Issue 3, 2025

Topical siRNA therapy of diabetic-like wound healing

Abstract

Non-healing wounds are a serious complication in diabetic patients. One of the detrimental factors contributing to limited wound healing is the accumulation of metalloproteinase-9 (MMP-9) in the wound. Selective inhibition of MMP-9 is one of the established therapeutic targets for diabetic wound healing. Here, a functional and biocompatible wound dressing is developed to enable a controlled release of a traceable vector loaded with the antisense siRNA against MMP-9 in the wound. The dressing consists of degradable polymer nanofibers embedded with a vector nanosystem – polymer-coated fluorescent nanodiamonds optimized for the binding of siRNA and colloidal stability of nanodiamond–siRNA complexes in a physiological environment. The developed dressing is tested on murine fibroblasts and also applied to wounds in a diabetic murine model to evaluate its suitability in terms of in vivo toxicity, biological efficacy, and handling. The treatment results in significant local inhibition of MMP-9 and a shortening of the wound healing time. The scar formation in treated diabetic-like mice becomes comparable with that in non-treated diabetes-free mice. Our results suggest that the application of our biocompatible dressing loaded with a non-toxic vector nanosystem is an effective and promising approach to gene therapy of non-healing wounds.

Graphical abstract: Topical siRNA therapy of diabetic-like wound healing

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Article information

Article type
Paper
Submitted
14 Jul 2024
Accepted
21 Nov 2024
First published
22 Nov 2024
This article is Open Access
Creative Commons BY-NC license

J. Mater. Chem. B, 2025,13, 1037-1051

Topical siRNA therapy of diabetic-like wound healing

E. Neuhoferova, M. Kindermann, M. Buzgo, K. Vocetkova, D. Panek, P. Cigler and V. Benson, J. Mater. Chem. B, 2025, 13, 1037 DOI: 10.1039/D4TB01547A

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