Electrospun metal–organic framework-based nanofibers with natural therapeutic agents for enhanced diabetic wound healing

被引:0
作者
Soo Ghee Yeoh [1 ]
Yun Khoon Liew [2 ]
May Lee Low [3 ]
Wei Meng Lim [4 ]
Norizah Abdul Rahman [5 ]
Lai Chun Wong [6 ]
Yoon Yee Then [6 ]
机构
[1] School of Postgraduate Studies, IMU University, Bukit Jalil, Kuala Lumpur
[2] Department of Life Sciences, School of Pharmacy, IMU University, Bukit Jalil, Kuala Lumpur
[3] Faculty of Pharmaceutical Sciences, UCSI University Kuala Lumpur Campus, Cheras, Kuala Lumpur
[4] School of Pharmacy, Monash University Malaysia, Selangor, Subang Jaya
[5] Department of Chemistry, Faculty of Science, Universiti Putra Malaysia, Selangor, Serdang
[6] Department of Pharmaceutical Chemistry, School of Pharmacy, IMU University, Bukit Jalil, Kuala Lumpur
来源
Discover Materials | / 5卷 / 1期
关键词
Diabetic wound healing; Metal–organic framework; Nanofiber; Natural therapeutic agents;
D O I
10.1007/s43939-025-00227-5
中图分类号
学科分类号
摘要
Diabetes mellitus (DM) poses a significant global health challenge, with diabetic foot ulcers (DFUs) standing as a serious consequence of this metabolic disorder. The intricate interplay of peripheral neuropathy, compromised blood supply, susceptibility to infections, and delayed healing processes in diabetic patients underscores the urgency for innovative wound management strategies. This review delves into the promising realm of electrospun metal–organic framework (MOF)-based nanofibers loaded with natural therapeutic agents, offering a multifaceted approach to accelerate diabetic wound healing by offering synergistic anti-inflammatory, anti-oxidant, and anti-bacterial properties. The incorporation of MOFs, characterized by their inorganic porous structures, alongside polymeric nanofibers, has the potential to enhance drug loading capacity and prevent burst release effect of nanofibers. This paper aims to provide a comprehensive understanding of the diabetic wound healing process, elucidate the properties of MOFs with exceptional porosity and high surface-to-volume ratios for extended and controlled drug release, and highlight the unique attributes of electrospun nanofibers in creating a conducive wound environment for tissue repair, re-epithelialization and vascularization. Additionally, this review explores seven natural therapeutic agents—borneol, clove essential oil, curcumin, chrysin, honey, aloe vera, quercetin, and rutin, showcasing their potential in diabetic wound care by enhancing the granulation tissue formation, collagen deposition, tissue remodeling and wound contraction. This comprehensive examination serves as a valuable resource for researchers and practitioners seeking advanced solutions for the management of diabetic foot ulcers. © The Author(s) 2025.
引用
收藏
相关论文
共 167 条
[81]  
Asmatulu R., Highly hydrophilic electrospun polyacrylonitrile/ polyvinypyrrolidone nanofibers incorporated with gentamicin as filter medium for dam water and wastewater treatment, J Memb Separ, 5, pp. 38-56, (2016)
[82]  
Omer S., Forgach L., Zelko R., Sebe I., Scale-up of electrospinning: market overview of products and devices for pharmaceutical and biomedical purposes, Pharmaceutics, 13, 2, pp. 286-307, (2021)
[83]  
Khan J., Khan A., Khan M., Khan H., Applications of co-axial electrospinning in the biomedical field, Next Mater, 3, pp. 100138-100150, (2024)
[84]  
Abdullah T., Mohammed H., Joshi Navare K., Colombani T., Bencherif S., Memic A., Latest progress in electrospun nanofibers for wound healing applications, ACS Appl Bio Mater, 2, 3, pp. 952-969, (2019)
[85]  
Chen X., Li H., Lu W., Guo Y., Antibacterial porous coaxial drug-carrying nanofibers for sustained drug-releasing applications, Nanomaterials, 11, 5, pp. 1316-1329, (2021)
[86]  
Zhan A., Chen L., Sun W., Tang Y., Chen J., Yu D., Zhang W., Enhancement of diabetic wound healing using a core-shell nanofiber platform with sequential antibacterial, angiogenic, and collagen deposition activities, Mater Des, 218, pp. 110660-110673, (2022)
[87]  
Liu Y., Li C., Feng Z., Han B., Yu D., Wang K., Advances in the preparation of nanofiber dressings by electrospinning for promoting diabetic wound healing, Biomolecules, 12, 12, pp. 1727-1754, (2022)
[88]  
Wang H., Wang L., Liu Z., Luo Y., Kang Z., Che X., Astragaloside/PVP/PLA nanofiber functional dressing prepared by coaxial electrostatic spinning technology for promoting diabetic wound healing, Eur Polym J, 210, (2024)
[89]  
Kazemi N., Mahalati M., Kaviani Y., Al-Musawi M., Varshosaz J., Soleymanieilbakhtiari S., Tavakoli M., Alizadeh M., Sharifian Jazi F., Salehi S., Najafinezhad A., Mirhaj M., Core-shell nanofibers containing L-arginine stimulates angiogenesis and full thickness dermal wound repair, Int J Pharm, 653, (2024)
[90]  
Tavakoli M., Mirhaj M., Salehi S., Varshosaz J., Labbaf S., Golshirazi A., Kazemi N., Haghighi V., Coaxial electrospun angiogenic nanofiber wound dressing containing advanced platelet rich-fibrin, Int J Biol Macromol, 222, pp. 1605-1618, (2022)