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Updated: Apr 22, 2026

Synthesis of Soft Polysiloxane-urea Elastomers for Intraocular Lens Application
Published on: March 8, 2019
Toward a Customized Vitreous Substitute: Swelling Behavior, Enzymatic Degradation, and Cellular Adhesion of a
Michelle Mueller1, Dalya Yapar1, Katja Lemmer1
1Eye Clinic Sulzbach, Klaus Heimann Eye Research Institute, Knappschaft Hospital Saar, Sulzbach, Germany.
Introduction:
Hyaluronic acid (HA)-based hydrogels are promising vitreous substitutes, but clinical translation requires more than biocompatibility alone. Key determinants such as intraocular swelling, enzymatic stability, and cellular interactions must be precisely controlled. This study investigated strategies to further refine an advanced HA hydrogel toward these requirements.
Methods:
UV-crosslinked HA hydrogels were tested as chunks and injectable extrudates under varying osmolarities. Swelling behavior was analyzed in physiological media, including a dehydration-rehydration protocol. Enzymatic degradation assays with hyaluronidase, trypsin, and collagenase were performed, and fibroblast adhesion/proliferation was evaluated in the context of proliferative vitreoretinopathy.
Results:
Swelling was formulation- and format-dependent, with pre-dehydrated extrudates reaching up to 1.8-fold baseline weight. Only hyaluronidase induced degradation, while proteases had no effect. Fibroblasts showed reduced proliferation on the hydrogel surface.
Conclusion:
Systematic tuning of swelling, enzymatic stability, and antifibrotic properties advances HA hydrogels toward clinical application as customizable vitreous substitutes.

