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Keratose hydrogel for tissue regeneration and drug delivery
Benjamin Ledford
, Catherine Barron
,
Mark Van Dyke
, Jia Qiang He
Northern Arizona University
Research output
:
Contribution to journal
›
Review article
›
peer-review
18
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Scopus citations
Overview
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Keyphrases
Drug Delivery
100%
Tissue Regeneration
100%
Keratin
100%
Keratose
100%
Biomaterials
25%
Biocompatibility
25%
Biomedical Applications
25%
Bioactivity
25%
Digestive Tract
12%
Biomedical Research
12%
Molecular Structure
12%
Medical Devices
12%
Peripheral Nerve Injury
12%
Structural Proteins
12%
Cultured Cells
12%
Biophysical Properties
12%
Reduced Form
12%
Degradability
12%
Oxidized Form
12%
Inner Lining
12%
Number of Publications
12%
Easy Accessibility
12%
Cell Delivery
12%
Manipulability
12%
Epithelium
12%
Skin Injury
12%
In Vivo Effects
12%
Cell Regeneration
12%
Hydrogel Fiber
12%
Hydrogel Film
12%
Cardiac Infarction
12%
Kerateine
12%
Hard Keratin
12%
Mechanical Resilience
12%
In Vivo Transplantation
12%
Skeletal muscle Loss
12%
Hydrogel Coating
12%
Cultured Tissue
12%
Medicine and Dentistry
Tissue Regeneration
100%
Keratin
100%
Biocompatible Material
22%
Biocompatibility
22%
Biological Activity
22%
In Vitro
11%
Biomedical Research
11%
Medical Device
11%
Horn
11%
Myocardial Infarction
11%
Peripheral Nerve Injury
11%
Structural Protein
11%
Skin Injury
11%
Cell Regeneration
11%
Digestive System
11%
Skeletal Muscle
11%
Material Science
Hydrogel
100%
Keratin
100%
Biocompatibility
22%
Biomedical Application
22%
Biomaterial
11%
Film
11%
Molecular Structure
11%
Medical Device
11%
Pharmacology, Toxicology and Pharmaceutical Science
Keratin
100%
Biocompatibility
22%
Heart Infarction
11%
Structural Protein
11%
Skin Injury
11%
Peripheral Nerve Injury
11%
Biomaterial
11%
Cell-Based Drug Delivery
11%