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Updated: Oct 7, 2026

Synthesis of Soft Polysiloxane-urea Elastomers for Intraocular Lens Application
Published on: March 8, 2019
PEG-grafted dopamine methacrylate-functionalized hydroxyl-terminated PDMS-based silicone hydrogel contact lenses for
Haoran Pan1, Xudong Wu1, Shiqin Chen1
1School of Chemical Engineering and Technology, Guangdong Industry Polytechnic University, Guangzhou, China.
Abstract:
Ocular drug delivery systems characterized by extended retention time and high bioavailability are urgently required to overcome the limitations of conventional eye drops. In this study, a novel drug-loaded silicone hydrogel contact lens (SHCL) was developed utilizing hydroxyl-terminated polydimethylsiloxane (PDMS-OH) as the silicone matrix, poly(ethylene glycol)-grafted methacryloyldopamine (PEG-MAD) as a functional monomer, and sodium acetyl hyaluronate (SAH) as a surface coating. PEG-MAD was synthesized via a lipase-catalyzed reaction between carboxyl-terminated PEG (PEG-COOH) and methacryloyldopamine (MAD). This synthetic approach not only prevented the oxidation and yellowing of MAD during high-temperature polymerization but also introduced additional hydrogen bonds, thereby enhancing the mechanical properties and drug-loading capacity of the hydrogel. The SHCL was fabricated through free radical polymerization, followed by drug loading (using levofloxacin as a model drug) and SAH coating. The optimized SHCL exhibited a water content of 59.5%, high optical transmittance (91% in the visible light region), and no ocular irritation (as evaluated by the CAM test, with an irritation score of 0). Compared to control groups lacking PEG-MAD or using 3-(Methacryloyloxy)propyltris(trimethylsiloxy)silane (TRIS) as the silicone matrix, the developed SHCL demonstrated a higher drug-loading capacity (3.28 μg/mg dry gel) and sustained drug release over 96 h, along with a significant reduction in human serum albumin adsorption. These findings indicate that the PEG-MAD-functionalized, PDMS-OH-based SHCL holds considerable promise for clinical applications in ocular drug delivery.
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