Journal of environmental chemical engineering, Journal Year: 2025, Volume and Issue: unknown, P. 116385 - 116385
Published: April 1, 2025
Journal of environmental chemical engineering, Journal Year: 2025, Volume and Issue: unknown, P. 116385 - 116385
Published: April 1, 2025
Discover Materials, Journal Year: 2025, Volume and Issue: 5(1)
Published: Jan. 9, 2025
Achieving the ideal replacement for robust biological tissues requires biocompatible materials with a nuanced blend of characteristics, including organ specific toughness, durability, self-repairing capability, and well-defined structure. Hydrogels, structured high water containing 3D-crosslinked polymeric networks, present promising avenue in biomedical applications due to their close resemblance natural tissues. However, mechanical performance often falls short, limiting clinical applications. Recent research has been focused on developing hydrogel therapeutic advancements have spurred researchers develop hydrogels having acceptable toughness. While it is now possible tailor properties synthetic gels mimic those tissues, critical aspects such as biocompatibility crosslinking strategies are frequently neglected. This review scrutinizes structural techniques designed improve toughness hydrogels, focusing especially innovative efforts integrate these enhancements into natural-based hydrogels. By thoroughly examining methodologies, sheds light complexities strengthening will propose valuable insights development next-generation tissue substitutes.
Language: Английский
Citations
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Published: Feb. 1, 2025
Language: Английский
Citations
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Language: Английский
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Language: Английский
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Language: Английский
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Published: May 1, 2025
Language: Английский
Citations
0Journal of environmental chemical engineering, Journal Year: 2025, Volume and Issue: unknown, P. 116385 - 116385
Published: April 1, 2025
Citations
0