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Chemické a fyzikální modifikace biomateriálů na bázi celulosy
[Chemical and physical modification of cellulosic biomaterials]
V. Vosmanská, K. Kolářová, M. Pišlová, V. Švorčík
Language Czech Country Czech Republic
Document type Research Support, Non-U.S. Gov't, Review
Grant support
NV15-33018A
MZ0
CEP Register
Digital library NLK
Full text - Article
Source
NLK
ROAD: Directory of Open Access Scholarly Resources
from 1997
- Keywords
- fyzikální modifikace, chemická modifikace,
- MeSH
- Anti-Bacterial Agents classification therapeutic use MeSH
- Biocompatible Materials * classification MeSH
- Cellulose * analogs & derivatives chemistry classification MeSH
- Humans MeSH
- Oxidation-Reduction MeSH
- Plasma Gases classification MeSH
- Wounds and Injuries nursing MeSH
- Regenerative Medicine MeSH
- Silver Compounds therapeutic use MeSH
- Silver therapeutic use MeSH
- Check Tag
- Humans MeSH
- Publication type
- Research Support, Non-U.S. Gov't MeSH
- Review MeSH
Cellulose-based biomaterials are safe and ordinarily used in human medicine. Owing to its properties, cellulose is still in the biomaterial research spotlight, mainly in wound dressing area. The review brings an overview of chemical and physical means of cellulose modification that have been done so far, particularly to improve material properties and to introduce antibacterial properties. The most frequent antibacterial finishing of cellulose-based materials is the modification with silver that is effective against broad spectrum of bacteria species and has low risk of resistance development. A special subchapter is therefore dedicated to the antibacterial effect of silver.
Chemical and physical modification of cellulosic biomaterials
Literatura
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- $a Cellulose-based biomaterials are safe and ordinarily used in human medicine. Owing to its properties, cellulose is still in the biomaterial research spotlight, mainly in wound dressing area. The review brings an overview of chemical and physical means of cellulose modification that have been done so far, particularly to improve material properties and to introduce antibacterial properties. The most frequent antibacterial finishing of cellulose-based materials is the modification with silver that is effective against broad spectrum of bacteria species and has low risk of resistance development. A special subchapter is therefore dedicated to the antibacterial effect of silver.
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