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ImmuneCited

Antibacterial self-healing bilayer dressing for epidermal sensors and accelerate wound repair.

Asghar Eskandarinia, Mosayeb Gharakhloo, Paria Khaloo Kermani, Sepehr Navid, Mohammad Ali Salami et al.
Other Carbohydrate polymers 2023 32 sitasi
PubMed DOI
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Study Design

Jenis Studi
In Vitro
Populasi
In vitro + animal wound model
Intervensi
Antibacterial self-healing bilayer dressing for epidermal sensors and accelerate wound repair. Chitosan-arginine bilayer hydrogel
Pembanding
Control dressing
Luaran Utama
Wound healing and antibacterial activity
Arah Efek
Positive
Risiko Bias
Unclear

Abstract

This study aimed to investigate the effect of the bilayer hydrogel as a wound dressing on the wound-healing rate. We synthesized a self-healing hydrogel with optimized formulation by introducing natural polymer (chitosan) and arginine to the hydrogel composition. We then characterized the hydrogels using FT-IR, thermal analysis, mechanical testing, and in vitro and in vivo assay. The resulting bilayer wound dressing offers a lot of desirable characteristics, including good self-healing and repeatable adhesiveness. Likewise, the conductive bilayer wound dressing could be used to analyze the patient's healthcare data in real-time as epidermal sensors. Bilayer wound dressings remarkably have broad antibacterial efficacy against Gram-positive and Gram-negative bacteria. The potential applications of this bilayer wound dressing are illustrated by detectable body movement and conductivity. The wound-healing rate of bilayer wound dressings containing chitosan and arginine was higher, but those without the aforementioned ingredients had lower wound-healing efficacy. Additionally, promoting collagen synthesis and reducing wound infection has a considerable therapeutic impact on wounds. These results could have significant implications for the development of high-performance wound dressings.

TL;DR

The wound- healing rate of bilayer wound dressings containing chitosan and arginine was higher, but those without the aforementioned ingredients had lower wound-healing efficacy, which could have significant implications for the development of high-performance wound dressing.

Used In Evidence Reviews

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