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MedTech Outlook | Thursday, April 27, 2023
While the traditional patterns accumulate various risk factors as the wounds are generally left open for quite a long time, opting for a novel dressing technique aims at determining the intensity of infection on an acute scale in real time.
FREMONT, CA: Having a change of dressing on several wounds regularly can likely be painful, especially with the healthcare workers lifting the dressing every time to check for signs of infection. Thus, traditional methods of wound care often impede the wound healing procedure, increasing the risks of infection as the wound is generally left open in this very treatment pattern.
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As a result, researchers in recent times have created and opted for novel wound dressings owing to their easy-to-access, less painful, and increasingly effective capabilities. The newly designed dressing is typically based on a nano-cellular structure and enables the detection of early signs of infection in real-time. The specialised wound dressing, a new wound care approach, critically harnesses tight mesh nanocellulose, a nanostructure that aims to keep bacteria and other microbes away from the wound.
The central focus aims at applying this dressing, which is anticipated to remain in place throughout the healing procedures. The intensity of infection in the wound critically favours a change of colour in the dressing. That is, the colour change property is often determined by the pH of a wound, where a normal, non-infected one has a pH of about 5.5 and an infected one has a pH of nearly eight and higher per intensity.
Generally, using a dye—bromothymol blue (BTB)—facilitates an induced ability in the wound dressing to determine the pH colour per the severity of infections. The material is often added to a dressing made of silica, which is merely a few nanometers thick. Thus, when the pH level exceeds seven, the colour of the wound dressing automatically transforms from yellow to blue. This, in turn, allows physicians in the healthcare space to determine and treat wounds according to the intensity of infection via the new dressing model. Infections in a human individual are often characterised by the appearance of symptoms like pus, soreness, and redness.
Skin, often considered the largest organ of the human body, can face impairment in functions when injured, which, in turn, extends the healing time for wounds. Infections often grow in wounds that are much more difficult to heal, and researchers from time to time state that wounds, in most cases, account for nearly half of the out-of-hospital costs. This, in turn, underlines the need for proper treatment and thus speeds up the recovery process for wounds.
Alongside this, the novel application aims at reducing the overuse of antibiotics for the wound healing process, as the dressing often comes with an antimicrobial substance. It eliminates the need to use excessive amounts of antibiotics for wound treatments.
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