| Literature DB >> 32122489 |
Denan Kong1, Qunchao Zhang1, Jun You1, Yuanyuan Cheng1, Cheng Hong1, Zihe Chen1, Tao Jiang1, Tonghui Hao2.
Abstract
Adhesion loss of hydrocolloid wound dressings is ubiquitous clinical problem, which seriously reduces the therapeutic efficiency and patient experience. In order to address this problem, the clarification on adhesion loss mechanism and the development of effective alternatives of commercial hydrocolloid dressings are urgent and inevitable. Herein, adhesion loss mechanism of hydrocolloid dressings was investigated using sodium carboxymethyl cellulose (CMC)-filled hydrocolloid dressings exposing to physiological environment as model. The adhesion mechanism and contact angle tests were combined to obtain surface energy of dressings. The results indicated that the dissolution, swelling and exudation of CMC occurred successively (concentration reached 1.607 g/L after 10 h). The effused CMC led to the dramatic increase in surface energy (from 14.5-80.7 mN/m) and adhesion loss appeared. This work explored the origin of adhesion loss of hydrocolloid wound dressings and might promote the designing of hydrocolloid dressings with both excellent humidity control and sustained self-adhesiveness.Entities:
Keywords: Adhesion loss; Adhesion mechanism; Hydrocolloid wound dressings; Sodium carboxymethyl cellulose; Surface energy
Year: 2020 PMID: 32122489 DOI: 10.1016/j.carbpol.2020.115953
Source DB: PubMed Journal: Carbohydr Polym ISSN: 0144-8617 Impact factor: 9.381