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1)  capillary adhesion
毛细黏附
1.
In this paper,capillary adhesion of a soft membrane with an arbitrary shape under capillary force is investigated.
软薄膜的毛细黏附问题在微机电系统(MEMS)、生物系统中大量存在,同时在薄膜的生产工艺中也至关重要。
2)  capillary stiction control technology
毛细黏附控制技术
1.
In view of the importance of capillary stiction with respect to the performance of MEMS/NEMS device, this paper analyzes the effects of stiction failures on the MEMS/NEMS device performance, the capillary stiction mechanisms on micro/nano scales, as well as the capillary stiction control technology.
鉴于毛细黏附问题对微/纳机电器件性能的重要影响,本文综述毛细黏附力对微/纳机电系统器件性能的影响效果,微/纳尺度的毛细黏附力作用规律,以及毛细黏附控制技术。
3)  Cell adhesion
细胞黏附
1.
Effect of pseudo CO_2 pneumoperitoneum on cell adhesion capability of cultured endometrium cancer cells;
模拟CO_2气腹对人子宫内膜癌细胞黏附能力的影响
2.
Effect of cell adhesion on vasodilator-stimulated phosphoprotein phosphorylation;
细胞黏附对血管扩张刺激磷蛋白磷酸化的影响
3.
Objective To investigate the feasibility of osteonectin to inhibit human lens epithelial cell adhesion by observing the influence of microdose osteonectin on human lens epithelial cells number and morphologic character when they adhered to the artificial lens.
目的通过观察骨连蛋白的微量加入对晶状体上皮细胞黏附于人工晶状体表面的数目及形态特征的影响,探讨骨连蛋白有效抑制晶状体上皮细胞黏附的可行性。
4)  bacterial adhesion
细菌黏附
1.
Surface modification of expanded polytetrafluoroethylene membrane by oxygen plasma immersion ion implantation and its antibacterial adhesion efficiency
氧等离子注入对膨体聚四氟乙烯膜表面性能和细菌黏附影响的实验研究
5)  Bacteria adhesion
细菌黏附
1.
Influence of TiN coating on bacteria adhesion of Ti surface;
氮化钛膜对纯钛表面细菌黏附能力的影响
2.
Study on bacteria adhesion to intracardiac transplanted materials in vivo;
活体动物心脏植入材料细菌黏附的研究
6)  cell attachment
细胞黏附
1.
Objective To investigate the impact of immobilized arginine-glycine-aspartic acid(RGD) containing peptides on cell attachment of collagen scaffold.
目的将促黏附分子RGD肽(精氨酸-甘氨酸-天冬氨酸)固定于胶原材料,检测其对细胞黏附性的影响。
2.
Together, these results suggest the effects of FAAP on cell attachment.
同时,细胞黏附实验表明,FAAP与LR对细胞黏附影响类似,也能够抑制细胞的黏附。
补充资料:内皮细胞黏附分子-1
分子式:
CAS号:

性质:又称内皮细胞黏附分子-1。由589个氨基酸组成,分子量115000。仅表达于内皮细胞的选择素。内皮细胞在受到细胞因子(如TNF-α、IL-1等)或内毒素的刺激后,迅速合成E选择素并转移到内皮细胞的管腔面。它通过与唾液酸化路易斯糖(s-Lex)及其同类异构物(s-Lea)、皮肤淋巴细胞相关抗原(CLA)的相互作用,使内皮细胞与中性粒细胞、单核细胞、CD4+记忆T细胞与内皮细胞发生黏附作用,为介导白细胞与内皮细胞之间起始阶段黏附的重要细胞黏附分子。

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