PHYSICAL ANTIMICROBIAL SPRAY DRESSING (JUC): A COMPREHENSIVE SYSTEMATIC REVIEW OF ITS ANTIMICROBIAL MECHANISMS, CLINICAL EFFICACY, AND REAL-WORLD UTILIZATION

Fuente: Zenodo
Enregistré dans:
Détails bibliographiques
Auteur principal: You Liang Cai1, Jeannie, Dong Ling Qiu2, Tjing Yung Loo*2
Format: Recurso digital
Langue:anglais
Publié: Zenodo 2026
Accès en ligne:
Tags: Ajouter un tag
Pas de tags, Soyez le premier à ajouter un tag!
_version_ 1866901066146119680
author You Liang Cai1, Jeannie, Dong Ling Qiu2, Tjing Yung Loo*2
author_facet You Liang Cai1, Jeannie, Dong Ling Qiu2, Tjing Yung Loo*2
contents <p><span lang="EN-HK">Antimicrobial resistance (AMR) constitutes a global public health crisis that undermines clinical infection control and human health outcomes. JUC, a FDA- and CE-certified physical antimicrobial spray dressing, is a novel alternative to chemical antimicrobials, utilizing water-soluble organosilicon quaternary ammonium salt (Si-QAS) to form a dual-layer nano-film on biological tissues and medical device surfaces. This nano-film exerts broad-spectrum antimicrobial effects via a physical electrostatic mechanism, eliminating the risk of drug-resistant strain development while providing long-acting infection prevention. This systematic review synthesizes peer-reviewed preclinical, clinical, and mechanistic research on JUC, including its molecular structure, dual-layer nano-film formation mechanism, physical antimicrobial action, preclinical efficacy, clinical outcomes across diverse indications, safety profile, regulatory status, and comparative advantages over conventional antimicrobial strategies. It also identifies critical research gaps and future directions for the translation and optimization of JUC in global infection control. A comprehensive literature search was conducted across PubMed, Embase, Web of Science, and Chinese biomedical databases (CNKI, WanFang) for studies published up to 2026, with strict inclusion criteria for original research, clinical trials, and mechanistic investigations. The review confirms JUC’s efficacy in reducing hospital-acquired infections (HAIs) and treating microbial skin/wound infections, with a favorable safety profile and unique advantages in addressing AMR.</span></p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18796050
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle PHYSICAL ANTIMICROBIAL SPRAY DRESSING (JUC): A COMPREHENSIVE SYSTEMATIC REVIEW OF ITS ANTIMICROBIAL MECHANISMS, CLINICAL EFFICACY, AND REAL-WORLD UTILIZATION
You Liang Cai1, Jeannie, Dong Ling Qiu2, Tjing Yung Loo*2
<p><span lang="EN-HK">Antimicrobial resistance (AMR) constitutes a global public health crisis that undermines clinical infection control and human health outcomes. JUC, a FDA- and CE-certified physical antimicrobial spray dressing, is a novel alternative to chemical antimicrobials, utilizing water-soluble organosilicon quaternary ammonium salt (Si-QAS) to form a dual-layer nano-film on biological tissues and medical device surfaces. This nano-film exerts broad-spectrum antimicrobial effects via a physical electrostatic mechanism, eliminating the risk of drug-resistant strain development while providing long-acting infection prevention. This systematic review synthesizes peer-reviewed preclinical, clinical, and mechanistic research on JUC, including its molecular structure, dual-layer nano-film formation mechanism, physical antimicrobial action, preclinical efficacy, clinical outcomes across diverse indications, safety profile, regulatory status, and comparative advantages over conventional antimicrobial strategies. It also identifies critical research gaps and future directions for the translation and optimization of JUC in global infection control. A comprehensive literature search was conducted across PubMed, Embase, Web of Science, and Chinese biomedical databases (CNKI, WanFang) for studies published up to 2026, with strict inclusion criteria for original research, clinical trials, and mechanistic investigations. The review confirms JUC’s efficacy in reducing hospital-acquired infections (HAIs) and treating microbial skin/wound infections, with a favorable safety profile and unique advantages in addressing AMR.</span></p>
title PHYSICAL ANTIMICROBIAL SPRAY DRESSING (JUC): A COMPREHENSIVE SYSTEMATIC REVIEW OF ITS ANTIMICROBIAL MECHANISMS, CLINICAL EFFICACY, AND REAL-WORLD UTILIZATION
url https://doi.org/10.5281/zenodo.18796050