Pasar al contenido principal
Inicio

Dedicated to discovery

  • Acerca de ELGA
    • Acerca de ELGA
    • Empleo
    • Eventos
  • Soporte
    • Planificación de laboratorio
  • Contacto
  • EN
  • DE
  • FR
  • IT
  • PT
  • EN-US
Inicio
  • Productos
    • PURELAB
      • PURELAB® Dispenser
      • PURELAB® Flex
      • PURELAB® Quest
      • PURELAB® Pharma Compliance
      • PURELAB® Chorus 1 Complete
      • PURELAB® Chorus 1
      • PURELAB® Chorus 2
      • PURELAB® Chorus 3
      • Purelab Chorus 2+ (RO/DI/UV) / (RO/EDI/UV)
    • CENTRA
      • CENTRA® R60/120
      • CENTRA® R200
      • CENTRA® RDS
    • MEDICA
      • MEDICA® 150
      • MEDICA® 7/15
      • MEDICA® BIOX 2024
      • MEDICA® Pro-R & Pro-RE
      • MEDICA® R200
      • MEDICA® EDI 15/30
      • MEDICA® Pro-LPS
      • MEDICA® Pro EDI 60/120
      • MEDICA® BIOX
      • Hubgrade
    • BIOPURE
      • BIOPURE® 300/600
    • PURENERGY® 30
    • Gama completa de productos ELGA
  • Aplicaciones
    • Análisis microbiológico
    • Bioquímica clínica
    • Cromatografía de gases
    • Cromatografía líquida
      • High Performance Liquid Chromatography
    • Cultivos celulares
    • Electroquímica
    • Espectrofotometría
    • Espectrometría de masas
    • Espectroscopia atómica
    • Genética
    • High Performance Liquid Chromatography (HPLC)
    • Inmunoquímica
    • Requisitos generales de agua de laboratorio
  • Tecnologías
    • Carbón activado
    • Electrodesionización (EDI)
    • Filtración
    • Intercambio iónico
    • PureSure
    • Ultravioleta
    • Ósmosis inversa
  • Impurezas en el agua
    • Compuestos inorgánicos
    • Compuestos orgánicos
    • Gases disueltos
    • Microorganismos y bacterias
    • Partículas
  • Conocimiento
    • BROSCHÜREN
    • Blog
    • Casos prácticos
    • Agua ultrapura
    • Manuales e informes técnicos
  • Where to buy
  • Contacto
Home
  • Contacto
  • Productos
    • PURELAB
      • PURELAB® Dispenser
      • PURELAB® Flex
      • PURELAB® Quest
      • PURELAB® Pharma Compliance
      • PURELAB® Chorus 1 Complete
      • PURELAB® Chorus 1
      • PURELAB® Chorus 2
      • PURELAB® Chorus 3
      • Purelab Chorus 2+ (RO/DI/UV) / (RO/EDI/UV)
    • CENTRA
      • CENTRA® R60/120
      • CENTRA® R200
      • CENTRA® RDS
    • MEDICA
      • MEDICA® 150
      • MEDICA® 7/15
      • MEDICA® BIOX 2024
      • MEDICA® Pro-R & Pro-RE
      • MEDICA® R200
      • MEDICA® EDI 15/30
      • MEDICA® Pro-LPS
      • MEDICA® Pro EDI 60/120
      • MEDICA® BIOX
      • Hubgrade
    • BIOPURE
      • BIOPURE® 300/600
    • PURENERGY® 30
    • Gama completa de productos ELGA
  • Aplicaciones
    • Análisis microbiológico
    • Bioquímica clínica
    • Cromatografía de gases
    • Cromatografía líquida
      • High Performance Liquid Chromatography
    • Cultivos celulares
    • Electroquímica
    • Espectrofotometría
    • Espectrometría de masas
    • Espectroscopia atómica
    • Genética
    • High Performance Liquid Chromatography (HPLC)
    • Inmunoquímica
    • Requisitos generales de agua de laboratorio
  • Tecnologías
    • Carbón activado
    • Electrodesionización (EDI)
    • Filtración
    • Intercambio iónico
    • PureSure
    • Ultravioleta
    • Ósmosis inversa
  • Impurezas en el agua
    • Compuestos inorgánicos
    • Compuestos orgánicos
    • Gases disueltos
    • Microorganismos y bacterias
    • Partículas
  • Conocimiento
    • BROSCHÜREN
    • Blog
    • Casos prácticos
    • Agua ultrapura
    • Manuales e informes técnicos
  • Where to buy
  • Contacto
  • Acerca de ELGA
    • Acerca de ELGA
    • Empleo
    • Eventos
  • Soporte
    • Planificación de laboratorio
  • Contacto
  • EN
  • DE
  • FR
  • IT
  • PT
  • EN-US
  • Política de privacidad
  • Términos y condiciones
  • Cumplimiento legal internacional
  • Patentes
  • Trademarks
  • Aviso legal
  • Silver Nanoparticles Help Heal Wounds. How Do They work?
Clinical & Pharma

Silver Nanoparticles Help Heal Wounds. How Do They work?

12 Jul 2021
- by Dr Paul Whitehead

Burn Bandage

Silver has been used since antiquity to treat burns and chronic wounds by promoting tissue repair, however, it is only over the past century that its roles in protecting wounds against infection have been better understood. 

It is now known as an effective multispectral antibacterial antiseptic and anti-inflammatory agent. The bioactive species is the Ag+ ion which binds to the cell walls of bacteria and deactivates many enzymes vital for their metabolism. However, Ag+ is prone to rapid deactivation by binding to chloride or bio-molecules in the wound microenvironment.  It is, therefore, necessary to find a means of maintaining an on-going local Ag+ concentration over the area to be treated.  

A new generation of silver-based dressings have been designed with the silver in various forms. One of the most promising is with silver in the form of nanoparticles. Silver Nanoparticles (AgNPs) are particles of silver between 1 nm and 100 nm in diameter. Due to the large ratio of surface-to-bulk silver atoms, they may also contain a large percentage of silver oxide. These particles can be designed with desired properties such as improved stability and enhanced affinity to favour uptake into cells. An extensive review of these materials has been published recently1. 

The main concern is with the potential toxicity of these silver-containing materials and it remains unclear whether silver is mobilized as active nanoparticles or as deactivated biocomplexes. This issue is the key for predicting local and systemic activity of the absorbed metal.

Roman and colleagues2 have measured the spatio-temporal distribution and the chemical transformations of silver in the wounds of four real patients who received treatment with dressings containing silver nanoparticles. 

Full-profile biopsy samples were collected from the wound beds at different times between admission and complete healing. They were analysed by the high resolution elemental imaging methods of synchrotron radiation micro X-ray fluorescence (SR-μXRF) and laser ablation-inductively coupled plasma-mass spectrometry (LA-ICP-MS), and the chemical speciation of Ag was determined by synchrotron radiation X-ray absorption near edge structure (SR-μXANES) analysis. The results show how Ag nanoparticles and ions interact with bioligands while migrating within the skin wound, as a function of its structural damage and healing progression.

Graphical abstract: Spatiotemporal distribution and speciation of silver nanoparticles in the healing wound

This image shows typical data obtained. One of the samples is shown on the left with the distributional component maps for the area marked. 

The metal was found to rapidly release onto the wound surface, followed by a significant structure-dependent millimetre-scale penetration into the damaged tissues. This was accompanied by sequential processes of metallic silver dissolution, chloride complexation, change to metal–thiol protein complexes, and final mobilization into deeper skin layers towards the vascular networks. Complete local clearance of silver was observed after 12 days of treatment in the case of full healing. These data support the capability of the dressing to exert an intense bioactive action focused onto the surface layer of the wound. The results provide an insight into the dynamics of silver in real human wounds, and a new basis for the design of innovative silver nanomaterials with optimal antibacterial efficacy and minimized risk for the patient.

Why Choose ELGA LabWater?

Even in research described in this article, where samples are analysed directly, ultrapure water from an ELGA LabWater purification system was needed to prepare standards and blanks and to ensure that equipment is scrupulously clean and free from contamination. For spatial analyses the absolute amounts of material being detected are even smaller than in trace bulk analysis. Only a system producing the cleanest and most reliable purity water is suitable. Over many years the University of Venice have relied on ELGA LabWater to provide them water quality and consistency.


References:

  1. K. Kalantari , E. Mostafavi , A. M. Afifi , Z. Izadiyan , H. Jahangirian , R. Rafiee-Moghaddam and T. J. Webster, 2020.  Wound dressings functionalized with silver  nanoparticles:  promises and pitfalls, Nanoscale,  12 , 2268—2291.

  2. M. Roman, C. Rigo, H.Castillo-Michel, D.S.Urgast, J. Feldmann, I. Munivrana, V. Vindigni, I. Mičetić, F. Benetti, C. Barbante and W. R. L. Cairns, 2020. Spatiotemporal distribution and speciation of silver nanoparticles in the healing wound Analyst,145, 6456-69.

 


Dr Paul Whitehead 

After a BA in Chemistry at Oxford University, Paul focused his career on industrial applications of chemistry. He was awarded a PhD at Imperial College, London for developing a microwave-induced-plasma detector for gas chromatography. He spent the first half of his career managing the analytical support team at the Johnson Matthey Research/Technology Centre,specialising in the determination of precious metals and characterising applications such as car-exhaust catalysts and fuel cells. Subsequently, as Laboratory Manager in R&D for ELGA LabWater, he has been involved in introducing and developing the latest water purification technologies. He now acts as a consultant for ELGA.

  • Sales Enquiry
  • Consigue una cotización
  • Technical Support
  • Encuentre un socio aprobado

Sales Enquiry

At ELGA LabWater, we have exciting offers and news about our products and services that we hope you’d like to hear about. We will use your information to predict what you might be interested in. We will treat your data with respect and you can find the details in our Privacy Policy.

ELGA LabWater works with a network of Approved Partners. In order to answer your questions or enquiries, we may pass your contact details to an Approved Partner, who may contact you directly. 

I'd like to receive updates from ELGA LabWater & ELGA Approved Partners based on my details.

Consigue una cotización

At ELGA LabWater, we have exciting offers and news about our products and services that we hope you’d like to hear about. We will use your information to predict what you might be interested in. We will treat your data with respect and you can find the details in our Privacy Policy.

ELGA LabWater works with a network of Approved Partners. In order to answer your questions or enquiries, we may pass your contact details to an Approved Partner, who may contact you directly. 

I'd like to receive updates from ELGA LabWater & ELGA Approved Partners based on my details.

Technical Support

At ELGA LabWater, we have exciting offers and news about our products and services that we hope you’d like to hear about. We will use your information to predict what you might be interested in. We will treat your data with respect and you can find the details in our Privacy Policy.

ELGA LabWater works with a network of Approved Partners. In order to answer your questions or enquiries, we may pass your contact details to an Approved Partner, who may contact you directly. 

Call us

Can't find what you are looking for?

Support Number
+44 (0)20 3567 7300
United Kingdom Sales
+44 (0)1628 879 704
United States of America Sales
+1 877-315-3542
France Sales
+33 1 40 83 65 00
China Sales
+86 400-616-8882

 

Sede central de ELGA LabWater

Lane End Business Park
Lane End, High Wycombe
HP14 3BY
Reino Unido
Tel.: +44 (0) 203 567 7300
F: +44 (0) 203 567 7205

Casos prácticos

  • Abbott Diagnostics
  • Diagnóstico médico de DASA
  • Instituto Médico NeoDIN
  • Fundación del NHS de North Staffordshire
  • Escuela técnica de Olsberg

Recursos

  • Obtenga más información sobre el agua ultrapura
  • Manuales e informes técnicos
  • Tecnologías de purificación
  • Aplicaciones
  • Impurezas en el agua
  • Latest Blog
  • Water Purity - Different Types of Pure Water
  • What is Clinical Laboratory Reagent Water (CLSI)?
  • What is Total Organic Carbon (TOC)?

© VWS (UK) Ltd. comercializado como ELGA LabWater.2025-Todos los derechos reservados.
ELGA es la marca mundial de agua de laboratorio de Veolia.

  • Política de privacidad
  • Términos y condiciones
  • Cumplimiento legal internacional
  • Patentes
  • Trademarks
  • Aviso legal
  • Idioma
    • Deutsch
    • English
    • Español
    • Français
    • Italiano
    • Português
    • 日本語
    • 中文
  • Otros sitios de Veolia
    • Veolia
    • Veolia Foundation
    • Veolia Water Technologies
Elga Veolia
TOP

© 2017 ELGA Veolia