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Polydopamine‐Based Surface Functionalization of Watermelon Rind as a 3D Nanofibrous Cellulose Scaffold for Osteogenesis
Rezvaneh Banaeyan
, Mohammad Nourany
, Saadi Hosseini
, Atena Galefi
, Atefeh Alipour (Lead / Corresponding author)
, Mehdi Jahanfar
, Peng Yuan Wang
,
Shahin Homaeigohar
, Hosein Shahsavarani (Lead / Corresponding author)
Biomedical Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
7
Citations (Scopus)
60
Downloads (Pure)
Overview
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Dive into the research topics of 'Polydopamine‐Based Surface Functionalization of Watermelon Rind as a 3D Nanofibrous Cellulose Scaffold for Osteogenesis'. Together they form a unique fingerprint.
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Keyphrases
Osteogenesis
100%
Nanofibrous
100%
Cellulose Scaffold
100%
Surface Functionalization
100%
Watermelon Rind
100%
Decellularized
83%
Polydopamine
50%
Human Mesenchymal Stem Cells (hMSCs)
33%
Expression Level
16%
Enzymatic Activity
16%
Molecular Analysis
16%
Osteogenic Differentiation
16%
Activity Analysis
16%
Surface Treatment
16%
Hydrophilic Surface
16%
Osteogenic Potential
16%
Hydroxyapatite Crystals
16%
Protein Adhesive
16%
Osteoinduction
16%
Osteoinductive Potential
16%
High Surface Roughness
16%
Material Science
Stem Cell
100%
Surface Functionalization
100%
Surface (Surface Science)
100%
Surface Roughness
50%
Morphology
50%
Enzyme Activity
50%