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凝集素介导的生物黏附微粒制剂研发趋势 被引量:2
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作者 曾鹏云 潘俊 陆伟跃 《药学进展》 CAS 2004年第2期59-63,共5页
阐述了第二代生物黏附微粒制剂的概念及黏附机制 ,介绍了影响凝集素黏附性能的因素和凝集素的类型 ,并对该系统的应用及发展趋势进行了概述。生物黏附释药系统作为一种新颖的药物释放系统 ,以特有的靶向性 ,缓、控释等优势成为很有前途... 阐述了第二代生物黏附微粒制剂的概念及黏附机制 ,介绍了影响凝集素黏附性能的因素和凝集素的类型 ,并对该系统的应用及发展趋势进行了概述。生物黏附释药系统作为一种新颖的药物释放系统 ,以特有的靶向性 ,缓、控释等优势成为很有前途的给药系统。其中凝集素介导的第二代生物黏附给药系统具有特异靶向性 ,微粒制剂又在提高药物稳定性。 展开更多
关键词 凝集素 生物黏附微粒制剂 研发趋势 给药系统
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直流GIL内金属微粒对表面电荷积聚影响的三维仿真及实验研究 被引量:15
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作者 王志远 王健 +1 位作者 李庆民 刘思华 《中国电机工程学报》 EI CSCD 北大核心 2016年第24期6718-6726,共9页
针对直流GIL中金属微粒污染问题,该文研究了其对模型绝缘子表面电荷积聚的影响。基于麦克斯韦理论,纳入微粒污染以及气体侧空间离子的产生、复合、迁移、扩散等作用,建立了微粒污染情况下包含气体侧微观机制的绝缘子表面电荷积聚模型,利... 针对直流GIL中金属微粒污染问题,该文研究了其对模型绝缘子表面电荷积聚的影响。基于麦克斯韦理论,纳入微粒污染以及气体侧空间离子的产生、复合、迁移、扩散等作用,建立了微粒污染情况下包含气体侧微观机制的绝缘子表面电荷积聚模型,利用COMSOL软件对三维情况下绝缘子形状、金属微粒不同黏附形态以及不同气体环境对表面电荷积聚的影响进行了求解分析,同时搭建了考虑导电微粒情况的电荷测量平台,对仿真中典型设置进行实验,验证仿真结果的正确性。研究表明,随截面底角减小,电荷更多积聚于绝缘子表面;黏附于绝缘子表面的金属微粒会引起表面电荷大积聚激增,沿高低压电极连线黏附微粒引起积聚最明显;气体环境改变会引起表面电荷积聚发生改变,低气压时更易积聚电荷。 展开更多
关键词 直流GIL 表面电荷积聚 微粒黏附 微观机制 三维仿真
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Effect of small peptide(P-15) on HJMSCs adhesion to hydroxyap-atite
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作者 Wei Cheng Xin Tong +2 位作者 Qin Gang Hu Yong Bin Mou Hai Yan Qin 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2016年第2期102-107,109-112,共6页
P-15, a synthetic peptide of 15-amino acids, has been tested in clinical trials to enhance cell adhesion and promote osseointe-gration. This feature of P-15 has also inspired the development of designing new bone subs... P-15, a synthetic peptide of 15-amino acids, has been tested in clinical trials to enhance cell adhesion and promote osseointe-gration. This feature of P-15 has also inspired the development of designing new bone substitute materials. Despite the increasing applications of P-15 in bone graft alternatives, few studies focus on the mechanism of cell adhesion promoted by P-15 and the mechanical property changes of the cells interacting with P-15. In this article, we used atomic force microscope(AFM) based single cell indentation force spectroscopy to study the impact of P-15 on the stiffness and the adhesion ability of human jaw bone mesenchymal stem cells(HJMSCs) to hydroxyapatite(HA). We found that the stiffness of HJMSCs increases as the concentration of P-15 grows in short culture intervals and that the adhesion forces between HJMSCs and HA particles in both the presence and absence of P-15 are all around 30 p N. Moreover, by calculating the binding energy of HJMSCs to HA particles mixed with and without P-15, we proved that P-15 could increase the adhesion energy by nearly four times. Scanning electron microscope(SEM) was also exploited to study the morphology of HJMSCs cultured in the presence and absence of P-15 on HA disc surface for a short term. Apparent morphological differences were observed between the cells cultured with and without P-15. These results explain the probable underlying adhesion mechanism of HJMSC promoted by P-15 and can serve as the bases for the design of bone graft substitute materials. 展开更多
关键词 atomic force microscopy (AFM) cell stiffness force spectroscopy
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