Designing degradable hydrogels for orthogonal control of cell microenvironments
Разработка деградируемых гидрогелей для ортогонального управления микроокружением клеток
2013-04-22
SCID: 54.1/5pfrhf5g
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cell-compatible hydrogelscellular processesdegradable hydrogelsextracellular matrixhydrogel degradation
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Abstract (AI)
Degradable and cell-compatible hydrogels can be designed to mimic the physical and biochemical characteristics of native extracellular matrices and provide tunability of degradation rates and related properties under physiological conditions. Hence, such hydrogels are finding widespread application in many bioengineering fields, including controlled bioactive molecule delivery, cell encapsulation for controlled three-dimensional culture, and tissue engineering. Cellular processes, such as adhesion, proliferation, spreading, migration, and differentiation, can be controlled within degradable, cell-compatible hydrogels with temporal tuning of biochemical or biophysical cues, such as growth factor presentation or hydrogel stiffness. However, thoughtful selection of hydrogel base materials, formation chemistries, and degradable moieties is necessary to achieve the appropriate level of property control and desired cellular response. In this review, hydrogel design considerations and materials for hydrogel preparation, ranging from natural polymers to synthetic polymers, are overviewed. Recent advances in chemical and physical methods to crosslink hydrogels are highlighted, as well as recent developments in controlling hydrogel degradation rates and modes of degradation. Special attention is given to spatial or temporal presentation of various biochemical and biophysical cues to modulate cell response in static (i.e., non-degradable) or dynamic (i.e., degradable) microenvironments. This review provides insight into the design of new cell-compatible, degradable hydrogels to understand and modulate cellular processes for various biomedical applications.
Key Findings
1
Achieving orthogonal control of cellular responses requires careful selection of hydrogel base materials, crosslinking chemistries, and degradable moieties.
2
Degradable, cell-compatible hydrogels can mimic native extracellular matrices while independently tuning degradation rates and associated material properties under physiological conditions.
3
Hydrogel microenvironments enable temporal control of biochemical and biophysical cues, including growth-factor presentation and stiffness, to regulate adhesion, proliferation, spreading, migration, and differentiation.
4
Recent hydrogel designs use chemical and physical crosslinking strategies alongside controlled degradation rates and degradation modes to create dynamic cellular microenvironments.
5
Spatial and temporal cue presentation in degradable hydrogels supports applications including bioactive-molecule delivery, three-dimensional cell encapsulation, and tissue engineering.
Research Object
cell-compatible degradable hydrogels as three-dimensional cellular microenvironments
Research Subject
orthogonal temporal and spatial control of biochemical and biophysical cues, degradation behavior, and resulting cellular processes
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2013-04-22
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