Design and Synthesis of Chitosan—Gelatin Hybrid Hydrogels for 3D Printable in vitro Models
Разработка и синтез гибридных гидрогелей на основе хитозана и желатина для 3D-печатаемых моделей in vitro
2020-07-14
SCID: 54.1/cnwy6u7p
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3D printable hydrogelsDiels-Alder ligationPEG-Star-maleimidechitosan-gelatin hybrid hydrogelsreductive amination
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Abstract (AI)
The development of 3D printable hydrogels based on the crosslinking between chitosan and gelatin is proposed. Chitosan and gelatin were both functionalized with methyl furan groups. Chemical modification was performed by reductive amination with methyl furfural involving the lysine residues of gelatin and the amino groups of chitosan to generate hydrogels with tailored properties. The methyl furan residues present in both polymers were exploited for efficient crosslinking via Diels-Alder ligation with PEG-Star-maleimide under cell-compatible conditions. The obtained chitosan-gelatin hybrid was employed to formulate hydrogels and 3D printable biopolymers and its processability and biocompatibility were preliminarily investigated.
Key Findings
1
Chitosan and gelatin were functionalized with methyl furan groups through reductive amination involving gelatin lysine residues and chitosan amino groups.
2
Preliminary investigations evaluated the hybrid materials’ printability and biocompatibility for potential in vitro 3D models.
3
The modified polymers were efficiently crosslinked with PEG-Star-maleimide via Diels–Alder ligation under cell-compatible conditions.
4
The resulting chitosan–gelatin hybrid enabled formulation of hydrogels and 3D-printable biopolymers with tunable properties.
Research Object
chitosan–gelatin hybrid hydrogels and 3D-printable biopolymers
Research Subject
their tailored physicochemical properties, printability, processability, and preliminary cell biocompatibility
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2020-07-14
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