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ECM-inspired mechanically robust hydrogels for diabetic wound regeneration

delete2025-12-10
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PRE
AI
S
Salim Ullah
S
Saadullah Khattak
F
Fazal Rahim
Q
Qinxiang Zheng
J
Ji Ma
Q
Qurat ul ain Zahra
H
Hongtao Xu *
J
Jianliang Shen *
DOI:10.1016/j.ccr.2025.217456delete
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Abstract

Abstract

En 中文
• EMHG blend electrospun nanofibers with hydrogels to mimic native skin topology, boosting cell attachment, proliferation, and diabetic wound healing. • EMHG integrates polymer fibers and hydrogel, providing exceptional mechanical strength, elasticity, and water retention for withstanding wound environments. • Coaxial electrospinning and 3D printing provide exact control of EMHG's structure, porosity, and drug delivery, facilitating hemostatic and anti-inflammatory therapies. • Bioactive material-loaded EMHG promotes angiogenesis, fights infections, and modulates immunity, solving chronic inflammation and delayed healing in diabetic wounds. • EMHG solves toxicity and adaptability challenges in tissue engineering, creating smart materials for better diabetic wound care and reduced healthcare burdens.

Journal

Coordination Chemistry Reviews cover
Coordination Chemistry Reviews
IF:
23.5
Papers:
9.1K
Citations:
7.3W

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E
eye hospital
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Murdoch University
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university of science and technology of china
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