEM, this multiple-labelling method is a new method for studying the interactions between specific, functional molecules.ZHANG Ke FENG JianTao SUN QuanMei JIN Lin LI Jing WU XiaoChun HAN Dong 2013Chinese Science Bulletin2013,58,21:1
9Coupling predicted model of arsenic in groundwater with endemic arsenism occurrence in Shanxi Province, Northern China显示文摘Qiang Zhang Luis Rodriguez-Lado Juan Liu C. Annette Johnson Quanmei Zheng Guifan Sun 2013Journal of Hazardous Materials2013,,:1
10Micro/-nanoscaled topography-coupled-mechanical action into functional biointerface显示文摘The micro/-nanoscaled functional biointerfaces aroused much interest of their key unit element to present unique functions. So far it is still difficult to describe the whole picture of this process. More and more evidences are beginning to support the theory of ‘‘mirco/-nanotopography-coupled-mechanical(TCM) action'' into functional biointerfaces.Herein, we aim to highlight TCM action on varied micro/-nanoscaled functional biointerfaces, namely to achieve better understanding of micro/-nanoscaled structures by introducing interfacial mechanical behaviors. In this article, recent progressions on ‘‘TCM on air/liquid/solid-phase biointerfaces in nature'', ‘‘in vivo TCM behaviors at micro/-nanoscales' ',‘‘TCM in micro/-nanoscaled artificial surface with living Cells' ' and ‘‘topography, interfacial curvature, mechanics' 'are reviewed. Certain new concepts of ‘‘TCM action based on spatial curvature'', ‘‘medically functional biointerfaces' ' and‘‘biomechanopharmacology'' are also proposed.Quanmei Sun Zhuo Ao Jiantao Feng Hongyi Li Dong Han 2014Chinese Science Bulletin2014,59,28:0
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