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3种不同模式的内皮细胞/平滑肌细胞共培养中低密度脂蛋白的水滤过率及浸润/蓄积情况

Water filtration rate and infiltration/accumulation of low density lipoproteins in 3 different modes of endothelial/smooth muscle cell co-cultures.

作者信息

Ding ZuFeng, Fan YuBo, Deng XiaoYan

机构信息

School of Biological Science & Medical Engineering, Beihang University, Beijing, China.

出版信息

Sci China C Life Sci. 2009 Nov;52(11):1023-9. doi: 10.1007/s11427-009-0135-z. Epub 2009 Nov 24.

Abstract

Using different endothelial/smooth muscle cell co-culture modes to simulate the intimal structure of blood vessels, the water filtration rate and the infiltration/accumulation of LDL of the cultured cell layers were studied. The three cell culture modes of the study were: (i) The endothelial cell monolayer (EC/Phi); (ii) endothelial cells directly co-cultured on the smooth muscle cell monolayer (EC-SMC); (iii) endothelial cells and smooth muscle cells cultured on different sides of a Millicell-CM membrane (EC/SMC). It was found that under the same condition, the water filtration rate was the lowest for the EC/SMC mode and the highest for the EC/Phi mode, while the infiltration/accumulation of DiI-LDLs was the lowest in the EC/Phi mode and the highest in the EC-SMC mode. It was also found that DiI-LDL infiltration/accumulation in the cultured cell layers increased with the increasing water filtration rate. The results from the in vitro model study therefore suggest that the infiltration/accumulation of the lipids within the arterial wall is positively correlated with concentration polarization of atherogenic lipids, and the integrity of the endothelium plays an important role in the penetration and accumulation of atherogenic lipids in blood vessel walls.

摘要

利用不同的内皮细胞/平滑肌细胞共培养模式来模拟血管内膜结构,研究了培养细胞层的水滤过率以及低密度脂蛋白(LDL)的浸润/蓄积情况。本研究的三种细胞培养模式为:(i)内皮细胞单层(EC/Phi);(ii)内皮细胞直接在平滑肌细胞单层上共培养(EC-SMC);(iii)内皮细胞和平滑肌细胞在Millicell-CM膜的不同侧培养(EC/SMC)。结果发现,在相同条件下,EC/SMC模式的水滤过率最低,EC/Phi模式的水滤过率最高,而DiI-LDLs的浸润/蓄积在EC/Phi模式中最低,在EC-SMC模式中最高。还发现培养细胞层中DiI-LDL的浸润/蓄积随水滤过率的增加而增加。因此,体外模型研究结果表明,动脉壁内脂质的浸润/蓄积与致动脉粥样硬化脂质的浓度极化呈正相关,并且内皮的完整性在致动脉粥样硬化脂质在血管壁中的渗透和蓄积中起重要作用。

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