Intelligent Electrospinning Nanofibrous Membranes for Monitoring and Promotion of Wound Healing

  • Qu, Zhi; 
  • Wang, Yang; 
  • Dong, Yanhong; 
  • Li, Xinmeng; 
  • Hao, Lingwan; 
  • 외 4명
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WEB OF SCIENCE

57
Citations

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61

초록

The incidence of chronic wound healing is promoted by the growing trend of elderly population, obesity, and type II diabetes. Although numerous wound dressings have been studied over the years, it is still challenging for many wound dressings to perfectly adapt to the healing process due to the dynamic and complicated wound microenvironment. Aiming at an optimal reproduction of the physiological environment, multifunctional electrospinning nanofibrous membranes (ENMs) have emerged as a promising platform for the wound treatment owing to their resemblance to extracellular matrix (ECM), adjustable preparation processes, porousness, and good conformability to the wound site. Moreover, profiting from the booming development of human-machine interaction and artificial intelligence, a next generation of intelligent electrospinning nanofibrous membranes (iENMs) based wound dressing substrates that could realize the real-time monitoring of wound proceeding and individual-based wound therapy has evoked a surge of interest. In this regard, general wound-related biomarkers and process are overviewed firstly and representative iENMs stimuli-responsive materials are briefly summarized. Subsequently, the emergent applications of iENMs for the wound healing are highlighted. Finally, the opportunities and challenges for the development of next-generation iENMs as well as translating iENMs into clinical practice are evaluated.

키워드

Electrospinning nanofibrous membranes; Dressings; Wound healing; Intelligent; Real-time monitoring; Sensors; PH; REGENERATION; DRESSINGS; ALGINATE; RELEASE; DESIGN; FIBERS
제목
Intelligent Electrospinning Nanofibrous Membranes for Monitoring and Promotion of Wound Healing
저자
Qu, Zhi; Wang, Yang; Dong, Yanhong; Li, Xinmeng; Hao, Lingwan; Sun, Liwei; Zhou, Lu; Jiang, Rujian; Liu, Weihua
DOI
10.1016/j.mtbio.2024.101093
발행일
2024-06
유형
Article
저널명
MATERIALS TODAY BIO
권
26