Recent progress in polysaccharide and polypeptide based modern moisture-retentive wound dressings

  • Menon, N. P. Swetha; 
  • Kamaraj, M.; 
  • Sharmila, M. Anish; 
  • Govarthanan, M.
Citations

WEB OF SCIENCE

29
Citations

SCOPUS

31

초록

Wounds were considered as defects in the tissues of the human skin and wound healing is said to be a tedious process as there are possibilities of infection or inflammation due to microorganisms. Modern moisture-retentive wound dressing (MMRWD) is opening a new window toward wound therapy. It comprises different types of wound dressing that has classified based on their functionality. Selective polysaccharide-polypeptide fiber composite materials such as hydrogels, hydrocolloids, hydro fibers, transparent-film dressing, and alginate dressing are discussed in this review as a type of MMRWD. The highlight of this polysaccharide and polypeptide based MMRWD is that it supports and enhances the healing of different types of wounds by moisture absorption thus preventing infection. This study has given enlightenment on the application of selected polysaccharide and polypeptide based MMRWD that enhances wound healing actions still it has been observed that the composite wound healing dressing is more effective than the single one. The nano-sized materials (synthetic nano drugs and phyto drugs) were found to increase the efficiency of healing action while coated in the wound dressing material. Future research is required to find out more possibilities of the different composite types of wound dressing in the healing action.

키워드

Hydrogels; Alginate dressing; Wound healing; IN-VITRO; HYDROGEL DRESSINGS; ALGINATE HYDROGEL; HYDROFIBER; FILMS; NANOPARTICLES; PERFORMANCE; MANAGEMENT; MEMBRANES; EFFICACY
제목
Recent progress in polysaccharide and polypeptide based modern moisture-retentive wound dressings
저자
Menon, N. P. Swetha; Kamaraj, M.; Sharmila, M. Anish; Govarthanan, M.
DOI
10.1016/j.ijbiomac.2023.128499
발행일
2024-01
유형
Review
저널명
International Journal of Biological Macromolecules
권
256