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一种新型的、比水重的硅油:全氟己基辛烷在聚二甲基硅氧烷中的溶液。

A new, heavier-than-water silicone oil: a solution of perfluorohexyloctane in polydimethylsiloxane.

作者信息

Kim Y K, Günther B, Meinert H

机构信息

Fluoron GmbH, Neu-Ulm, Germany.

出版信息

Eur J Ophthalmol. 2005 Sep-Oct;15(5):627-37.

Abstract

PURPOSE

To pre p a re and explore new solutions of semifluorinated alkane in silicone oil, which have a specific gravity slightly higher than silicone oil and vitreous fluid (referred to in the following as heavier-than-water silicone oils (HWSs), and to investigate, in vitro, whether HWSs can be used to plug retina holes, while allowing dehydration of the subretinal space.

METHODS

HWS solutions were pre p a red with silicone oil 5000 and perfluorohexyloctane (F6H8). The stability was investigated under different conditions. The viscosity was determined by means of a capillary viscometer. The surface and interface tension were measured using the ring method.

RESULTS

HWSs are insoluble in an aqueous medium. Densiron(R)68 (HWS 1.06) is a transparent homogeneous liquid which is slightly heavier (1.06 g/cm3) than water and has a refractive index close to that of vitreous liquid. Densiron68 (HWS 1.06) has a low viscosity (1480 mPas) and interface tension (40.82 mN/m), making it an effective tamponade in the surgical treatment of an inferior detached retina. In addition, the interfaces between Densiron68 and other perfluorocarbon liquids are clearly visible. However, the interface layer between Densiron68 and water is not clear. Finally, all HWSs are stable over the long term at ambient temperatures, as well as physically and thermally resistant. CONCLUSIONS. Due to its physiochemical properties, Densiron68 could meet the requirements for a heavier-than-water tamponade.

摘要

目的

制备并探索硅油中半氟化烷烃的新溶液,其比重略高于硅油和玻璃体液(以下简称比水重的硅油(HWSs)),并在体外研究HWSs是否可用于封堵视网膜裂孔,同时使视网膜下间隙脱水。

方法

用硅油5000和全氟己基辛烷(F6H8)制备HWS溶液。在不同条件下研究其稳定性。用毛细管粘度计测定粘度。用环法测量表面张力和界面张力。

结果

HWSs不溶于水介质。Densiron(R)68(HWS 1.06)是一种透明均匀液体,比重略高于水(1.06 g/cm3),折射率接近玻璃体液。Densiron68(HWS 1.06)具有低粘度(1480 mPas)和界面张力(40.82 mN/m),使其成为治疗下方视网膜脱离手术中的有效填塞物。此外,Densiron68与其他全氟化碳液体之间的界面清晰可见。然而,Densiron68与水之间的界面层不清晰。最后,所有HWSs在环境温度下长期稳定,并且具有物理和热稳定性。结论。由于其物理化学性质,Densiron68可满足比水重的填塞物的要求。

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