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硅油附着与乳化:使用微流控芯片和“芯片眼”进行的体外评估。

Adhesion of silicone oil and emulsification: an in vitro assessment using a microfluidic device and 'Eye-on-a-Chip'.

机构信息

Department of Mechanical Engineering, Faculty of Engineering, University of Hong Kong, Hong Kong, Hong Kong SAR, China.

Department of Eye and Vision Science, University of Liverpool, Liverpool, UK.

出版信息

Acta Ophthalmol. 2019 May;97(3):313-318. doi: 10.1111/aos.13982. Epub 2018 Nov 28.

Abstract

PURPOSE

Silicone oil (SiO) with additives of high-molecular-weight (HMW) SiO molecules, eases both the injection and removal. When used inside an eye, it remains unclear how increasing extensional viscosity of SiO might reduce emulsification. Using cell-lined models, this study aims to understand the reason why SiO with HMW is less prone to emulsification.

METHODS

The adhesion of SiO was studied and recorded in a cell-coated microchannel by optical microscopy. The resistance of SiO against emulsification was tested on another cell-coated eye-on-a-chip platform, which was subject to simulated saccadic eye movements, for 4 days. Silicone oil (SiO) candidates with HMW, SiO and SiO , and their counterparts SiO and SiO without HMW, were tested. The quantity of the SiO emulsified droplets formed was assessed daily by optical microscopy.

RESULTS

When flowing in the microchannel, SiO adheres on the cell-coated substrate. The number of droplets is generally lower in SiO with HMW than their counterparts. At the end of the experiment, the average numbers of droplets in SiO (29.1 ± 41.0) and SiO (9.1 ± 19.5) are higher than those in SiO (6.0 ± 4.5) and SiO (5.6 ± 4.1).

CONCLUSION

A new mechanism of emulsification of SiO is proposed: SiO adheres to ocular tissue to form emulsified droplets. The presence of HMW, which increases the extensional viscosity, may resist the break-up of SiO from the substrate to form emulsified droplets. When tested in a physiologically representative platform, the use of HMW in SiO generally reduces the number of droplets formed in vitro.

摘要

目的

添加高分子量(HMW)SiO 分子的硅油(SiO)可简化注射和移除过程。当在眼睛内使用时,尚不清楚增加 SiO 的拉伸黏度如何减少乳化。本研究使用细胞衬里模型旨在理解为什么 HMW SiO 不易乳化的原因。

方法

通过光学显微镜研究并记录 SiO 在细胞涂覆的微通道中的附着情况。在另一个细胞涂覆的眼芯片平台上测试 SiO 抵抗乳化的能力,该平台受到模拟的眼球跳动运动的影响,持续 4 天。测试了具有 HMW 的候选硅油(SiO)、SiO 和 SiO 及其对应的不具有 HMW 的 SiO 和 SiO。每天通过光学显微镜评估形成的 SiO 乳化液滴的数量。

结果

当在微通道中流动时,SiO 附着在细胞涂覆的基底上。具有 HMW 的 SiO 中形成的液滴数量通常低于其对应物。在实验结束时,SiO(29.1±41.0)和 SiO(9.1±19.5)中的平均液滴数量高于 SiO (6.0±4.5)和 SiO (5.6±4.1)。

结论

提出了一种新的 SiO 乳化机制:SiO 附着在眼组织上形成乳化液滴。HMW 的存在增加了拉伸黏度,可能会阻止 SiO 从基底破裂形成乳化液滴。在具有生理代表性的平台上进行测试时,SiO 中的 HMW 通常会减少体外形成的液滴数量。

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