What you need to know about collagen wound dressings

wound collagen dressing

By Nancy Morgan, RN, BSN, MBA, WOC, WCC, DWC, OMS

Description

Collagen, the protein that gives the skin its tensile strength, plays a key role
in each phase of wound healing. It attracts cells, such as fibroblasts and keratinocytes, to the wound, which encourages debridement, angiogenesis, and reepithelialization. In addition, collagen provides a natural scaffold or substrate for new tissue growth. (more…)

Read More

What you need to know about hydrocolloid dressings

hydrocolloid dressing example1

By Nancy Morgan, RN, BSN, MBA, WOC, WCC, DWC, OMS

Each month, Apple Bites brings you a tool you can apply in your daily practice.

Description

A hydrocolloid dressing is a wafer type of dressing that contains gel-forming agents in an adhesive compound laminated onto a flexible, water-resistant outer layer. Some formulations contain an alginate to increase absorption capabilities. The wafers are self-adhering and available with or without an adhesive border and in various thicknesses and precut shapes for such body areas as the sacrum, elbows, and heels. Click here to see examples of
hydrocolloid dressings.

(more…)

Read More

Sample procedure for nonsterile dressing change

By Nancy Morgan, RN, BSN, MBA, WOC, WCC, DWC, OMS

Each month, Apple Bites brings you a tool you can apply in your daily practice.

Description

• Nonsterile dressings protect open wounds from contamination and absorb drainage.
• Clean aseptic technique should be used to change nonsterile dressings.
• In the event of multiple wounds, each wound is considered a separate treatment. (more…)

Read More

Foam dressing

By Nancy Morgan, MBA, BSN, RN, WOC, WCC, CWCMS, DWC

Each month, Apple Bites brings you a tool you can apply in your daily practice.

Description

•    Semipermeable polyurethane foam dressing
•    Nonadherent and nonlinting
•    Hydrophobic or waterproof outer layer
•    Provides moist wound environment
•    Permeable to water vapor but blocks entry of bacteria and contaminants
•    Available in various thicknesses with or without adhesive borders
•    Available in pads, sheets, and cavity dressings (more…)

Read More

Why do older people heal more slowly?

After a few days, the regenerative phase will be well at work closing the wound. Jpbarrass via Wikimedia Commons

By Matthew Steinhauser, University of Pittsburgh

I recently visited an 83-year-old patient in the hospital after EMTs rushed her to the ER with an infected leg wound. Her ordeal started inconspicuously when she bumped into the sharp edge of a table and developed a small cut. The patient’s wound didn’t close, but she ignored it until she woke up in pain one morning two weeks after first injuring her leg. Her daughter called 911 after noticing angry, red skin discoloration and pus – both signs of an infection. Our medical team treated her with IV antibiotics and cleared up the infection, but the wound did not fully close until at least a month later, well after she was discharged from the hospital.

How different the story is when children get a cut. They may scream initially, but within days, the scab falls off, revealing new skin. Why was healing so delayed in my 83-year-old patient compared to a healthy child?

The answer is age. Decades of life slow down healing for most tissues, and wounds in skin can offer a window into why this slowdown occurs.

Three stages of wound healing

I am physician who studies how aging predisposes patients to diseases like diabetes and whether behavioral changes such as intermittent fasting may slow down aging. In order to understand why the skin wound in my older patient healed so slowly, it is important to first understand how wounds heal under the ideal conditions of youth.

The wound healing process is classically categorized into three stages.

A fresh scrape on a palm right after it occured.

 

 

 

 

 

 

 

 

 

 

 

 

Right after a wound occurs, the inflammatory response begins.
Jpbarrass via Wikimedia Commons

The first stage is inflammation, essentially the body’s attempt to clean the wound. During the inflammatory phase, immune cells called phagocytes move into the wound, kill any contaminating bacteria, and ingest and dispose of dead cells and debris.

An image of a hand with a partially healed scrape.
After a few days, the regenerative phase will be well at work closing the wound.
Jpbarrass via Wikimedia Commons

Inflammation sets the stage for the regenerative phase, where several processes work in concert to regrow damaged skin. Replacement skin cells are born when cells at the edge of the wound divide, while fibroblast cells lay down a supportive scaffolding called the extracellular matrix. This holds the new cells together. Any damaged supporting structures of the skin, such as the blood vessels that supply critical oxygen and nutrients, also need to regrow. The second stage effectively closes the wound and restores a protective barrier against bacteria.

A cut on someones hand mostly healed over and scarring.
Once the wound is fully closed, the remodeling phase will rebuild the tissue in a stronger way.
Jpbarrass via Wikimedia Commons

The regenerative phase is a relatively quick, but tenuous fix – new skin is fragile. The final remodeling phase plays out over a couple of years as the new skin is progressively strengthened by several parallel processes. The extracellular matrix, which was initially laid down in a haphazard fashion, is broken down and replaced in a more durable way. Any residual cells from prior phases that are no longer needed – such as immune cells or fibroblasts – become inactive or die. In addition to strengthening the new skin, these collective actions also account for the tendency of scars to visibly fade with time.

Diseases disrupt the healing process

One major way aging can derail the orderly and efficient progression through the stages of healing is through the health problems that stem from diseases of old age.

Diabetes is one example of a disease that is strongly associated with older age. One of the many ways that diabetes negatively affects healing is by causing blood vessels to narrow. As a consequence of inadequate circulation, crucial nutrients and oxygen do not reach the wound in sufficient quantities to fuel the second regenerative phase.

Diabetes is just one of many age-related diseases that disrupts normal processes in the body such as wound healing.

Cells age too

Aside from the negative impacts of age-associated diseases, cells themselves age. In an extreme sign of aging called cellular senescence, cells permanently lose the ability to divide. Senescent cells accumulate in skin and many other organs as people age and cause a host of problems.

When cells divide more slowly – or when they stop dividing altogether due to senescence – skin becomes thinner. The replacement of fat cells, which form a cushioning layer under the skin, also declines with age. The skin of older patients is therefore more prone to injury in the first place.

Once an older person’s skin is injured, the skin has a harder time healing properly as well. Aging and senescent immune cells cannot defend against bacteria, and the risk of serious skin infection rises. Then in the regenerative stage, slow rates of cell division translate into slow skin regrowth. My patient exhibited all of these negative effects of age – her thin, almost translucent skin ruptured from a minor bump, became infected and took nearly two months to fully regrow.

But senescent cells are more than just dysfunctional bystanders. For reasons that are not yet fully understood, senescent cells release toxic byproducts that damage surrounding tissue and drive inflammation – even when there’s no bacterial threat present. Some of these byproducts can even accelerate senescence in neighboring cells. This suggests that intrinsic aging of cells is in essence contagious and senescent cells actively fuel an uncontrolled cycle of inflammation and tissue damage that further impedes successful regeneration and healing.

A whole body problem

As the most outwardly visible tissue of the body, the skin provides a window into why people heal more slowly with age, but all tissues can be injured and are susceptible to the effects of aging. Injuries may be small, repetitive and build up over time – like the effect of smoking on the lungs. Or they may be discrete and dramatic – such as the death of heart cells with a heart attack. Different tissues may heal in different ways. Yet all tissues share a sensitivity to the repercussions of an aging immune system and a decline in the ability to regrow dead or damaged cells.

Understanding why healing slows down with age is important, but my patient asked a very practical question that physicians often face in one form or another: “Doctor, what can you do for me?”

Unfortunately, current treatment of wounds is fairly old-fashioned and often ineffective. Some of the options available include wound dressing changes, antibiotics when the wound is infected or treatment in a high oxygen chamber when circulation is bad due to diabetes.

There is hope, though, that medicine can do better and that progress in understanding the aging process will lead to new therapies. Neutralizing senescent cells in mice, for example, improves a variety of age-associated diseases. While it is way too early to say that researchers have discovered the fountain of youth, I am optimistic for a future when physicians will bend the aging curve and make skin and other organs heal faster and better.The Conversation


Matthew Steinhauser, Associate Professor of Medicine, University of Pittsburgh

This article is republished from The Conversation under a Creative Commons license. Read the original article.

Read More

Electrically charged bandages help to heal burn wounds, combat antibiotic resistance

Ohio State University Wexner Medical Center researchers have created electrically charged bandages that can combat antibiotic resistance, enable healing in burn wounds, and help prevent infections. When the dressing comes in contact with bodily fluids it becomes electrically activated.

Read more.

Read More

Winning the battle of skin tears in an aging population

ON DEMAND webinar

Winning the battle of skin tears in an aging population

This April 25th, 2017 webinar overviews a significant challenge that healthcare providers encounter daily.

“Skin tears” may sound like a relatively minor event, but in reality, these injuries can have a significant impact on the quality of patients’ lives in the form of pain, infection, and limited mobility. The incidence of skin tears has been reported to be as high as 1.5 million annually, and with an aging population, this number is likely to go higher. In this webinar, experts will explain how nurses can use an evidence-based approach—including following practice guidelines to assess the wound and select the proper dressing—for managing skin tears and minimizing their negative effects.

 

Our Speakers

The skin tear challenge

Kimberly LeBlanc, MN, RN, CETN(C) Advanced practice nurse

Kimberly LeBlanc
MN, RN, CETN(C)
Advanced practice nurse, KDS Professional Consulting President, International Skin Tear Advisory Panel
An expert in skin tears, Kimberly will briefly set the stage by addressing the seriousness of skin tears and briefly addressing assessment such as classification.

The main focus will be on management, including goals of care, wound cleaning, wound bed preparation, and dressing selection.

Content will include information from the 2016 consensus statement on skin tears published in Advances in Skin & Wound Care.

|

Tips and techniques for managing dressings for skin tears

Shannon Cyphers, RN, BSN, WCC Clinical Account Manager ConvaTec, Inc.

Shannon Cyphers
RN, BSN, WCC

Clinical Account Manager, ConvaTec, Inc.
Shannon will present wound and skin care product applications to help manage skin tears.

|

Submit below to view the Webinar and download Slidedeck

Questions or comments?  Please contact [email protected]

*By downloading this (product) you are opting in to receiving information from Healthcom Media and Affiliates. Or the details, including your email address/mobile number, may be used to keep you informed about future products and services.
Read More

Gene Therapy for Non-Healing Diabetic Foot Ulcers Starts Phase III Trial

Diabetic Foot Ulcers

Safety and Efficacy Study of VM202 in the Treatment of Chronic Non-Healing Foot Ulcers. This study will assess the safety and efficacy of using gene therapy via intramuscular injections of the calf for patients with chronic non-healing foot ulcers.

The first patient has been dosed in a Phase III trial assessing ViroMed’s VM202, the first pivotal study of a gene therapy indicated for patients with nonhealing diabetic foot ulcers (NHU) and concomitant peripheral artery disease (PAD).

The Phase III trial (NCT02563522) is a double-blind, placebo-controlled, multicenter study designed to evaluate VM202 for safety and efficacy in 300 adults with a diabetic foot ulcer and concomitant PAD. Two hundred patients will be randomized to VM202 and the other 100 to placebo, ViroMed’s U.S. division VM BioPharma said yesterday. (more…)

Read More

Antibiotic use in pressure injury infections

antibiotic overuse pressure injury infection

Antibiotic overuse contributes to the problems of antibiotic resistance and healthcare acquired infections, such as Clostridium difficile. Antibiotic stewardship programs improve patient outcomes, reduce antimicrobial resistance, and save money. These programs are designed to ensure patients receive the right antibiotic, at the right dose, at the right time, and for the right duration. (more…)

Read More

Better Skin Grafts – take only one layer

skin graft take one layer

Research shows that a skin-graft harvesting system aids chronic wound recovery and reduces care costs by accelerating the healing process.

More than six million cases of chronic wounds cost $20 billion each year in the United States. Diabetic ulcers, pressure sores, surgical site wounds, and traumatic injuries to high-risk patients account for most wounds that won’t heal. (more…)

Read More

New Approach to Wound Healing Easy on Skin, Tough on Bacteria

wound healing

Washington, D.C. — In a presentation  to the American Chemical Society meeting, Ankit Agarwal, a postdoctoral researcher at the University of Wisconsin-Madison, described an experimental approach to wound healing that could take advantage of silver’s anti-bacterial properties, while sidestepping the damage silver can cause to cells needed for healing.

Silver is widely used to prevent bacterial contamination in wound dressings, says Agarwal, “but these dressings deliver a very large load of silver, and that can kill a lot of cells in the wound.” (more…)

Read More
1 2 3 4 14