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Novel silver and nanoparticle-encapsulated growth factor co-loaded chitosan composite hydrogel with sustained antimicrobility and promoted biological properties for diabetic wound healing
Yu Hsiang Lee
, Yi Ling Hong, Tai Li Wu
生醫科學與工程學系
研究成果
:
雜誌貢獻
›
期刊論文
›
同行評審
73
引文 斯高帕斯(Scopus)
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Keyphrases
Nanoparticles
100%
Biological Properties
100%
Epidermal Growth Factor
100%
Growth Factors
100%
Ag +
100%
Composite Hydrogel
100%
Co-load
100%
Diabetic Wound Healing
100%
Chitosan Composites
100%
Chronic Wounds
66%
Cell Growth
33%
Deionized Water
33%
Cytotoxicity
33%
Effective Dose
33%
High Risk
33%
Diabetic Rats
33%
Diabetic
33%
Gauze
33%
Day 14
33%
Silver Ions
33%
Amputation
33%
Immune Response
33%
Histological Analysis
33%
Swelling Degree
33%
Diabetes Complications
33%
Collagen Deposition
33%
Diabetic Wound
33%
Hydration Capacity
33%
Sustained Release
33%
Commercial Dressings
33%
Wound Healing Activity
33%
Limb Loss
33%
Reduced Survival
33%
Swelling Equilibrium
33%
Wound Healing Rate
33%
Collagen Maturation
33%
Caregiver Burden
33%
Impaired Metabolism
33%
Equilibrium Water Content
33%
Chronic Wound Treatment
33%
Delayed Wound Healing
33%
Wound Closure
33%
Diabetic Foot Ulcer
33%
Re-epithelization
33%
Pharmacology, Toxicology and Pharmaceutical Science
Nanoparticle
100%
Diabetes Mellitus
100%
Growth Factor
100%
Wound Healing
100%
Chitosan
100%
Epidermal Growth Factor
75%
Wound
75%
Chronic Wound
75%
Antiinfective Agent
25%
Hydration
25%
Sustained Release
25%
Diabetic Complication
25%
Wound Healing Impairment
25%
Cytotoxicity
25%
Deionized Water
25%
Cyclorphan
25%