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False /oidc-signin/en-us/ Convatec Group Contact Us България България Bosna i Hercegovina Bosna i Hercegovina Česko Česko Danmark Danmark Österreich Österreich Schweiz (Deutsch) Schweiz (Deutsch) Deutschland Deutschland Ελλάδα Ελλάδα United Kingdom United Kingdom Ireland Ireland España España Eesti Eesti Suomi Suomi Suisse (Français) Suisse (Français) France France Hrvatska Hrvatska Magyarország Magyarország Ísland Ísland Italia Italia Lietuva Lietuva Latvija Latvija Северна Македонија Северна Македонија Malta Malta Norge Norge België België Nederland Nederland Polska Polska Portugal Portugal România România Slovensko Slovensko Slovenija Slovenija Srbija Srbija Sverige Sverige Türkiye Türkiye Україна Україна Brasil Brasil United States (English) United States (English) Estados Unidos (Español) Estados Unidos (Español) Argentina Argentina Canada Canada Chile Chile Colombia Colombia Ecuador Ecuador México México Perú Perú Belize Belize Guyana Guyana Jamaica Jamaica Venezuela Venezuela Costa Rica Costa Rica Curaçao Curaçao República Dominicana República Dominicana Guatemala Guatemala Honduras Honduras Nicaragua Nicaragua Panamá Panamá Puerto Rico Puerto Rico Suriname Suriname El Salvador El Salvador الإمارات العربية المتحدة الإمارات العربية المتحدة البحرين البحرين مصر مصر ישראל ישראל ایران ایران الأردن الأردن عُمان عُمان قطر قطر پاکستان پاکستان لبنان لبنان الكويت الكويت المملكة العربية السعودية المملكة العربية السعودية Suid-Afrika Suid-Afrika العراق العراق New Zealand New Zealand 日本 日本 Australia Australia India India Malaysia Malaysia Singapore Singapore 대한민국 대한민국 中国大陆 中国大陆 中国台湾 中国台湾 ไทย ไทย Indonesia Indonesia Việt Nam Việt Nam Philippines Philippines Hong Kong SAR China (English) Hong Kong SAR China (English) 中国香港特别行政区 (中文(简体,中国香港特别行政区)) 中国香港特别行政区 (中文(简体,中国香港特别行政区))

AQUACEL® Ag Advantage

Two powerful technologies to effectively manage biofilm within the dressing
AQUACEL Ag Advantage boxes ;

Biofilm is present in 78% of hard-to-heal wounds1

Biofilm is more likely to develop if exudate management is poor.2 The unique combination of Hydrofiber® technology and MORE THAN SILVER™ technology contributes to the removal of exudate, debris, and bacteria from the wound and locking them within the dressing. This aids in optimizing the wound environment to promote healing.3-5

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How it Works: MORE THAN SILVER™ technology

Specifically developed to manage biofilm within the dressing, MORE THAN SILVER™ technology is a unique formulation that contains three components: BEC, EDTA, and ionic silver.

Surfactants help to dissolve and remove contamination from surfaces by lowering the surface tension and can be found in products such as skin wipes. MORE THAN SILVER™ technology incorporates BEC (Benzethonium chloride).

BEC reduces the surface tension within a biofilm to enhance the ability of EDTA to remove metal ions in biofilm. BEC and EDTA synergistically work together to disrupt biofilm structures aiding the absorption and removal of the EPS and microorganisms by the dressing.6-10

Chelating agents are compounds that strongly attract and bind certain metal ions, boosting the action of surfactants. MORE THAN SILVER™ technology incorporates EDTA (ethylenediaminetetraacetic acid disodium salt).

EDTA helps disrupt biofilm by removing metal ions that hold the EPS matrix together to expose microorganisms to the antimicrobial effects of the ionic silver.6-9

A broad-spectrum antimicrobial.
 
Silver is a safe, broad-spectrum antimicrobial that is only effective in its ionic form. Attracted to sites on bacterial cell walls, it accumulates and then enters the cell, where it damages the DNA, denatures proteins and enzymes, and interferes with protein synthesis.11-12

The AQUACEL® Ag Advantage difference

biofilm ;

Winning the battle against hard-to-heal wounds

Winning the battle to advance healing

In the clinical setting, AQUACEL® Ag Advantage demonstrates the ability to promote healing in hard-to-heal wounds that were stalled or deteriorating at baseline and where biofilm was identified as the main barrier to healing.5
timeline ;

A multicenter clinical study following the use of AQUACEL® Ag Advantage on 111 patients with hard-to-heal wounds.

Results indicated that:

  • 78% progressed toward healing
  • 13% healed 
  • 3.9 weeks average healing time
  • 83% progressed in key healing parameters

To learn more about AQUACEL® Ag Advantage or request a sample, please complete your details here and we will be in touch. 

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How we use information: Treating your personal data with care is important to us. Please read our  privacy policy  where you can find detailed information on how we protect and use personal data.

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You can opt out of receiving marketing messages anytime by contacting us by telephone at 1-800-422-8811, cic@convatec.com, or by mail at PO Box 270603, Oklahoma City, OK 73137. You may also click on the ‘Unsubscribe’ link in the footer of the emails you will receive.

References

1. Malone M et al. 2017. The prevalence of biofilm in chronic wounds: a systematic review and meta-analysis of published data. JWC; 20-25.

2. Hurlow, Bowler. Potential implications of bio¬film in chronic wounds: a case series. J Wound Care 2012; 21: 109-119


3. Bowler PG, Parsons, D. Combatting wound bio¬ lm and recalcitrance with a novel anti-bio¬film Hydro¬fiber® wound dressing. Wound Medicine 14 (2016) 6–11


4. Parsons D, Meredith K, Rowlands VJ, Short D, Metcalf DG, Bowler PG. Enhanced Performance and Mode of Action of a Novel Antibiofilm Hydrofiber® Wound Dressing. Biomed Res Int. 2016;2016:7616471.

5. Metcalf DG, Parsons D, Bowler PG. Clinical safety and effectiveness evaluation of a new antimicrobial wound dressing designed to manage exudate, infection and biofilm. Int Wound J 2017; 14: 203-213

6. Said J, Walker M, Parsons D, Stapleton P, Beezer AE, Gaisford S. An in vitro test of the efficacy of an anti-biofilm wound dressing. Int J Pharmaceutics. 2014; 474: 177–181. DOI: 10.1016/jijpharm.2014.08.034.

7. Composition comprising antimicrobial metal ions and a quaternary cationic surfactant WO12136968 Parsons World patent application 11th October 2012.

8. Banin E., Brady K.M. & Greenberg E.P. (2006). Chelator Induced Dispersal and Killing of Pseudomonas aeruginosa Cells in Biofilm. Appl. Environ. Microbiol. 72. 2064 2069.

9. Chen X, Stewart PS, 2000. Biofilm removal caused by chemical treatments. Wat. Res.,34: 4229 4233.

10. Seth AK, Zhong A, Nguyen KT, Hong SJ, Leung KP, Galiano RD, Mustoe TA. Impact of a novel, antimicrobial dressing on in vivo, Pseudomonas aeruginosa wound biofilm: quantitative comparative analysis using a rabbit ear model. Wound Repair Regen. 2014; 22: 712–719. DOI: 10.1111/wrr.12232.

11. Hobot JA, Walker M, Newman GN, Bowler PG, 2008. Effect of Hydrofiber® wound dressings on bacterial ultrastructure. J Electr Micro; 57: 67-75.

12. T. J. Beveridge, W. S. Fyfe. Metal fixation by bacterial cell walls. Canadian Journal of Earth Sciences, 1985, 22(12): 1893-1898, https://doi.org/10.1139/e85-204.

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