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MXene-Reinforced Composite Cryogel Scaffold for Neural Tissue Repair
Mohamed Zoughaib
, Svetlana Avdokushina
,
Irina N. Savina
School of Applied Sciences
Research output
:
Contribution to journal
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Article
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peer-review
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Keyphrases
Composite Cryogel
100%
Cryogel Scaffold
100%
MXene-based Composites
100%
Neural Tissue Repair
100%
Reinforced Composites
100%
Polyvinyl Alcohol Cryogel
20%
PC12
20%
Morphological Changes
10%
Oxidative Stress
10%
Mechanical Properties
10%
Cryogel
10%
Macroporous
10%
Polyvinyl Alcohol
10%
Cryopolymerization
10%
Mechanically Stable
10%
Alleviation
10%
Regenerative Medicine
10%
High Biocompatibility
10%
Tubulin
10%
Neuronal Cells
10%
Neural Regeneration
10%
Neural Tissue Engineering
10%
No Toxicity
10%
High Conductivity
10%
Two Dimensional Materials
10%
Electrostimulation
10%
Enhanced Expression
10%
Swelling Behavior
10%
Oxidative Reduction
10%
Neuroprotective Properties
10%
Neuritogenesis
10%
Neural Markers
10%
Intracellular ROS Levels
10%
Effective Material
10%
Pharmacology, Toxicology and Pharmaceutical Science
Tissue Repair
100%
Polyvinyl Alcohol
100%
Biocompatibility
33%
Neuroprotective Agent
33%
Tubulin
33%
Neuroscience
Nerve Tissue
100%
Behavior (Neuroscience)
25%
Oxidative Stress
25%
Tubulin
25%
Neuroprotective Agent
25%
Nervous System Cell
25%
Electrotherapy
25%
Neuritogenesis
25%
Material Science
Reinforced Composite
100%
MXene
100%
Biocompatibility
11%
Morphology
11%
Two-Dimensional Material
11%
Composite Material
11%
Chemical Engineering
Polyvinyl Alcohol
100%