Aim: To examine the efficiency of O44, a partial fluorinated octane, as a solvent for silicone oil adhesions on intraocular lenses.

Materials And Methods: After placing silicone- and PMMA-lenses in silicone oil, the adhesions were treated with O44. The extent of silicone oil adhesions and the effectiveness of O44 were studied by gross microscopy by scanning electrone microscopy (SEM) and combined energy dispersive spectrometry (EDX). Furthermore an explanted silicone lens with oil adhesions was treated with O44 and examined. To simulate the effect of adhesion proteins PMMA- and silicone lenses were placed in silicone oil and human plasma.

Results: With EDX it was possible to prove that O44 is able to remove silicone oil adhesions from PMMA-lenses. The removal from an explanted silicone lens by O44 could be demonstrated by light microscopy. Silicone oil adhesions on intraocular lenses (IOL's) in vitro showed a different oil coverage than the IOL in vivo. Silicone lenses in vitro were often covered by a homogenous oil film and therefore the demonstration of the silicone adhesions and of the efficacy of O44 was difficult. The adhesions of IOL's placed additional in human plasma did not show any differences.

Conclusions: O44 may be a successful intraoperative tool to remove silicone oil adhesions avoiding explantation of silicone oil contaminated IOL's. Silicone oil adhesions in vivo seem to be influenced by adhesive proteins.

Download full-text PDF

Source
http://dx.doi.org/10.1055/s-2008-1034752DOI Listing

Publication Analysis

Top Keywords

silicone oil
40
oil adhesions
36
silicone
15
oil
13
adhesions intraocular
12
adhesions
11
solvent silicone
8
o44
8
adhesions treated
8
treated o44
8

Similar Publications

Introducing PES porous membrane to establish bionic autocrine channels: A lubricating, anti-wear antifouling coating.

Mar Pollut Bull

January 2025

Department of Materials Science and Engineering, Dalian Maritime University, Dalian 116026, PR China; Dalian Key Laboratory of Internal Combustion Engine Tribology and Reliability Engineering, Dalian 116026, PR China. Electronic address:

As a global challenge, marine biofouling is causing serious economic losses and adverse ecological impacts. In recent years, a variety of promising and environmentally friendly anti-fouling strategies have emerged, among which the excellent anti-fouling performance of bionic autocrine coatings has been recognized. However, bionic autocrine coatings still suffer from uncontrollable secretion behavior, poor mechanical stability, and poor abrasion resistance.

View Article and Find Full Text PDF

Purpose: Formation of a full thickness macular hole (FTMH) after vitrectomy is rare. The aim of this study was to describe risk factors, clinical course, anatomical and functional prognosis of secondary FTMH development following surgery for primary rhegmatogenous retinal detachment (RRD).

Methods: Retrospective study.

View Article and Find Full Text PDF

A 42 year old Afro-Caribbean man underwent Baerveldt Glaucoma Implant (BGI) surgery for silicone oil induced glaucoma. Three months following initial surgery, the 3-0 prolene ripcord suture was removed. Anterior segment OCT demonstrates the position of the intracameral portion of the tube before and after the 3/0 prolene stent suture (PSS) removal.

View Article and Find Full Text PDF

Poly(dimethylsiloxane) (PDMS) materials have been widely researched and applied as fouling-release coatings. Incorporation of silicone oils into PDMS has been shown to improve the antifouling properties of PDMS materials. In this research, we applied sum frequency generation (SFG) vibrational spectroscopy to study PDMS materials incorporated with various silicone oils containing phenyl groups in air, water, and protein solutions.

View Article and Find Full Text PDF

The discharge of oil-laden wastewater from industrial processes and the frequent occurrence of oil spills pose severe threats to the ecological environment and human health. Membrane materials with special wettability have garnered attention for their ability to achieve efficient oil-water separation by leveraging the differences in wettability at the oil-water interface. These materials are characterized by their simplicity, energy efficiency, environmental friendliness, and reusability.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!