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  4. Copper-MOF and tannic acid-empowered composite cryogel as a skin substitute for accelerated deep wound healing
 
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Copper-MOF and tannic acid-empowered composite cryogel as a skin substitute for accelerated deep wound healing

Source
Biomaterials Advances
Date Issued
2024-11-01
Author(s)
Singh, Hemant  
Dan, Aniruddha
Prasanna Kumari, B.
Dave, Harshil
Parsaila, Nitesh
Navale, Archana
Darban, Zenab
Yadav, Indu
Goyal, Prateek
Misra, Superb K.  
Shahabuddin, Syed
Hassan, Shabir
Dhanka, Mukesh  
DOI
10.1016/j.bioadv.2024.213983
Volume
164
Abstract
The effective management of deep skin wounds remains a significant healthcare challenge that often deteriorates with bacterial infection, oxidative stress, tissue necrosis, and excessive production of wound exudate. Current medical approaches, including traditional wound dressing materials, cannot effectively address these issues. There is a great need to engineer advanced and multifunctional wound dressings to address this multifaceted problem effectively. Herein, a rationally designed composite cryogel composed of a Copper Metal-Organic Framework (Cu-MOF), tannic acid (TA), polyvinyl alcohol (PVA), and zein protein has been developed by freeze-thaw technique. Cryogels display a remarkable swelling capacity attributed to their interconnected microporous morphology. Moreover, dynamic mechanical behaviour with the characteristics of potent antimicrobial, antioxidant, and biodegradation makes it a desirable wound dressing material. It was further confirmed that the material is highly biocompatible and can release TA and copper ions in a controlled manner. In-vivo skin irritation in a rat model demonstrated that composite cryogel did not provoke any irritation/inflammation when applied to the skin of a healthy recipient. In a deep wound model, the composite cryogel significantly accelerates the wound healing rate. These findings highlight the multifunctional nature of composite cryogels and their promising potential for clinical applications as advanced wound dressings.
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URI
https://d8.irins.org/handle/IITG2025/28687
Subjects
Composite cryogels | Deep wound | Polyvinyl alcohol | Tannic acid | Zein
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