The protective effect of a new absorbent incontinence design against an alkaline pH challenge on the epidermal barrier.


Journal

Wound management & prevention
ISSN: 2640-5245
Titre abrégé: Wound Manag Prev
Pays: United States
ID NLM: 101739664

Informations de publication

Date de publication:
Mar 2024
Historique:
medline: 12 4 2024
pubmed: 12 4 2024
entrez: 12 4 2024
Statut: ppublish

Résumé

Incontinence-associated dermatitis (IAD) is one of the most common complications of incontinence. Improved diaper designs can minimize the occurrence of IAD. To develop a novel diaper design to minimize the damaging effects of incontinence on the epidermal barrier. An optimized diaper design was tested for surface dryness (ie, rewet), maintenance of a skin-adapted surface pH of 5.5, and ability to protect epidermal barrier function from an alkaline pH 10.7 challenge. The diapers released a mean (standard deviation [SD]) of 1.2 (0.2) mg/cm2 of solution under pressure after the first loading and a mean of 2.9 (1.7) mg/cm2 after the second loading. The surface pH remained between 4.5 and 5.5 over 5 hours. In healthy skin, transepidermal water loss (TEWL) increased by a mean of 3.43 (4.67) g/m2/h after the alkaline urine solution challenge with the new diaper design versus a mean of 8.38 (5.67) g/m2/h with a cellulose patch (P < .001) as a control. The mean erythema readings were 1.18 (1.30) g/m2/h for the new design and 2.56 (1.25) g/m2/h for the cellulose patches (P < .001). The new diaper design minimizes rewetting, maintains an acidic surface, and protects the epidermal barrier against an alkaline pH challenge. This design may help prevent IAD.

Sections du résumé

BACKGROUND BACKGROUND
Incontinence-associated dermatitis (IAD) is one of the most common complications of incontinence. Improved diaper designs can minimize the occurrence of IAD.
PURPOSE OBJECTIVE
To develop a novel diaper design to minimize the damaging effects of incontinence on the epidermal barrier.
METHODS METHODS
An optimized diaper design was tested for surface dryness (ie, rewet), maintenance of a skin-adapted surface pH of 5.5, and ability to protect epidermal barrier function from an alkaline pH 10.7 challenge.
RESULTS RESULTS
The diapers released a mean (standard deviation [SD]) of 1.2 (0.2) mg/cm2 of solution under pressure after the first loading and a mean of 2.9 (1.7) mg/cm2 after the second loading. The surface pH remained between 4.5 and 5.5 over 5 hours. In healthy skin, transepidermal water loss (TEWL) increased by a mean of 3.43 (4.67) g/m2/h after the alkaline urine solution challenge with the new diaper design versus a mean of 8.38 (5.67) g/m2/h with a cellulose patch (P < .001) as a control. The mean erythema readings were 1.18 (1.30) g/m2/h for the new design and 2.56 (1.25) g/m2/h for the cellulose patches (P < .001).
CONCLUSION CONCLUSIONS
The new diaper design minimizes rewetting, maintains an acidic surface, and protects the epidermal barrier against an alkaline pH challenge. This design may help prevent IAD.

Identifiants

pubmed: 38608165
doi: 10.25270/wmp.23057
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Auteurs

Olga Vechter (O)

PAUL HARTMANN AG, Heidenheim, Germany.

Yana Arlouskaya (Y)

PAUL HARTMANN AG, Heidenheim, Germany.

Niuosha Sanaeifar (N)

PAUL HARTMANN AG, Heidenheim, Germany.

Rüdiger Kesselmeier (R)

PAUL HARTMANN AG, Heidenheim, Germany.

Pia Beer (P)

Dermatest GmbH, Muenster, Germany.

Janina Tiemann (J)

Dermatest GmbH, Muenster, Germany.

Agnieszka Segiet (A)

Clean Data Labs, Warsaw, Poland.

Daniel Rabczenko (D)

Clean Data Labs, Warsaw, Poland.

Robert Garcia (R)

PGI Spain S.L., Tarragona, Spain.

Luca Ferrandi (L)

Fiberweb Terno d'Isola S.r.l., Bergamo, Italy.

Hans Smola (H)

PAUL HARTMANN AG, Heidenheim, Germany; Department of Dermatology, University of Cologne, Cologne, Germany.

Classifications MeSH