Skip to content
Review Open access

Applications of Nanomaterials in Chronic Wound Healing and Scar Prevention

Aug 2026 · International Journal of Nanomedicine · Vol 21, pp. 1-18 · 0 citations · 120 references
Medicine

TL;DR

This review comprehensively analyzes the latest advances in metallic, carbon-based, polymeric, and composite nanomaterials, focusing on how they effectively treat chronic wounds by scavenging reactive oxygen species, inducing the polarization of macrophages from the pro-inflammatory M1 to the reparative M2 phenotype, promoting angiogenesis, and enabling controlled drug release.

Abstract

Abstract Chronic wounds are difficult to heal due to pathological microenvironments characterized by persistent inflammation, oxidative stress, hypoxia, and biofilm infections; traditional therapies are unable to comprehensively address these issues. Nanomaterials, with their unique physicochemical properties, bring about a paradigm shift in treatment by regulating the wound microenvironment through multi-target mechanisms. This review comprehensively analyzes the latest advances in metallic, carbon-based, polymeric, and composite nanomaterials, focusing on how these materials effectively treat chronic wounds by scavenging reactive oxygen species, inducing the polarization of macrophages from the pro-inflammatory M1 to the reparative M2 phenotype, promoting angiogenesis, and enabling controlled drug release. Emerging stimulus-responsive nanoplatforms and composite systems can synergistically remove biofilms, reduce inflammation, and remodel the extracellular matrix, achieving the dual effects of accelerated healing and scar reduction. We also discuss challenges in translation, including biosafety, pharmacokinetics, and large-scale production, and propose future directions for integration with smart drug delivery, cell therapy, and gene editing. This review provides a theoretical basis and research guidance for utilizing nanotechnology to overcome barriers to chronic wound healing and prevent pathological scarring.

Read PDF

Similar papers

Review Sep 2026

MXene-based multifunctional wound dressings for diabetic wound healing: mechanisms, smart sensing, material integration and translational challenges.

Diabetic wounds continue to present a clinical challenge in that the persistent inflammatory state, oxidative stress, hyperglycemia, impaired angiogenesis, infection, and defective ECM remodelling all contribute to delayed tissue repair. The purpose of this review is to critically assess recent research on MXene-based...

Debarati Basu, A. Mukherjee, Koustav Dutta et al. · 0 citations
Review Open access Sep 2026

From Infection Control to Tissue Regeneration: Mechanisms, Design Strategies, and Smart Advances in Antibacterial Hydrogels

Bacterial infection, biofilm formation, and the associated oxidative stress and persistent inflammation represent major obstacles to wound healing, tissue engineering, and implantable medical devices. Owing to their highly hydrated three-dimensional networks, favorable tissue compatibility, and versatile capacity for f...

Peng Liu, Lin Chen, Jin-Jun Tian et al. · 0 citations
Review Open access Sep 2026

Microalgae: Emerging forces and prospects in the field of wound healing

Viable microalgal cells have recently emerged as promising photosynthetic components of advanced wound healing systems because they can combine light-regulated oxygen generation, bioactive metabolite production, intrinsic imaging potential, and engineering flexibility within a single platform. In wounds with impaired...

Rui-Ping Zeng, Hai-Feng Hu, Bo-Bin Mi et al. · 0 citations
Sep 2026

Surface-engineered resveratrol-loaded therapeutic nanoparticles for remodeling MRSA-infected wound microenvironment.

Drug-resistant bacterial infection, oxidative stress, and persistent inflammation collectively hinder chronic wound healing, yet most antibacterial nanomaterials fail to address these interconnected pathological factors. Herein, we report a simple and green nanoplatform based on surface-quaternized, resveratrol-loaded...

Xiang Che, Ze-Na Chen, Qian Shen et al. · 0 citations
Review Aug 2026

Marine algae as a source of bioactive nanofibers: Innovations in tissue repair and skin regeneration.

Chronic wounds persist as a major clinical challenge due to sustained inflammation, high infection risk, and inadequate responsiveness to conventional wound dressings. These limitations underscore the need for advanced biomaterials capable of modulating the wound microenvironment, supporting tissue regeneration, and ov...

L. A. da Silva, Saeid Ali Bozorgzadeh, P. D. Oliveira de Almeida et al. · 0 citations
Aug 2026

MBene-Empowered Multifunctional Sprayable Hydrogel for Burn Wound Treatment.

PM hydrogel combined with light irradiation effectively remodels the wound microenvironment and markedly accelerates healing of infected burn wounds, reaching a 94% healing rate by day 14, and Transcriptomic analyses reveal that PM promotes tissue repair by modulating immune responses, enhancing cell migration and diff...

Chunhong Chen, Jiangshan Liu, Xulu Ma et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.