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Electrospun nanofibers promote wound healing: theories, techniques, and perspectives†

期刊

JOURNAL OF MATERIALS CHEMISTRY B
卷 9, 期 14, 页码 3106-3130

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/d1tb00067e

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资金

  1. National Natural Science Foundation of China [61973003, 61603002]
  2. National Key RAMP
  3. D Program of China [2018YFC0115500, 2018YFE0194500]
  4. USTC Research Funds of the Double First-Class Initiative [YD2380002001]
  5. Basic and Clinical Collaborative Research Improvement Project of Anhui Medical University [2019xkjT017]
  6. Key Program in the Youth Elite Support Plan in Universities of Anhui Province [gxyqZD2020012]
  7. Teaching Research Project of Anhui Province [2020jyxm0886]

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The paper reviews recent research on how electrospun nanofiber scaffolds promote wound healing and the use of electrospinning technology for fabricating multi-functional scaffolds. Although there have been advancements, challenges remain in commercializing these materials to fully meet patient needs.
At present, the clinical strategies for treating chronic wounds are limited, especially when it comes to pain relief and rapid wound healing. Therefore, there is an urgent need to develop alternative treatment methods. This paper provides a systematic review on recent researches on how electrospun nanofiber scaffolds promote wound healing and how the electrospinning technology has been used for fabricating multi-dimensional, multi-pore and multi-functional nanofiber scaffolds that have greatly promoted the development of wound healing dressings. First, we provide a review on the four stages of wound healing, which is followed by a discussion on the evolvement of the electrospinning technology, what is involved in electrospinning devices, and factors affecting the electrospinning process. Finally, we present the possible mechanisms of electrospun nanofibers to promote wound healing, the classification of electrospun polymers, cell infiltration favoring fiber scaffolds, antibacterial fiber scaffolds, and future multi-functional scaffolds. Although nanofiber scaffolds have made great progress as a type of multi-functional biomaterial, major challenges still remain for commercializing them in a way that fully meets the needs of patients.

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