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Recent Advances in Macroporous Hydrogels for Cell Behavior and Tissue Engineering
by
Ma, Yuan
, Wang, Xinhui
, Chang, Qiang
, Su, Ting
, Lu, Feng
, Gao, Jianhua
in
biochemical cues
/ Biocompatibility
/ Blood & organ donations
/ Cell adhesion
/ cell behaviors
/ Ethylenediaminetetraacetic acid
/ Heparan sulfate
/ Hydrogels
/ macroporous hydrogels
/ matrix mechanics
/ Mechanical properties
/ Medical research
/ Metabolites
/ Moisture content
/ Peptides
/ Polymers
/ Pore size
/ Regeneration (physiology)
/ Review
/ Tissue engineering
2022
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Recent Advances in Macroporous Hydrogels for Cell Behavior and Tissue Engineering
by
Ma, Yuan
, Wang, Xinhui
, Chang, Qiang
, Su, Ting
, Lu, Feng
, Gao, Jianhua
in
biochemical cues
/ Biocompatibility
/ Blood & organ donations
/ Cell adhesion
/ cell behaviors
/ Ethylenediaminetetraacetic acid
/ Heparan sulfate
/ Hydrogels
/ macroporous hydrogels
/ matrix mechanics
/ Mechanical properties
/ Medical research
/ Metabolites
/ Moisture content
/ Peptides
/ Polymers
/ Pore size
/ Regeneration (physiology)
/ Review
/ Tissue engineering
2022
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Recent Advances in Macroporous Hydrogels for Cell Behavior and Tissue Engineering
by
Ma, Yuan
, Wang, Xinhui
, Chang, Qiang
, Su, Ting
, Lu, Feng
, Gao, Jianhua
in
biochemical cues
/ Biocompatibility
/ Blood & organ donations
/ Cell adhesion
/ cell behaviors
/ Ethylenediaminetetraacetic acid
/ Heparan sulfate
/ Hydrogels
/ macroporous hydrogels
/ matrix mechanics
/ Mechanical properties
/ Medical research
/ Metabolites
/ Moisture content
/ Peptides
/ Polymers
/ Pore size
/ Regeneration (physiology)
/ Review
/ Tissue engineering
2022
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Recent Advances in Macroporous Hydrogels for Cell Behavior and Tissue Engineering
Journal Article
Recent Advances in Macroporous Hydrogels for Cell Behavior and Tissue Engineering
2022
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Overview
Hydrogels have been extensively used as scaffolds in tissue engineering for cell adhesion, proliferation, migration, and differentiation because of their high-water content and biocompatibility similarity to the extracellular matrix. However, submicron or nanosized pore networks within hydrogels severely limit cell survival and tissue regeneration. In recent years, the application of macroporous hydrogels in tissue engineering has received considerable attention. The macroporous structure not only facilitates nutrient transportation and metabolite discharge but also provides more space for cell behavior and tissue formation. Several strategies for creating and functionalizing macroporous hydrogels have been reported. This review began with an overview of the advantages and challenges of macroporous hydrogels in the regulation of cellular behavior. In addition, advanced methods for the preparation of macroporous hydrogels to modulate cellular behavior were discussed. Finally, future research in related fields was discussed.
Publisher
MDPI AG,MDPI
Subject
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