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Silk/agarose scaffolds with tunable properties: Via SDS assisted rapid gelation
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Author(s):
Lu, Y
;
Zhang, S
;
Liu, X
;
Ye, S
;
Zhou, X
;
Huang, Q
;
Ren, L
Source:
Unpaywall 20201031
Subject Terms:
Biocompatibility
;
Biomechanics
;
Cell proliferation
;
Gelation
;
Gels
;
Mechanical properties
;
Mineralogy
;
Phosphatases
;
Pore size
;
Sodium dodecyl sulfate
;
Sodium sulfate
;
Tissue
;
Tissue engineering
;
Alkaline phosphatase activity
;
Compressive moduli
;
Freeze drying
;
Gelation degree
;
Gelling process
;
Osteogenic differentiation
;
Target tissues
;
Tunable properties
;
Scaffolds (biology)
Document Type:
article in journal/newspaper
Language:
unknown
Additional Information
Contributors:
PHYSICS
Publication Date:
2017
Collection:
National University of Singapore: ScholarBank@NUS
Abstract:
10.1039/c7ra01981e ; RSC Advances ; 7 ; 35 ; 21740-21748
ISSN:
20462069
Relation:
https://scholarbank.nus.edu.sg/handle/10635/178728
Online Access:
https://scholarbank.nus.edu.sg/handle/10635/178728
Rights:
Attribution 4.0 International ; http://creativecommons.org/licenses/by/4.0/
Accession Number:
edsbas.71FF45
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