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The need for bioactive dressings increases with the population aging and the prevalence of chronic diseases. In contrast, there are very few dressings on the market which are designed to display a chosen bioactivity. In this context, we investigated the surface-functionalization of silicone wound dressing with bioactive peptides. One of the challenges was to avoid multistep grafting reactions involving...
We have recently reported on a new class of silicone–peptide‵ biopolymers obtained by polymerization of di‐functionalized chlorodimethylsilyl hybrid peptides. Herein, we describe a related strategy based on dichloromethylsilane‐derived peptides, which yield novel polymers with a polysiloxane backbone, comparable with a silicone‐bearing pendent peptide chains. Interestingly, polymerization is chemoselective...
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